GPR158 cDNA ORF clone, Gallus gallus(chicken)

The following GPR158 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the GPR158 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
OGa25533 NM_001257299.1
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Gallus gallus G protein-coupled receptor 158 (GPR158), mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $713.30
$1019.00

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** 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 OGa25533
    Clone ID Related Accession (Same CDS sequence) NM_001257299.1
    Accession Version NM_001257299.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3528bp)
    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 2018-06-25
    Organism Gallus gallus(chicken)
    Product probable G-protein coupled receptor 158 precursor
    Comment Comment: INFERRED REFSEQ: This record is predicted by genome sequence analysis and is not yet supported by experimental evidence. The reference sequence was derived from AADN05000033.1. On Mar 29, 2012 this sequence version replaced XM_003640637.1. Sequence Note: The RefSeq transcript and protein were derived from genomic sequence to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on alignments. ##Evidence-Data-START## RNAseq introns :: mixed/partial sample support SAMEA2201360, SAMEA2201361 [ECO:0000350] ##Evidence-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
    ATGGCATCGC TCCGGCTTCT TCTCCTCCTG CTCCTGGCCC AGCGCGGGCT CGGGGCCGCG 
    GCCGGCCGAG GGCGGGCGCC GGGAGGCAGG CAGCCCATCT ACAACCACAT CAAGAGCCGC
    GATCCGCCCC CGGCCCCGCG GAGCCGCTCT CCGGAGAGCA CCATCTTGGC GCAGCGGCTC
    GCCGAGGAGG TGCCCCAGGA CGTGGCCTCG TTCCTCTACA CCGGCGACTC CCGAGAGCTG
    CGGAGGGCCA ACTGCTCCGG GCGCTACGAG CTGGCCAGCC TGGCCGGCAA GTCTCGCTTC
    GTCTCGCACC CGTCCCTGCA CGGCGCCCTG GACACCCTCA CCCACGCCAC CAACTTCCTC
    AACATGATCC TGCAGAGCAA TAAGTCGCGG GAGCAGAACT TGCAGGAGGA CCTGGAGTGG
    TACCGAGCGC TGATCAGGAG CCTCCTGGAG GGGGACCCCA ACATCTCCAG AGCAGCCATC
    ACCTTCAGCA CAGAGCCCTT CTCTGCCCCC CAGGTATTCC TCCAGGCCAG CAGGCACGAG
    AGCCAGATCC ACCTGCAGGA CCTGTCCTCC TCCGCTCACC GCCTGGCCAA CGGATCCCTG
    GAGACTGAGT GGTTCCAGGG CCTGAAGCGC AAGTGGAGGC CGCATCAGCA CAGGAAGGTC
    TTGAACACGG GCTCCAAAAC TTTGGAGAAC AGCTGGAAGA GACGAGAAGG CTTCACGGCT
    GATAAGAACC ACATCAGATG GTCCTCTCCT TACCTGGAGT GTGAGAATGG GAATTACAAA
    CCCGGCTGGC TGGTGACACT CTCAGCAGCT TTCTATGGAC TGCAACCAAA CCTCATCCCC
    GAATTCAGAG GTGTTGTTAA AGTCGACATA AATCTGCAGA AGGTGGATAT CGACCAGTGC
    TCGAGTGAGG GGTGGTTCTC AGGAACACAC AGGTGTCATC TCAACAACTC TGAGTGCTTG
    CCAATTAAAG GTCTTGGATT TGTGCTTGGA GCCTACAAAT GTATTTGCAA GGAGGGATTC
    TATCATCCCA ACATCTTCTC AGTGAACAGC TTTCAGAGAA AGGATGCAGA TAATCGCTTT
    TCTGGAGGGG ACTTGTCGGA GGAAGTCTAC ACCTGCCTGC CCTGCAGGGA AGGATGTTCT
