LOC101795253 cDNA ORF clone, Anas platyrhynchos(mallard)

The following LOC101795253 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the LOC101795253 cDNA ORF which is encoded by the open reading frame (ORF) sequence. ORF sequences can be delivered in our standard vector, pcDNA3.1+/C-(K)DYK or the vector of your choice as an expression/transfection-ready ORF clone. Not the clone you want? Click here to find your clone.

***CloneID Accession No. Definition **Vector *Turnaround time Price (USD) Select
OAn103548 XM_013092897.1
Latest version!
Anas platyrhynchos alpha-2-macroglobulin-like 1 (A2ML1), mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
OAn148267 XM_021267451.1
Latest version!
Anas platyrhynchos alpha-2-macroglobulin-like protein 1 (LOC101795253), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $797.30
$1139.00
OAn162769 XM_021267451.2
Latest version!
Anas platyrhynchos alpha-2-macroglobulin-like protein 1 (LOC101795253), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $727.30
$1039.00

ORF Online Only Promotion

Next-day Shipping ORF Clones ( in default vector with tag)
1 Clone 30% OFF
2-4 Clone 40% OFF
5 or more Clone 50% OFF
All Other ORF Clones
30% OFF

*Business Day

** You may select a custom vector to replace pcDNA3.1+/C-(K)DYK after clone is added to cart.

** GenScript guarantees 100% sequence accuracy of all synthetic DNA constructs we deliver, but we do not guarantee protein expression in your experimental system. Protein expression is influenced by many factors that may vary between experiments or laboratories. In addition, please pay attention to the signal peptide, propeptide and transit peptide in target ORF, which may affect the choice of vector (N/C terminal tag vector).

***One clone ID might be correlated to multiple accession numbers, which share the same CDS sequence.

  • Reference Sequences (Refseq)
    CloneID OAn103548
    Clone ID Related Accession (Same CDS sequence) XM_013092897.1
    Accession Version XM_013092897.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2850bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2015-07-08
    Organism Anas platyrhynchos(Mallard)
    Product alpha-2-macroglobulin-like protein 1
    Comment MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_004676512.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Anas platyrhynchos Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.3 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END## ##RefSeq-Attributes-START## ab initio :: 6% of CDS bases ##RefSeq-Attributes-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    ATGAAGGAGA AGAAAATCAT CAGGAATAGG TGGTGTGGAT TCACAAGGAA ATCATGCCTG 
    ACCAACCTGA TCAGCTTCTA TAATGAAATC ACTAGTCTGA TGGATGAGAG GGGAGCAGTG
    CTTGTTGTCT TCCTGGACTG CGTTAAGGCC TTTGATGTTG TCCAATGTAA GATCCTCATA
    GGGAAGCTGT GCCAAGTGGA GCTGGGCTTC TCAACGTCCC AGACTCTTCC TGATTCAGAG
    GTTGGTTTGA ACCTGCTGGC AGCTCCTGGG TCCACATGTG CTGTCTGGGC TGTGGATCAG
    AGTGCCTTTT TGCTGAAGCC AGAAAAAGAA CTCAGCAGCT CCATGATCTA TGGGCTCTTC
    CCATCTGTTT ATAACTCCGG GTATCCTCGC CAAGTGTCTG AAGATGATCA TTCATGCGGG
    TTCCCGAATT CTGACGAGCC TGATGTGTTT ACAGCATTCA AGGAAGTGGG GTTGAAAATT
    ATGTCCAACA CCAATATCAG GAAACCAAGA CTGTGTCTAA CTACTCAGTC AACAACTATG
    CTGCAGGAAA CAGATGTGAT CACTTCCAGG CCCATGTTGA TGTTTGCTCA GCCTCATAAA
    GCACCTAACA CAGGGCATCT GTTGACATCT ACCCATCAGC CCACCATGTT TTCACCTGTT
    TCTCCAGCTG AAGAGAAAGT GCACAAACAT TTCACAAAAA CCTGGATATG GGATTTGTAT
    TCTGTGGGTC CCAGTGGGAA CAAGAGCGTC ACTGTCACTG CGCCTGGCAC CATCACAGAA
    TGGAAAGCAG GGATGTTCTG CACAGGACGT AATGGCTTTG GACTTGCTCC AACCTCCAGT
    CTGCTTGTTT TCAAGCCCTT TTTTGTGGAG CTCACACTGC CATCTTCTGT GATCCAGGGT
    GAGACCTTCA CCTTGAAGGC CACAGTCTTC AACTACCTGA AGCAATGCAT GAAGATCCAA
    GTGACTATGG AGGAGTTCAC ACACTTCCAG CTGAAGCCAT GTGAAGGCTG TGTCTACAGC
    AGCTGCTTAT GTGCTGGAGA AGCTAAAACA TTTCAGTGGA GTGTCACAGC CGAGCAACTG
    GGGCCCATGA ACATCACCAT CAGCACAGAG GCCGTGGCCA CCAAAGAGCT CTGTGGCAAA
    GAGATACCAT TTGTCCCAAA CCAAGGACAG AAAGACACAA TCACCAAACT CCTTCTTGTC
    CGGCCAGAGG GAGTGCTAGT GGAAAAGGCT CACAGCTCCA TCCTGTGTCC CAAAAAAGGG
    AGTCCAGCGC AGGAGTCTGT GTCCTTGATG TTGCCTCTAA ATGTGGTTGA AGGTTCAGTC
    AGAGCTACAG TCTCGGTCAC TGGTGACCTC ATGGGGACTG CACTGCAGAA CTTGGACCAC
    CTGGTGCATA TGCCCCATGG CTGTGGGGAG CAGAACATGG TGCTGTTTGC CCCCATTGTC
    TATGTGCTGC AGTACCTGGA GAAGACGGGA CAGCTGACCC CTGAAATCAA GGAGAGGGCA
    ACGGGATTCC TGCGCAAGGG GTACCAGATA CAGCTGCAGT ATCAACACCC TGATGGTTCT
    TTCAGTGAAT TTGGTACCAA GGATGAGTAC GGTAATACTT GGCTGACTTC ATTTGTGGTC
    AAATGCTTTG TCCAAGCCAA GCCATACATT TTCCTGGACA ATAGGAGCAT CCAAGCTGCT
    CTCAACTGGC TGGAGTTCCA CCAGCTTCCT AATGGGTGCT TCAGAAACGT GGGCCAGCTT
    TTTCACACAG CCATGAAGGG AGGTGTGGAT GGGGAAGTCC CCTTGGCTGC CTACATCACA
    GCTGCATACT TGGAGGCAGG GGAGACACCA GAGAGTACGG TGGTGCGCAA GGCTCTGGGC
    TGCATTGCTC CTTCCCTCCC CAAAGCTGCC AGCACTTACA CACAGGCCCT CCTGGCCTAC
    ACCTTTGCCC TGGCTAAGGA CCAGCAACGT ACACAAGAGC TTCTCAACAT GCTTGATCAA
    AAGGCAATCA GAGCAGGTGG GCAGATCCAT TGGAGTCAAA GCCCATCCGA GACACCCAGC
    GCTTGGTCAC CGCCACTGTC TGTGGATGTG GAGCTGACAG CCTATGTCCT CCTGGCCCTG
    CTCTCCAAGC CAAATGTCAC AAGGGCTGAT CTCACCACAG CCTCTGGCAT TGTGGCCTGG
    CTCACCAGGC AGCAGAATGC CTATGGAGGA TTTGCCTCAA CACAGGACAC AGTGGTTGCC
    CTGCAGGCCT TGGCTAAGTA TGCAGCACTG ACCTACAGCA CAAAGGGGGT TGCAGAAGTG
    AGGGTGAGGT CCCAGAAAGG CTTTGGGAGG AAGTTCCAAG TCTCCTACCA GAACCGACTT
    TTGGTGCAGG AGGTGGCACT GACAGAAATC CCAGGGAAGT TCTCAGTGCA GGCCCAGGGC
    AGCTGTTGTG TCTTTACCCG GATGGTGCTG AGGTACAACA CCCCCTTCCC ACAAGTCTCC
    AAATCCTTTT TCTTGCGAGT GAAAACCAAG CCAGTCAATT GCACCGGGGA TGATACCCAC
    TCTGTAACTC TCTACGTCAA TGTCAGGTAC ATCGGGAAGA GAGCCATTTC CAGCATGGTG
    ATTGTGGAGG TGTCCCTACT GTCTGGATTT GTCCTTGCTC CAGGATCTGG GATGCCTATG
    GAGCATTGGC ACCCTGTGAA AAGAACTGAA AAAACCCAAG CAGGTGTTGC CATCTATTTG
    GACAAGCTGA GCCATAAGTC TGAGACATAT GTCCTGCACC TGGAGCGGGA GATTGGGGTG
    ACCAACCTGA AGCCAGGCCA TGTCAGGGTC TATGACTACT ACCATCCAGA GGAGCAGGCC
    ATGGCTGATT ATAATGTTTT CTGTGTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_012948351.1
    CDS1..2850
    Translation