    AATTGTAAAG ATGATACTCC CTGCTATGCA CAGGAGGACA AGTATTTACG GCTTGCTATC
    ATCTCATTCC AAACGCTCTG TATGCTGCTG GACTTCATAA GCATGCTGGT AGTCTACCAT
    TTTCGCAAGG CAAAGAGTAT CAGAGCTTCA GGTCTGGTGC TGTTGGAAAC CATTCTTTTT
    GGATCACTTC TTCTGTACTT TCCGGTTGTC ATTTTGTATT TTGAGCCAAG TGTATTTCGC
    TGTGTTCTCC TAAGATGGGT TCGTCTTCTG GGCTTTGCTA CTGTTTATGG AACTGTGACG
    CTCAAGCTGC ACAGGGTTTT GAAGGTATTC CTGTCCAGAA CTGCTCAGCG TATTCCATAT
    ATGACAGGTG GGCGAGTGAT GAGGATGCTG GCTGTAATTC TCCTGGTAGT CTTTTGGTTT
    CTCGTTGGCT GGACTTCTGC AATAACCCAA AATTTGGAAA GAAACATTCC TCTAATTGGC
    CAAGGGCAAA CATCTGACCA CCTGATCTTC AATATGTGCC TCATGGACCG CTGGGATTAC
    ATGATGGCTG TTGCTGAATT TTTATTCCTC TTGTGGGGTG TTTATCTCTG CTATGCAGTG
    CGGACAGTCC CATCAGCATT TCATGAGCCA CGTTATATGG CTGTTGCAGT TCACAATGAG
    CTCATTATCT CTGCTATATT CCATACAATT AGATTCATTC TTGCTTCAAG ACTTCAGTCT
    GACTGGATGC TGATGCTGTT CTTTGCACAC ACGCACTTGA CTGTGACAGT CACTGTTGGG
    CTACTACTGA TCCCCAAGTT TTCACATTCA AGCAATAACC CAAGAGATGA TATAGCTACA
    GAAGCTTATG AAGATGAACT TGATATGGGC CGATCTGGAT CCTATCTGAA CAGCAGTATC
    AATTCAGCAT GGAGCGAGCA CAGTTTGGAT CCTGAAGATA TTCGGGATGA GTTGAAGAAA
    CTGTATGCCC AGCTTGAAAT CTATAAAAGG AAAAAGATGA TTGCTAACAA CCCACATCTC
    CAGAAAAAAA GGTGCTCTAA AAAGGGCTTG GGGCGCTCGA TAATGAGGCG TATTACAGAA
    ATCCCAGAGA CAGTCACTAG GCAATGCTCC AGGGACGAGA AGGACCTGAT GGAGCACAGT
    GCTGTGAAAA ACACGGCTAC ACTGAAAAAA ACCCCACAAG ATTCCACAAG TTCTGTAAAG
    CCAAAAGAAG AGACTTTGAA AAACAGAGTC TTCTCATTAA AGAAGTCCCA CAGCACTTAC
    GATCATGTCA GGGATCAAAC AGGAGAGCCT AATAGCATAA CTACAGAAAG CACAGAAGTT
    ACAGCTGCTG AGAATTCACT TCTGGATTCC TTAACTGGTA ACAATTTAAC CAAAAAAGCT
    GAAAAAGCTG AAGCAGTGTC CACTGAATCG GTCCCTTTGG TGTGCAAATC ACTAAGTGCA
    CATAACCTAA GTGCAGATAA GAAGCCTCTG CATCCAAGAA CATCTGTGTT ACAGAAATCC
    CTCAGTGTTA TTGCTAGTGC CAAGGAAAAG ACTCTGGGAC TAACGGGTAA AACGCAAAGT
    CTAGAAGAAA GTGCTAAATC TCAGAAATCT CAGCAGAAAG GGAAGGAAGG CAGCAAAAAG
    CACTCAGCAG CCGACAAAGG GGAGCACAAG GATTCGCACC GGAAGAACTC TACGCAATCT
    GAGGAGACAA AGAAAACCCA TAAGTCTGGC ATTATGAAGC AGCAAAGGGT TAGTCAGACA
    CCTGCAAATC CAGACACAGG CCCAGGTAAG TCTCTGCACA AGGACACTTT CGACATAGGT
    GAAGTTTGTC CTTGGGAGAT ATATGACCAA ACTCCTGGTC CTGTGCCTTC TGACTCTAAG
    ATTCAAAAAC ATGTGTCTAT TGCTTCCTCA GAAGCAGAGA AAAATCACCC TTCCCAGCCA
    AAGGGGAAAT CTCATCATAA GCAGAAGACT CCTGAGGGCT ACCAACAGTC GAATCAGCAG
    AGCCCACAGA AGTTGGAGGC GGGCACTCGG GAGGTGCAAG AGCAGCACAT TTTTGAAAAT
    GATAAAAAAC AGTTGAATTC CAAACCTCAG GGCTCCCCTG GGCTGAAGCG TGAGAACGTT
    AACAGATATG CACCGAATGT TTGTGGGGGG GAGCGCGAGG AGCTGCCCCA GAAAGCAGCA
    GAAAATGTCA GTAAGTTGGT GGAACAAAAA AAAGTTGCCT CATCTGAGGG AAATGTGCTT
    TCTGACTCCC GTAAGCCAAG TGGTTACTCG CAGCAACCTT TAGCATCTCG AGCTGAAGTC
    TGCCCTTGGG AGTTTGACAC ACCAGATTTA CCAAATGCAG AAAGAAGTGT AGCTTTATCG
    AACACCTCTG CTATAAGTGC AAATAAAACA GCAACACCTC GAAAATAA

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

    RefSeq NP_001244228.1
    CDS1..3528
    Translation

    Target ORF information:

    RefSeq Version NM_001257299.1
    Organism Gallus gallus(chicken)
    Definition Gallus gallus G protein-coupled receptor 158 (GPR158), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_001257299.1

    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
    ATGGCATCGC TCCGGCTTCT TCTCCTCCTG CTCCTGGCCC AGCGCGGGCT CGGGGCCGCG 
    GCCGGCCGAG GGCGGGCGCC GGGAGGCAGG CAGCCCATCT ACAACCACAT CAAGAGCCGC
    GATCCGCCCC CGGCCCCGCG GAGCCGCTCT CCGGAGAGCA CCATCTTGGC GCAGCGGCTC
    GCCGAGGAGG TGCCCCAGGA CGTGGCCTCG TTCCTCTACA CCGGCGACTC CCGAGAGCTG
    CGGAGGGCCA ACTGCTCCGG GCGCTACGAG CTGGCCAGCC TGGCCGGCAA GTCTCGCTTC
    GTCTCGCACC CGTCCCTGCA CGGCGCCCTG GACACCCTCA CCCACGCCAC CAACTTCCTC
    AACATGATCC TGCAGAGCAA TAAGTCGCGG GAGCAGAACT TGCAGGAGGA CCTGGAGTGG
    TACCGAGCGC TGATCAGGAG CCTCCTGGAG GGGGACCCCA ACATCTCCAG AGCAGCCATC
    ACCTTCAGCA CAGAGCCCTT CTCTGCCCCC CAGGTATTCC TCCAGGCCAG CAGGCACGAG
    AGCCAGATCC ACCTGCAGGA CCTGTCCTCC TCCGCTCACC GCCTGGCCAA CGGATCCCTG
    GAGACTGAGT GGTTCCAGGG CCTGAAGCGC AAGTGGAGGC CGCATCAGCA CAGGAAGGTC
    TTGAACACGG GCTCCAAAAC TTTGGAGAAC AGCTGGAAGA GACGAGAAGG CTTCACGGCT
    GATAAGAACC ACATCAGATG GTCCTCTCCT TACCTGGAGT GTGAGAATGG GAATTACAAA
    CCCGGCTGGC TGGTGACACT CTCAGCAGCT TTCTATGGAC TGCAACCAAA CCTCATCCCC
    GAATTCAGAG GTGTTGTTAA AGTCGACATA AATCTGCAGA AGGTGGATAT CGACCAGTGC
    TCGAGTGAGG GGTGGTTCTC AGGAACACAC AGGTGTCATC TCAACAACTC TGAGTGCTTG
    CCAATTAAAG GTCTTGGATT TGTGCTTGGA GCCTACAAAT GTATTTGCAA GGAGGGATTC
    TATCATCCCA ACATCTTCTC AGTGAACAGC TTTCAGAGAA AGGATGCAGA TAATCGCTTT
    TCTGGAGGGG ACTTGTCGGA GGAAGTCTAC ACCTGCCTGC CCTGCAGGGA AGGATGTTCT
    AATTGTAAAG ATGATACTCC CTGCTATGCA CAGGAGGACA AGTATTTACG GCTTGCTATC
    ATCTCATTCC AAACGCTCTG TATGCTGCTG GACTTCATAA GCATGCTGGT AGTCTACCAT
    TTTCGCAAGG CAAAGAGTAT CAGAGCTTCA GGTCTGGTGC TGTTGGAAAC CATTCTTTTT
    GGATCACTTC TTCTGTACTT TCCGGTTGTC ATTTTGTATT TTGAGCCAAG TGTATTTCGC
    TGTGTTCTCC TAAGATGGGT TCGTCTTCTG GGCTTTGCTA CTGTTTATGG AACTGTGACG
    CTCAAGCTGC ACAGGGTTTT GAAGGTATTC CTGTCCAGAA CTGCTCAGCG TATTCCATAT
    ATGACAGGTG GGCGAGTGAT GAGGATGCTG GCTGTAATTC TCCTGGTAGT CTTTTGGTTT
    CTCGTTGGCT GGACTTCTGC AATAACCCAA AATTTGGAAA GAAACATTCC TCTAATTGGC