    Target ORF information:

    RefSeq Version XM_013092897.1
    Organism Anas platyrhynchos(Mallard)
    Definition Anas platyrhynchos alpha-2-macroglobulin-like 1 (A2ML1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_013092897.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    ATGAAGGAGA AGAAAATCAT CAGGAATAGG TGGTGTGGAT TCACAAGGAA ATCATGCCTG 
    ACCAACCTGA TCAGCTTCTA TAATGAAATC ACTAGTCTGA TGGATGAGAG GGGAGCAGTG
    CTTGTTGTCT TCCTGGACTG CGTTAAGGCC TTTGATGTTG TCCAATGTAA GATCCTCATA
    GGGAAGCTGT GCCAAGTGGA GCTGGGCTTC TCAACGTCCC AGACTCTTCC TGATTCAGAG
    GTTGGTTTGA ACCTGCTGGC AGCTCCTGGG TCCACATGTG CTGTCTGGGC TGTGGATCAG
    AGTGCCTTTT TGCTGAAGCC AGAAAAAGAA CTCAGCAGCT CCATGATCTA TGGGCTCTTC
    CCATCTGTTT ATAACTCCGG GTATCCTCGC CAAGTGTCTG AAGATGATCA TTCATGCGGG
    TTCCCGAATT CTGACGAGCC TGATGTGTTT ACAGCATTCA AGGAAGTGGG GTTGAAAATT
    ATGTCCAACA CCAATATCAG GAAACCAAGA CTGTGTCTAA CTACTCAGTC AACAACTATG
    CTGCAGGAAA CAGATGTGAT CACTTCCAGG CCCATGTTGA TGTTTGCTCA GCCTCATAAA
    GCACCTAACA CAGGGCATCT GTTGACATCT ACCCATCAGC CCACCATGTT TTCACCTGTT
    TCTCCAGCTG AAGAGAAAGT GCACAAACAT TTCACAAAAA CCTGGATATG GGATTTGTAT
    TCTGTGGGTC CCAGTGGGAA CAAGAGCGTC ACTGTCACTG CGCCTGGCAC CATCACAGAA
    TGGAAAGCAG GGATGTTCTG CACAGGACGT AATGGCTTTG GACTTGCTCC AACCTCCAGT
    CTGCTTGTTT TCAAGCCCTT TTTTGTGGAG CTCACACTGC CATCTTCTGT GATCCAGGGT
    GAGACCTTCA CCTTGAAGGC CACAGTCTTC AACTACCTGA AGCAATGCAT GAAGATCCAA
    GTGACTATGG AGGAGTTCAC ACACTTCCAG CTGAAGCCAT GTGAAGGCTG TGTCTACAGC
    AGCTGCTTAT GTGCTGGAGA AGCTAAAACA TTTCAGTGGA GTGTCACAGC CGAGCAACTG
    GGGCCCATGA ACATCACCAT CAGCACAGAG GCCGTGGCCA CCAAAGAGCT CTGTGGCAAA
    GAGATACCAT TTGTCCCAAA CCAAGGACAG AAAGACACAA TCACCAAACT CCTTCTTGTC
    CGGCCAGAGG GAGTGCTAGT GGAAAAGGCT CACAGCTCCA TCCTGTGTCC CAAAAAAGGG
    AGTCCAGCGC AGGAGTCTGT GTCCTTGATG TTGCCTCTAA ATGTGGTTGA AGGTTCAGTC
    AGAGCTACAG TCTCGGTCAC TGGTGACCTC ATGGGGACTG CACTGCAGAA CTTGGACCAC
    CTGGTGCATA TGCCCCATGG CTGTGGGGAG CAGAACATGG TGCTGTTTGC CCCCATTGTC
    TATGTGCTGC AGTACCTGGA GAAGACGGGA CAGCTGACCC CTGAAATCAA GGAGAGGGCA
    ACGGGATTCC TGCGCAAGGG GTACCAGATA CAGCTGCAGT ATCAACACCC TGATGGTTCT
    TTCAGTGAAT TTGGTACCAA GGATGAGTAC GGTAATACTT GGCTGACTTC ATTTGTGGTC
    AAATGCTTTG TCCAAGCCAA GCCATACATT TTCCTGGACA ATAGGAGCAT CCAAGCTGCT
    CTCAACTGGC TGGAGTTCCA CCAGCTTCCT AATGGGTGCT TCAGAAACGT GGGCCAGCTT
    TTTCACACAG CCATGAAGGG AGGTGTGGAT GGGGAAGTCC CCTTGGCTGC CTACATCACA
    GCTGCATACT TGGAGGCAGG GGAGACACCA GAGAGTACGG TGGTGCGCAA GGCTCTGGGC
    TGCATTGCTC CTTCCCTCCC CAAAGCTGCC AGCACTTACA CACAGGCCCT CCTGGCCTAC
    ACCTTTGCCC TGGCTAAGGA CCAGCAACGT ACACAAGAGC TTCTCAACAT GCTTGATCAA
    AAGGCAATCA GAGCAGGTGG GCAGATCCAT TGGAGTCAAA GCCCATCCGA GACACCCAGC
    GCTTGGTCAC CGCCACTGTC TGTGGATGTG GAGCTGACAG CCTATGTCCT CCTGGCCCTG
    CTCTCCAAGC CAAATGTCAC AAGGGCTGAT CTCACCACAG CCTCTGGCAT TGTGGCCTGG
    CTCACCAGGC AGCAGAATGC CTATGGAGGA TTTGCCTCAA CACAGGACAC AGTGGTTGCC
    CTGCAGGCCT TGGCTAAGTA TGCAGCACTG ACCTACAGCA CAAAGGGGGT TGCAGAAGTG
    AGGGTGAGGT CCCAGAAAGG CTTTGGGAGG AAGTTCCAAG TCTCCTACCA GAACCGACTT
    TTGGTGCAGG AGGTGGCACT GACAGAAATC CCAGGGAAGT TCTCAGTGCA GGCCCAGGGC
    AGCTGTTGTG TCTTTACCCG GATGGTGCTG AGGTACAACA CCCCCTTCCC ACAAGTCTCC
    AAATCCTTTT TCTTGCGAGT GAAAACCAAG CCAGTCAATT GCACCGGGGA TGATACCCAC
    TCTGTAACTC TCTACGTCAA TGTCAGGTAC ATCGGGAAGA GAGCCATTTC CAGCATGGTG
    ATTGTGGAGG TGTCCCTACT GTCTGGATTT GTCCTTGCTC CAGGATCTGG GATGCCTATG
    GAGCATTGGC ACCCTGTGAA AAGAACTGAA AAAACCCAAG CAGGTGTTGC CATCTATTTG
    GACAAGCTGA GCCATAAGTC TGAGACATAT GTCCTGCACC TGGAGCGGGA GATTGGGGTG
    ACCAACCTGA AGCCAGGCCA TGTCAGGGTC TATGACTACT ACCATCCAGA GGAGCAGGCC
    ATGGCTGATT ATAATGTTTT CTGTGTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OAn148267
    Clone ID Related Accession (Same CDS sequence) XM_021267451.1
    Accession Version XM_021267451.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4290bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-05-23
    Organism Anas platyrhynchos(mallard)
    Product alpha-2-macroglobulin-like protein 1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_004676512.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Anas platyrhynchos Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    ATGTCTTCTT TCTCCTGTCC CAGACATTAC CTGGTGGCGA TCCCTGCAGC TCTCCGCTAC 
    CCATCCACCC AAATGGCTTG CCTCCATATC ACCTGTTACG AAGCAAAGCT TCAAGTGAAG
    CTGGTCCTGG AGCGCTCTGA AGGACACAAT GTCTTAGTGC AAGAAACCAT CCAGAAGGAG
    AAGACTTTCA TGTGCGCTAA GTTCTGGGTT GCACCTCCAG CTGATGGCAC AGAGGAGATT
    GCCACTGTCA AGCTGCTTAT CACAGGCCAA GGAGTCAGTA TTGAGGAGAA GAAAAAGGTC
    CTGATCAGAA AGGCCAGCAG TGGCACCTTC ATCCAAACAG ACAAGCCCAC CTATAAACCA
    GGTCAAACAG TGAAATTTCG TATTGTGACT CTGGATGAGG ACTTCATTGC ACTTAATGAT
    TCGATTTCCC TGTTTCTTCA GGACCCTAAC AACAACCGGA TAGAGCAGTG GCTGAACGTG
    GTGCCCCAAG ATGGCATTGC AGATCTGTCT TTCCAGCTAA GTGATGAGCC ACTGCTTGGG
    ACGTATGTCA TCAATGTAAC CAGTGGGGAA GCATACGACA GCTTCTCTGT TGAGGATTAT
    GCACTGCCAA GATTTGAAGT GATCTTTGAG GCACCAATTA AGATTTATGC ACTAGATGAA
    ACCTTCCCAC TCCGGGTATG TGGCAGATAC ACCTATGGGA AGGGTGTCCA GGGAATGGTT
    CACGTGCAGC TTTGCCAGAA GATAGCAGTG TTCTTACCCA GTGCTTCGAA ACCTGATCTC
    TGTCAGGAAT TCCACGGCCA GACAGACAAG ACGGGTTGCT TCTTCACAAA CGTGACCCTA
    TCCTCCTTCA GCCGAGACTT CCGATACTAT CAGGACAGCA TAGTTGCAGA GGCCTCACTG
    GTGGAAGATG GCACAGAGAT ACAGGTCAAT GCATCCCACA AATTACTCAT TTCCAAGATT
    GGCGGAATGG CCTTGTTTGA TGATATGAAT TCTTACTACC ACGCTGGAGA GATGTACAGG
    GGGAAGATTA GAGTCATCAA CTACAAAGGC AAGACACTGA AGCACAAAAA AGTTCTCCTC
    GTAGTAAGCA GTGGTGAGCA GAAGTTTCAG CATAAGTACC TCACTGGGGA TGCTGGGGAA
    GTTTCATTTA GCCTGAATAC AACTGCTTGG AACAGCACCT CAGCCTCCCT GGAGGCAAGT
    GTCCTGCATC AAGATTTGGA TACAGAGCCT GGGACAATTG ATTTGAGTTA CCAGAAAGCC
    TCTCATTTCA TACATCCATT CTACAGCACC AGCAAGAGTT TTCTCACTAT TGTCCGTGTG
    CCAGAAACGA TGCCCTGTGG TAAAAAGCAG GCTATCCAGG TGGACTTCAG AATCTATCAG
    GAAGACCTGG AACATGGGCC CAAGCGTGTC ATTTTCTCCT ACTTCTTCAC GGGGAAAAGA
    GGGATAGTCC ATGCAGGCCA GAAGACTGTT TGGGTTGGGC TGCCAAGAAT GCTGAAAGGC
    TTCTTCTCCA TCCCTGTTAC CTTCAGCTCA GTCTATGCTC CAGCTCCAAC ACTTATTGTT
    TATGTTATCT TCCCTAATGG AAAAATCATT GCTGATTCTG CCACCTTCAG TGTCTCCACA
    TGTTTCAGAA ATAAGGTGGA GCTGGGCTTC TCAACGTCCC AGACTCTTCC TGATTCAGAG
    GTTGGTTTGA ACCTGCTGGC AGCTCCTGGG TCCACATGTG CTGTCTGGGC TGTGGATCAG
    AGTGCCTTTT TGCTGAAGCC AGAAAAAGAA CTCAGCAGCT CCATGATCTA TGGGCTCTTC
    CCATCTGTTT ATAACTCCGG GTATCCTCGC CAAGTGTCTG AAGATGATCA TTCATGCGGG
    TTCCCGAATT CTGACGAGCC TGATGTGTTT ACAGCATTCA AGGAAGTGGG GTTGAAAATT
    ATGTCCAACA CCAATATCAG GAAACCAAGA CTGTGTCTAA CTACTCAGTC AACAACTATG
    CTGCAGGAAA CAGATGTGAT CACTTCCAGG CCCATGTTGA TGTTTGCTCA GCCTCATAAA
    GCACCTAACA CAGGGCATCT GTTGACATCT ACCCATCAGC CCACCATGTT TTCACCTGTT
    TCTCCAGCTG AAGAGAAAGT GCACAAACAT TTCACAAAAA CCTGGATATG GGATTTGTAT
    TCTGTGGGTC CCAGTGGGAA CAAGAGCGTC ACTGTCACTG CGCCTGGCAC CATCACAGAA
    TGGAAAGCAG GGATGTTCTG CACAGGACGT AATGGCTTTG GACTTGCTCC AACCTCCAGT
    CTGCTTGTTT TCAAGCCCTT TTTTGTGGAG CTCACACTGC CATCTTCTGT GATCCAGGGT
    GAGACCTTCA CCTTGAAGGC CACAGTCTTC AACTACCTGA AGCAATGCAT GAAGATCCAA
    GTGACTATGG AGGAGTTCAC ACACTTCCAG CTGAAGCCAT GTGAAGGCTG TGTCTACAGC
    AGCTGCTTAT GTGCTGGAGA AGCTAAAACA TTTCAGTGGA GTGTCACAGC CGAGCAACTG
    GGGCCCATGA ACATCACCAT CAGCACAGAG GCCGTGGCCA CCAAAGAGCT CTGTGGCAAA
    GAGATACCAT TTGTCCCAAA CCAAGGACAG AAAGACACAA TCACCAAACT CCTTCTTGTC
    CGGCCAGAGG GAGTGCTAGT GGAAAAGGCT CACAGCTCCA TCCTGTGTCC CAAAAAAGGG
    AGTCCAGCGC AGGAGTCTGT GTCCTTGATG TTGCCTCTAA ATGTGGTTGA AGGTTCAGTC
    AGAGCTACAG TCTCGGTCAC TGGTGACCTC ATGGGGACTG CACTGCAGAA CTTGGACCAC
    CTGGTGCATA TGCCCCATGG CTGTGGGGAG CAGAACATGG TGCTGTTTGC CCCCATTGTC
    TATGTGCTGC AGTACCTGGA GAAGACGGGA CAGCTGACCC CTGAAATCAA GGAGAGGGCA
    ACGGGATTCC TGCGCAAGGG GTACCAGATA CAGCTGCAGT ATCAACACCC TGATGGTTCT
    TTCAGTGAAT TTGGTACCAA GGATGAGTAC GGTAATACTT GGCTGACTTC ATTTGTGGTC
    AAATGCTTTG TCCAAGCCAA GCCATACATT TTCCTGGACA ATAGGAGCAT CCAAGCTGCT
    CTCAACTGGC TGGAGTTCCA CCAGCTTCCT AATGGGTGCT TCAGAAACGT GGGCCAGCTT
    TTTCACACAG CCATGAAGGG AGGTGTGGAT GGGGAAGTCC CCTTGGCTGC CTACATCACA
    GCTGCATACT TGGAGGCAGG GGAGACACCA GAGAGTACGG TGGTGCGCAA GGCTCTGGGC
    TGCATTGCTC CTTCCCTCCC CAAAGCTGCC AGCACTTACA CACAGGCCCT CCTGGCCTAC
    ACCTTTGCCC TGGCTAAGGA CCAGCAACGT ACACAAGAGC TTCTCAACAT GCTTGATCAA
    AAGGCAATCA GAGCAGGTGG GCAGATCCAT TGGAGTCAAA GCCCATCCGA GACACCCAGC
    GCTTGGTCAC CGCCACTGTC TGTGGATGTG GAGCTGACAG CCTATGTCCT CCTGGCCCTG
    CTCTCCAAGC CAAATGTCAC AAGGGCTGAT CTCACCACAG CCTCTGGCAT TGTGGCCTGG
    CTCACCAGGC AGCAGAATGC CTATGGAGGA TTTGCCTCAA CACAGGACAC AGTGGTTGCC
    CTGCAGGCCT TGGCTAAGTA TGCAGCACTG ACCTACAGCA CAAAGGGGGT TGCAGAAGTG
    AGGGTGAGGT CCCAGAAAGG CTTTGGGAGG AAGTTCCAAG TCTCCTACCA GAACCGACTT
    TTGGTGCAGG AGGTGGCACT GACAGAAATC CCAGGGAAGT TCTCAGTGCA GGCCCAGGGC
    AGCTGTTGTG TCTTTACCCG GATGGTGCTG AGGTACAACA CCCCCTTCCC ACAAGTCTCC
    AAATCCTTTT TCTTGCGAGT GAAAACCAAG CCAGTCAATT GCACCGGGGA TGATACCCAC
    TCTGTAACTC TCTACGTCAA TGTCAGGTAC ATCGGGAAGA GAGCCATTTC CAGCATGGTG
    ATTGTGGAGG TGTCCCTACT GTCTGGATTT GTCCTTGCTC CAGGATCTGG GATGCCTATG
    GAGCATTGGC ACCCTGTGAA AAGAACTGAA AAAACCCAAG CAGGTGTTGC CATCTATTTG
    GACAAGCTGA GCCATAAGTC TGAGACATAT GTCCTGCACC TGGAGCGGGA GATTGGGGTG
    ACCAACCTGA AGCCAGGCCA TGTCAGGGTC TATGACTACT ACCATCCAGA GGAGCAGGCC
    ATGGCTGATT ATAATGTTTT CTGTGTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_021123126.1
    CDS1..4290
    Translation