    CAAGGGCAAA CATCTGACCA CCTGATCTTC AATATGTGCC TCATGGACCG CTGGGATTAC
    ATGATGGCTG TTGCTGAATT TTTATTCCTC TTGTGGGGTG TTTATCTCTG CTATGCAGTG
    CGGACAGTCC CATCAGCATT TCATGAGCCA CGTTATATGG CTGTTGCAGT TCACAATGAG
    CTCATTATCT CTGCTATATT CCATACAATT AGATTCATTC TTGCTTCAAG ACTTCAGTCT
    GACTGGATGC TGATGCTGTT CTTTGCACAC ACGCACTTGA CTGTGACAGT CACTGTTGGG
    CTACTACTGA TCCCCAAGTT TTCACATTCA AGCAATAACC CAAGAGATGA TATAGCTACA
    GAAGCTTATG AAGATGAACT TGATATGGGC CGATCTGGAT CCTATCTGAA CAGCAGTATC
    AATTCAGCAT GGAGCGAGCA CAGTTTGGAT CCTGAAGATA TTCGGGATGA GTTGAAGAAA
    CTGTATGCCC AGCTTGAAAT CTATAAAAGG AAAAAGATGA TTGCTAACAA CCCACATCTC
    CAGAAAAAAA GGTGCTCTAA AAAGGGCTTG GGGCGCTCGA TAATGAGGCG TATTACAGAA
    ATCCCAGAGA CAGTCACTAG GCAATGCTCC AGGGACGAGA AGGACCTGAT GGAGCACAGT
    GCTGTGAAAA ACACGGCTAC ACTGAAAAAA ACCCCACAAG ATTCCACAAG TTCTGTAAAG
    CCAAAAGAAG AGACTTTGAA AAACAGAGTC TTCTCATTAA AGAAGTCCCA CAGCACTTAC
    GATCATGTCA GGGATCAAAC AGGAGAGCCT AATAGCATAA CTACAGAAAG CACAGAAGTT
    ACAGCTGCTG AGAATTCACT TCTGGATTCC TTAACTGGTA ACAATTTAAC CAAAAAAGCT
    GAAAAAGCTG AAGCAGTGTC CACTGAATCG GTCCCTTTGG TGTGCAAATC ACTAAGTGCA
    CATAACCTAA GTGCAGATAA GAAGCCTCTG CATCCAAGAA CATCTGTGTT ACAGAAATCC
    CTCAGTGTTA TTGCTAGTGC CAAGGAAAAG ACTCTGGGAC TAACGGGTAA AACGCAAAGT
    CTAGAAGAAA GTGCTAAATC TCAGAAATCT CAGCAGAAAG GGAAGGAAGG CAGCAAAAAG
    CACTCAGCAG CCGACAAAGG GGAGCACAAG GATTCGCACC GGAAGAACTC TACGCAATCT
    GAGGAGACAA AGAAAACCCA TAAGTCTGGC ATTATGAAGC AGCAAAGGGT TAGTCAGACA
    CCTGCAAATC CAGACACAGG CCCAGGTAAG TCTCTGCACA AGGACACTTT CGACATAGGT
    GAAGTTTGTC CTTGGGAGAT ATATGACCAA ACTCCTGGTC CTGTGCCTTC TGACTCTAAG
    ATTCAAAAAC ATGTGTCTAT TGCTTCCTCA GAAGCAGAGA AAAATCACCC TTCCCAGCCA
    AAGGGGAAAT CTCATCATAA GCAGAAGACT CCTGAGGGCT ACCAACAGTC GAATCAGCAG
    AGCCCACAGA AGTTGGAGGC GGGCACTCGG GAGGTGCAAG AGCAGCACAT TTTTGAAAAT
    GATAAAAAAC AGTTGAATTC CAAACCTCAG GGCTCCCCTG GGCTGAAGCG TGAGAACGTT
    AACAGATATG CACCGAATGT TTGTGGGGGG GAGCGCGAGG AGCTGCCCCA GAAAGCAGCA
    GAAAATGTCA GTAAGTTGGT GGAACAAAAA AAAGTTGCCT CATCTGAGGG AAATGTGCTT
    TCTGACTCCC GTAAGCCAAG TGGTTACTCG CAGCAACCTT TAGCATCTCG AGCTGAAGTC
    TGCCCTTGGG AGTTTGACAC ACCAGATTTA CCAAATGCAG AAAGAAGTGT AGCTTTATCG
    AACACCTCTG CTATAAGTGC AAATAAAACA GCAACACCTC GAAAATAA

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