    Target ORF information:

    RefSeq Version XM_021267451.1
    Organism Anas platyrhynchos(mallard)
    Definition Anas platyrhynchos alpha-2-macroglobulin-like protein 1 (LOC101795253), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021267451.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    ATGTCTTCTT TCTCCTGTCC CAGACATTAC CTGGTGGCGA TCCCTGCAGC TCTCCGCTAC 
    CCATCCACCC AAATGGCTTG CCTCCATATC ACCTGTTACG AAGCAAAGCT TCAAGTGAAG
    CTGGTCCTGG AGCGCTCTGA AGGACACAAT GTCTTAGTGC AAGAAACCAT CCAGAAGGAG
    AAGACTTTCA TGTGCGCTAA GTTCTGGGTT GCACCTCCAG CTGATGGCAC AGAGGAGATT
    GCCACTGTCA AGCTGCTTAT CACAGGCCAA GGAGTCAGTA TTGAGGAGAA GAAAAAGGTC
    CTGATCAGAA AGGCCAGCAG TGGCACCTTC ATCCAAACAG ACAAGCCCAC CTATAAACCA
    GGTCAAACAG TGAAATTTCG TATTGTGACT CTGGATGAGG ACTTCATTGC ACTTAATGAT
    TCGATTTCCC TGTTTCTTCA GGACCCTAAC AACAACCGGA TAGAGCAGTG GCTGAACGTG
    GTGCCCCAAG ATGGCATTGC AGATCTGTCT TTCCAGCTAA GTGATGAGCC ACTGCTTGGG
    ACGTATGTCA TCAATGTAAC CAGTGGGGAA GCATACGACA GCTTCTCTGT TGAGGATTAT
    GCACTGCCAA GATTTGAAGT GATCTTTGAG GCACCAATTA AGATTTATGC ACTAGATGAA
    ACCTTCCCAC TCCGGGTATG TGGCAGATAC ACCTATGGGA AGGGTGTCCA GGGAATGGTT
    CACGTGCAGC TTTGCCAGAA GATAGCAGTG TTCTTACCCA GTGCTTCGAA ACCTGATCTC
    TGTCAGGAAT TCCACGGCCA GACAGACAAG ACGGGTTGCT TCTTCACAAA CGTGACCCTA
    TCCTCCTTCA GCCGAGACTT CCGATACTAT CAGGACAGCA TAGTTGCAGA GGCCTCACTG
    GTGGAAGATG GCACAGAGAT ACAGGTCAAT GCATCCCACA AATTACTCAT TTCCAAGATT
    GGCGGAATGG CCTTGTTTGA TGATATGAAT TCTTACTACC ACGCTGGAGA GATGTACAGG
    GGGAAGATTA GAGTCATCAA CTACAAAGGC AAGACACTGA AGCACAAAAA AGTTCTCCTC
    GTAGTAAGCA GTGGTGAGCA GAAGTTTCAG CATAAGTACC TCACTGGGGA TGCTGGGGAA
    GTTTCATTTA GCCTGAATAC AACTGCTTGG AACAGCACCT CAGCCTCCCT GGAGGCAAGT
    GTCCTGCATC AAGATTTGGA TACAGAGCCT GGGACAATTG ATTTGAGTTA CCAGAAAGCC
    TCTCATTTCA TACATCCATT CTACAGCACC AGCAAGAGTT TTCTCACTAT TGTCCGTGTG
    CCAGAAACGA TGCCCTGTGG TAAAAAGCAG GCTATCCAGG TGGACTTCAG AATCTATCAG
    GAAGACCTGG AACATGGGCC CAAGCGTGTC ATTTTCTCCT ACTTCTTCAC GGGGAAAAGA
    GGGATAGTCC ATGCAGGCCA GAAGACTGTT TGGGTTGGGC TGCCAAGAAT GCTGAAAGGC
    TTCTTCTCCA TCCCTGTTAC CTTCAGCTCA GTCTATGCTC CAGCTCCAAC ACTTATTGTT
    TATGTTATCT TCCCTAATGG AAAAATCATT GCTGATTCTG CCACCTTCAG TGTCTCCACA
    TGTTTCAGAA ATAAGGTGGA GCTGGGCTTC TCAACGTCCC AGACTCTTCC TGATTCAGAG
    GTTGGTTTGA ACCTGCTGGC AGCTCCTGGG TCCACATGTG CTGTCTGGGC TGTGGATCAG
    AGTGCCTTTT TGCTGAAGCC AGAAAAAGAA CTCAGCAGCT CCATGATCTA TGGGCTCTTC
    CCATCTGTTT ATAACTCCGG GTATCCTCGC CAAGTGTCTG AAGATGATCA TTCATGCGGG
    TTCCCGAATT CTGACGAGCC TGATGTGTTT ACAGCATTCA AGGAAGTGGG GTTGAAAATT
    ATGTCCAACA CCAATATCAG GAAACCAAGA CTGTGTCTAA CTACTCAGTC AACAACTATG
    CTGCAGGAAA CAGATGTGAT CACTTCCAGG CCCATGTTGA TGTTTGCTCA GCCTCATAAA
    GCACCTAACA CAGGGCATCT GTTGACATCT ACCCATCAGC CCACCATGTT TTCACCTGTT
    TCTCCAGCTG AAGAGAAAGT GCACAAACAT TTCACAAAAA CCTGGATATG GGATTTGTAT
    TCTGTGGGTC CCAGTGGGAA CAAGAGCGTC ACTGTCACTG CGCCTGGCAC CATCACAGAA
    TGGAAAGCAG GGATGTTCTG CACAGGACGT AATGGCTTTG GACTTGCTCC AACCTCCAGT
    CTGCTTGTTT TCAAGCCCTT TTTTGTGGAG CTCACACTGC CATCTTCTGT GATCCAGGGT
    GAGACCTTCA CCTTGAAGGC CACAGTCTTC AACTACCTGA AGCAATGCAT GAAGATCCAA
    GTGACTATGG AGGAGTTCAC ACACTTCCAG CTGAAGCCAT GTGAAGGCTG TGTCTACAGC
    AGCTGCTTAT GTGCTGGAGA AGCTAAAACA TTTCAGTGGA GTGTCACAGC CGAGCAACTG
    GGGCCCATGA ACATCACCAT CAGCACAGAG GCCGTGGCCA CCAAAGAGCT CTGTGGCAAA
    GAGATACCAT TTGTCCCAAA CCAAGGACAG AAAGACACAA TCACCAAACT CCTTCTTGTC
    CGGCCAGAGG GAGTGCTAGT GGAAAAGGCT CACAGCTCCA TCCTGTGTCC CAAAAAAGGG
    AGTCCAGCGC AGGAGTCTGT GTCCTTGATG TTGCCTCTAA ATGTGGTTGA AGGTTCAGTC
    AGAGCTACAG TCTCGGTCAC TGGTGACCTC ATGGGGACTG CACTGCAGAA CTTGGACCAC
    CTGGTGCATA TGCCCCATGG CTGTGGGGAG CAGAACATGG TGCTGTTTGC CCCCATTGTC
    TATGTGCTGC AGTACCTGGA GAAGACGGGA CAGCTGACCC CTGAAATCAA GGAGAGGGCA
    ACGGGATTCC TGCGCAAGGG GTACCAGATA CAGCTGCAGT ATCAACACCC TGATGGTTCT
    TTCAGTGAAT TTGGTACCAA GGATGAGTAC GGTAATACTT GGCTGACTTC ATTTGTGGTC
    AAATGCTTTG TCCAAGCCAA GCCATACATT TTCCTGGACA ATAGGAGCAT CCAAGCTGCT
    CTCAACTGGC TGGAGTTCCA CCAGCTTCCT AATGGGTGCT TCAGAAACGT GGGCCAGCTT
    TTTCACACAG CCATGAAGGG AGGTGTGGAT GGGGAAGTCC CCTTGGCTGC CTACATCACA
    GCTGCATACT TGGAGGCAGG GGAGACACCA GAGAGTACGG TGGTGCGCAA GGCTCTGGGC
    TGCATTGCTC CTTCCCTCCC CAAAGCTGCC AGCACTTACA CACAGGCCCT CCTGGCCTAC
    ACCTTTGCCC TGGCTAAGGA CCAGCAACGT ACACAAGAGC TTCTCAACAT GCTTGATCAA
    AAGGCAATCA GAGCAGGTGG GCAGATCCAT TGGAGTCAAA GCCCATCCGA GACACCCAGC
    GCTTGGTCAC CGCCACTGTC TGTGGATGTG GAGCTGACAG CCTATGTCCT CCTGGCCCTG
    CTCTCCAAGC CAAATGTCAC AAGGGCTGAT CTCACCACAG CCTCTGGCAT TGTGGCCTGG
    CTCACCAGGC AGCAGAATGC CTATGGAGGA TTTGCCTCAA CACAGGACAC AGTGGTTGCC
    CTGCAGGCCT TGGCTAAGTA TGCAGCACTG ACCTACAGCA CAAAGGGGGT TGCAGAAGTG
    AGGGTGAGGT CCCAGAAAGG CTTTGGGAGG AAGTTCCAAG TCTCCTACCA GAACCGACTT
    TTGGTGCAGG AGGTGGCACT GACAGAAATC CCAGGGAAGT TCTCAGTGCA GGCCCAGGGC
    AGCTGTTGTG TCTTTACCCG GATGGTGCTG AGGTACAACA CCCCCTTCCC ACAAGTCTCC
    AAATCCTTTT TCTTGCGAGT GAAAACCAAG CCAGTCAATT GCACCGGGGA TGATACCCAC
    TCTGTAACTC TCTACGTCAA TGTCAGGTAC ATCGGGAAGA GAGCCATTTC CAGCATGGTG
    ATTGTGGAGG TGTCCCTACT GTCTGGATTT GTCCTTGCTC CAGGATCTGG GATGCCTATG
    GAGCATTGGC ACCCTGTGAA AAGAACTGAA AAAACCCAAG CAGGTGTTGC CATCTATTTG
    GACAAGCTGA GCCATAAGTC TGAGACATAT GTCCTGCACC TGGAGCGGGA GATTGGGGTG
    ACCAACCTGA AGCCAGGCCA TGTCAGGGTC TATGACTACT ACCATCCAGA GGAGCAGGCC
    ATGGCTGATT ATAATGTTTT CTGTGTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OAn162769
    Clone ID Related Accession (Same CDS sequence) XM_021267451.2
    Accession Version XM_021267451.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4326bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2018-12-19
    Organism Anas platyrhynchos(mallard)
    Product alpha-2-macroglobulin-like protein 1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_040046.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Dec 20, 2018 this sequence version replaced XM_021267451.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Anas platyrhynchos Annotation Release 103 Annotation Version :: 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    ATGAGGATAG CCATCCTCCT GAGCCTCCTG TTCCATGCTG CTGCTGCTTC TCACCAACTA 
    CATTACCTGG TGGCGATCCC TGCAGCTCTC CGCTACCCAT CCACCCAAAT GGCTTGCCTC
    CATATCACCT GTTACGAAGC AAAGCTTCAA GTGAAGCTGG TCCTGGAGCG CTCTGAAGGA
    CACAATGTCT TAGTGCAAGA AACCATCCAG AAGGAGAAGA CTTTCATGTG CGCTAAGTTC
    TGGGTTGCAC CTCCAGCTGA TGGCACAGAG GAGATTGCCA CTGTCAAGCT GCTTATCACA
    GGCCAAGGAG TCAGTATTGA GGAGAAGAAA AAGGTCCTGA TCAGAAAGGC CAGCAGTGGC
    ACCTTCATCC AAACAGACAA GCCCACCTAT AAACCAGGTC AAACAGTGAA ATTTCGTATT
    GTGACTCTGG ATGAGGACTT CATTGCACTT AATGATTCGA TTTCCCTGTT TCTTCAGGAC
    CCTAACAACA ACCGGATAGA GCAGTGGCTG AACGTGGTGC CCCAAGATGG CATTGCAGAT
    CTGTCTTTCC AGCTAAGTGA TGAGCCACTG CTTGGGACGT ATGTCATCAA TGTAACCAGT
    GGGGAAGCAT ACGACAGCTT CTCTGTTGAG GATTATGCAC TGCCAAGATT TGAAGTGATC
    TTTGAGGCAC CAATTAAGAT TTATGCACTA GATGAAACCT TCCCACTCCG GGTATGTGGC
    AGATACACCT ATGGGAAGGG TGTCCAGGGA ATGGTTCACG TGCAGCTTTG CCAGAAGATA
    GCAGTGTTCT TACCCAGTGC TTCGAAACCT GATCTCTGTC AGGAATTCCA CGGCCAGACA
    GACAAGACGG GTTGCTTCTT CACAAACGTG ACCCTATCCT CCTTCAGCCG AGACTTCCGA
    TACTATCAGG ACAGCATAGT TGCAGAGGCC TCACTGGTGG AAGATGGCAC AGAGATACAG
    GTCAATGCAT CCCACAAATT ACTCATTTCC AAGATTGGCG GAATGGCCTT GTTTGATGAT
    ATGAATTCTT ACTACCACGC TGGAGAGATG TACAGGGGGA AGATTAGAGT CATCAACTAC
    AAAGGCAAGA CACTGAAGCA CAAAAAAGTT CTCCTCGTAG TAAGCAGTGG TGAGCAGAAG
    TTTCAGCATA AGTACCTCAC TGGGGATGCT GGGGAAGTTT CATTTAGCCT GAATACAACT
    GCTTGGAACA GCACCTCAGC CTCCCTGGAG GCAAGTGTCC TGCATCAAGA TTTGGATACA
    GAGCCTGGGA CAATTGATTT GAGTTACCAG AAAGCCTCTC ATTTCATACA TCCATTCTAC
    AGCACCAGCA AGAGTTTTCT CACTATTGTC CGTGTGCCAG AAACGATGCC CTGTGGTAAA
    AAGCAGGCTA TCCAGGTGGA CTTCAGAATC TATCAGGAAG ACCTGGAACA TGGGCCCAAG
    CGTGTCATTT TCTCCTACTT CTTCACGGGG AAAAGAGGGA TAGTCCATGC AGGCCAGAAG
    ACTGTTTGGG TTGGGCTGCC AAGAATGCTG AAAGGCTTCT TCTCCATCCC TGTTACCTTC
    AGCTCAGTCT ATGCTCCAGC TCCAACACTT ATTGTTTATG TTATCTTCCC TAATGGAAAA
    ATCATTGCTG ATTCTGCCAC CTTCAGTGTC TCCACATGTT TCAGAAATAA GGTGGAGCTG
    GGCTTCTCAA CGTCCCAGAC TCTTCCTGAT TCAGAGGTTG GTTTGAACCT GCTGGCAGCT
    CCTGGGTCCA CATGTGCTGT CTGGGCTGTG GATCAGAGTG CCTTTTTGCT GAAGCCAGAA
    AAAGAACTCA GCAGCTCCAT GATCTATGGG CTCTTCCCAT CTGTTTATAA CTCCGGGTAT
    CCTCGCCAAG TGTCTGAAGA TGATCATTCA TGCGGGTTCC CGAATTCTGA CGAGCCTGAT
    GTGTTTACAG CATTCAAGGA AGTGGGGTTG AAAATTATGT CCAACACCAA TATCAGGAAA
    CCAAGACTGT GTCTAACTAC TCAGTCAACA ACTATGCTGC AGGAAACAGA TGTGATCACT
    TCCAGGCCCA TGTTGATGTT TGCTCAGCCT CATAAAGCAC CTAACACAGG GCATCTGTTG
    ACATCTACCC ATCAGCCCAC CATGTTTTCA CCTGTTTCTC CAGCTGAAGA GAAAGTGCAC
    AAACATTTCA CAAAAACCTG GATATGGGAT TTGTATTCTG TGGGTCCCAG TGGGAACAAG
    AGCGTCACTG TCACTGCGCC TGGCACCATC ACAGAATGGA AAGCAGGGAT GTTCTGCACA
    GGACGTAATG GCTTTGGACT TGCTCCAACC TCCAGTCTGC TTGTTTTCAA GCCCTTTTTT
    GTGGAGCTCA CACTGCCATC TTCTGTGATC CAGGGTGAGA CCTTCACCTT GAAGGCCACA
    GTCTTCAACT ACCTGAAGCA ATGCATGAAG ATCCAAGTGA CTATGGAGGA GTTCACACAC
    TTCCAGCTGA AGCCATGTGA AGGCTGTGTC TACAGCAGCT GCTTATGTGC TGGAGAAGCT
    AAAACATTTC AGTGGAGTGT CACAGCCGAG CAACTGGGGC CCATGAACAT CACCATCAGC
    ACAGAGGCCG TGGCCACCAA AGAGCTCTGT GGCAAAGAGA TACCATTTGT CCCAAACCAA
    GGACAGAAAG ACACAATCAC CAAACTCCTT CTTGTCCGGC CAGAGGGAGT GCTAGTGGAA
    AAGGCTCACA GCTCCATCCT GTGTCCCAAA AAAGGGAGTC CAGCGCAGGA GTCTGTGTCC
    TTGATGTTGC CTCTAAATGT GGTTGAAGGT TCAGTCAGAG CTACAGTCTC GGTCACTGGT
    GACCTCATGG GGACTGCACT GCAGAACTTG GACCACCTGG TGCATATGCC CCATGGCTGT
    GGGGAGCAGA ACATGGTGCT GTTTGCCCCC ATTGTCTATG TGCTGCAGTA CCTGGAGAAG
    ACGGGACAGC TGACCCCTGA AATCAAGGAG AGGGCAACGG GATTCCTGCG CAAGGGGTAC
    CAGATACAGC TGCAGTATCA ACACCCTGAT GGTTCTTTCA GTGAATTTGG TACCAAGGAT
    GAGTACGGTA ATACTTGGCT GACTTCATTT GTGGTCAAAT GCTTTGTCCA AGCCAAGCCA
    TACATTTTCC TGGACAATAG GAGCATCCAA GCTGCTCTCA ACTGGCTGGA GTTCCACCAG
    CTTCCTAATG GGTGCTTCAG AAACGTGGGC CAGCTTTTTC ACACAGCCAT GAAGGGAGGT
    GTGGATGGGG AAGTCCCCTT GGCTGCCTAC ATCACAGCTG CATACTTGGA GGCAGGGGAG
    ACACCAGAGA GTACGGTGGT GCGCAAGGCT CTGGGCTGCA TTGCTCCTTC CCTCCCCAAA
    GCTGCCAGCA CTTACACACA GGCCCTCCTG GCCTACACCT TTGCCCTGGC TAAGGACCAG
    CAACGTACAC AAGAGCTTCT CAACATGCTT GATCAAAAGG CAATCAGAGC AGGTGGGCAG
    ATCCATTGGA GTCAAAGCCC ATCCGAGACA CCCAGCGCTT GGTCACCGCC ACTGTCTGTG
    GATGTGGAGC TGACAGCCTA TGTCCTCCTG GCCCTGCTCT CCAAGCCAAA TGTCACAAGG
    GCTGATCTCA CCACAGCCTC TGGCATTGTG GCCTGGCTCA CCAGGCAGCA GAATGCCTAT
    GGAGGATTTG CCTCAACACA GGACACAGTG GTTGCCCTGC AGGCCTTGGC TAAGTATGCA
    GCACTGACCT ACAGCACAAA GGGGGTTGCA GAAGTGAGGG TGAGGTCCCA GAAAGGCTTT
    GGGAGGAAGT TCCAAGTCTC CTACCAGAAC CGACTTTTGG TGCAGGAGGT GGCACTGACA
    GAAATCCCAG GGAAGTTCTC AGTGCAGGCC CAGGGCAGCT GTTGTGTCTT TACCCGGATG
    GTGCTGAGGT ACAACACACC CTTCCCACAA GTCTCCAAAT CCTTTTTCTT GCGAGTGAAA
    ACCAAGCCAG TCAATTGCAC CGGGGATGAT ACCCACTCTG TAACTCTCTA CGTCAATGTC
    AGGTACATCG GGAAGAGAGC CATTTCCAGC ATGGTGATTG TGGAGGTGTC CCTACTGTCT
    GGATTTGTCC TTGCTCCAGG ATCTGGGATG CCTATGGAGC ATTGGCACCC TGTGAAAAGA
    ACTGAAAAAA CCCAAGCAGG TGTTGCCATC TATTTGGACA AGCTGAGCCA TAAGTCTGAG
    ACATATGTCC TGCACCTGGA GCGGGAGATT GGGGTGACCA ACCTGAAGCC AGGCCATGTC
    AGGGTCTATG ACTACTACCA TCCAGAGGAG CAGGCCATGG CTGATTATAA TGTTTTCTGT
    GTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_021123126.2
    CDS251..4576
    Translation

    Target ORF information:

    RefSeq Version XM_021267451.2
    Organism Anas platyrhynchos(mallard)
    Definition Anas platyrhynchos alpha-2-macroglobulin-like protein 1 (LOC101795253), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021267451.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    ATGAGGATAG CCATCCTCCT GAGCCTCCTG TTCCATGCTG CTGCTGCTTC TCACCAACTA 
    CATTACCTGG TGGCGATCCC TGCAGCTCTC CGCTACCCAT CCACCCAAAT GGCTTGCCTC
    CATATCACCT GTTACGAAGC AAAGCTTCAA GTGAAGCTGG TCCTGGAGCG CTCTGAAGGA
    CACAATGTCT TAGTGCAAGA AACCATCCAG AAGGAGAAGA CTTTCATGTG CGCTAAGTTC
    TGGGTTGCAC CTCCAGCTGA TGGCACAGAG GAGATTGCCA CTGTCAAGCT GCTTATCACA
    GGCCAAGGAG TCAGTATTGA GGAGAAGAAA AAGGTCCTGA TCAGAAAGGC CAGCAGTGGC
    ACCTTCATCC AAACAGACAA GCCCACCTAT AAACCAGGTC AAACAGTGAA ATTTCGTATT
    GTGACTCTGG ATGAGGACTT CATTGCACTT AATGATTCGA TTTCCCTGTT TCTTCAGGAC
    CCTAACAACA ACCGGATAGA GCAGTGGCTG AACGTGGTGC CCCAAGATGG CATTGCAGAT
    CTGTCTTTCC AGCTAAGTGA TGAGCCACTG CTTGGGACGT ATGTCATCAA TGTAACCAGT
    GGGGAAGCAT ACGACAGCTT CTCTGTTGAG GATTATGCAC TGCCAAGATT TGAAGTGATC
    TTTGAGGCAC CAATTAAGAT TTATGCACTA GATGAAACCT TCCCACTCCG GGTATGTGGC
    AGATACACCT ATGGGAAGGG TGTCCAGGGA ATGGTTCACG TGCAGCTTTG CCAGAAGATA
    GCAGTGTTCT TACCCAGTGC TTCGAAACCT GATCTCTGTC AGGAATTCCA CGGCCAGACA
    GACAAGACGG GTTGCTTCTT CACAAACGTG ACCCTATCCT CCTTCAGCCG AGACTTCCGA
    TACTATCAGG ACAGCATAGT TGCAGAGGCC TCACTGGTGG AAGATGGCAC AGAGATACAG
    GTCAATGCAT CCCACAAATT ACTCATTTCC AAGATTGGCG GAATGGCCTT GTTTGATGAT
    ATGAATTCTT ACTACCACGC TGGAGAGATG TACAGGGGGA AGATTAGAGT CATCAACTAC
    AAAGGCAAGA CACTGAAGCA CAAAAAAGTT CTCCTCGTAG TAAGCAGTGG TGAGCAGAAG
    TTTCAGCATA AGTACCTCAC TGGGGATGCT GGGGAAGTTT CATTTAGCCT GAATACAACT
    GCTTGGAACA GCACCTCAGC CTCCCTGGAG GCAAGTGTCC TGCATCAAGA TTTGGATACA
    GAGCCTGGGA CAATTGATTT GAGTTACCAG AAAGCCTCTC ATTTCATACA TCCATTCTAC
    AGCACCAGCA AGAGTTTTCT CACTATTGTC CGTGTGCCAG AAACGATGCC CTGTGGTAAA
    AAGCAGGCTA TCCAGGTGGA CTTCAGAATC TATCAGGAAG ACCTGGAACA TGGGCCCAAG
    CGTGTCATTT TCTCCTACTT CTTCACGGGG AAAAGAGGGA TAGTCCATGC AGGCCAGAAG
    ACTGTTTGGG TTGGGCTGCC AAGAATGCTG AAAGGCTTCT TCTCCATCCC TGTTACCTTC
    AGCTCAGTCT ATGCTCCAGC TCCAACACTT ATTGTTTATG TTATCTTCCC TAATGGAAAA
    ATCATTGCTG ATTCTGCCAC CTTCAGTGTC TCCACATGTT TCAGAAATAA GGTGGAGCTG
    GGCTTCTCAA CGTCCCAGAC TCTTCCTGAT TCAGAGGTTG GTTTGAACCT GCTGGCAGCT
    CCTGGGTCCA CATGTGCTGT CTGGGCTGTG GATCAGAGTG CCTTTTTGCT GAAGCCAGAA
    AAAGAACTCA GCAGCTCCAT GATCTATGGG CTCTTCCCAT CTGTTTATAA CTCCGGGTAT
    CCTCGCCAAG TGTCTGAAGA TGATCATTCA TGCGGGTTCC CGAATTCTGA CGAGCCTGAT
    GTGTTTACAG CATTCAAGGA AGTGGGGTTG AAAATTATGT CCAACACCAA TATCAGGAAA
    CCAAGACTGT GTCTAACTAC TCAGTCAACA ACTATGCTGC AGGAAACAGA TGTGATCACT
    TCCAGGCCCA TGTTGATGTT TGCTCAGCCT CATAAAGCAC CTAACACAGG GCATCTGTTG
    ACATCTACCC ATCAGCCCAC CATGTTTTCA CCTGTTTCTC CAGCTGAAGA GAAAGTGCAC
    AAACATTTCA CAAAAACCTG GATATGGGAT TTGTATTCTG TGGGTCCCAG TGGGAACAAG
    AGCGTCACTG TCACTGCGCC TGGCACCATC ACAGAATGGA AAGCAGGGAT GTTCTGCACA
    GGACGTAATG GCTTTGGACT TGCTCCAACC TCCAGTCTGC TTGTTTTCAA GCCCTTTTTT
    GTGGAGCTCA CACTGCCATC TTCTGTGATC CAGGGTGAGA CCTTCACCTT GAAGGCCACA
    GTCTTCAACT ACCTGAAGCA ATGCATGAAG ATCCAAGTGA CTATGGAGGA GTTCACACAC
    TTCCAGCTGA AGCCATGTGA AGGCTGTGTC TACAGCAGCT GCTTATGTGC TGGAGAAGCT
    AAAACATTTC AGTGGAGTGT CACAGCCGAG CAACTGGGGC CCATGAACAT CACCATCAGC
    ACAGAGGCCG TGGCCACCAA AGAGCTCTGT GGCAAAGAGA TACCATTTGT CCCAAACCAA
    GGACAGAAAG ACACAATCAC CAAACTCCTT CTTGTCCGGC CAGAGGGAGT GCTAGTGGAA
    AAGGCTCACA GCTCCATCCT GTGTCCCAAA AAAGGGAGTC CAGCGCAGGA GTCTGTGTCC
    TTGATGTTGC CTCTAAATGT GGTTGAAGGT TCAGTCAGAG CTACAGTCTC GGTCACTGGT
    GACCTCATGG GGACTGCACT GCAGAACTTG GACCACCTGG TGCATATGCC CCATGGCTGT
    GGGGAGCAGA ACATGGTGCT GTTTGCCCCC ATTGTCTATG TGCTGCAGTA CCTGGAGAAG
    ACGGGACAGC TGACCCCTGA AATCAAGGAG AGGGCAACGG GATTCCTGCG CAAGGGGTAC
    CAGATACAGC TGCAGTATCA ACACCCTGAT GGTTCTTTCA GTGAATTTGG TACCAAGGAT
    GAGTACGGTA ATACTTGGCT GACTTCATTT GTGGTCAAAT GCTTTGTCCA AGCCAAGCCA
    TACATTTTCC TGGACAATAG GAGCATCCAA GCTGCTCTCA ACTGGCTGGA GTTCCACCAG
    CTTCCTAATG GGTGCTTCAG AAACGTGGGC CAGCTTTTTC ACACAGCCAT GAAGGGAGGT
    GTGGATGGGG AAGTCCCCTT GGCTGCCTAC ATCACAGCTG CATACTTGGA GGCAGGGGAG
    ACACCAGAGA GTACGGTGGT GCGCAAGGCT CTGGGCTGCA TTGCTCCTTC CCTCCCCAAA
    GCTGCCAGCA CTTACACACA GGCCCTCCTG GCCTACACCT TTGCCCTGGC TAAGGACCAG
    CAACGTACAC AAGAGCTTCT CAACATGCTT GATCAAAAGG CAATCAGAGC AGGTGGGCAG
    ATCCATTGGA GTCAAAGCCC ATCCGAGACA CCCAGCGCTT GGTCACCGCC ACTGTCTGTG
    GATGTGGAGC TGACAGCCTA TGTCCTCCTG GCCCTGCTCT CCAAGCCAAA TGTCACAAGG
    GCTGATCTCA CCACAGCCTC TGGCATTGTG GCCTGGCTCA CCAGGCAGCA GAATGCCTAT
    GGAGGATTTG CCTCAACACA GGACACAGTG GTTGCCCTGC AGGCCTTGGC TAAGTATGCA
    GCACTGACCT ACAGCACAAA GGGGGTTGCA GAAGTGAGGG TGAGGTCCCA GAAAGGCTTT
    GGGAGGAAGT TCCAAGTCTC CTACCAGAAC CGACTTTTGG TGCAGGAGGT GGCACTGACA
    GAAATCCCAG GGAAGTTCTC AGTGCAGGCC CAGGGCAGCT GTTGTGTCTT TACCCGGATG
    GTGCTGAGGT ACAACACACC CTTCCCACAA GTCTCCAAAT CCTTTTTCTT GCGAGTGAAA
    ACCAAGCCAG TCAATTGCAC CGGGGATGAT ACCCACTCTG TAACTCTCTA CGTCAATGTC
    AGGTACATCG GGAAGAGAGC CATTTCCAGC ATGGTGATTG TGGAGGTGTC CCTACTGTCT
    GGATTTGTCC TTGCTCCAGG ATCTGGGATG CCTATGGAGC ATTGGCACCC TGTGAAAAGA
    ACTGAAAAAA CCCAAGCAGG TGTTGCCATC TATTTGGACA AGCTGAGCCA TAAGTCTGAG
    ACATATGTCC TGCACCTGGA GCGGGAGATT GGGGTGACCA ACCTGAAGCC AGGCCATGTC
    AGGGTCTATG ACTACTACCA TCCAGAGGAG CAGGCCATGG CTGATTATAA TGTTTTCTGT
    GTCTGA

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.