Tsp_07443 cDNA ORF clone, Trichinella spiralis

The following Tsp_07443 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Tsp_07443 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
OTr115386 XM_003381717.1
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Trichinella spiralis putative immunoglobulin I-set domain protein (Tsp_07443) mRNA, complete cds. pcDNA3.1-C-(k)DYK or customized vector 19-21 $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 OTr115386
    Clone ID Related Accession (Same CDS sequence) XM_003381717.1
    Accession Version XM_003381717.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3831bp)
    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 2011-06-30
    Organism Trichinella spiralis
    Product putative immunoglobulin I-set domain protein
    Comment Comment: PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. This record is derived from an annotated genomic sequence (NW_003526940). Trichinella spiralis is a roundworm that cause most of the human trichinella infections and deaths around the world. Its pathogenicity is higher than that of other trichinella species due to the higher number of newborn larvae produced by the females and for the stronger immune reaction induced in humans. The life cycle of the parasite begins when a person or an animal eats contaminated meat containing larvae. T. spiralis is a basal nematode with a well-defined phylogenetic position near the root of the phylum Nematoda. The genome size estimate based on flow sorted nuclei stained with PI (Spencer Johnston, Texas A&M University) is 1C = 71.3 +/1 1.2 Mb. The strain being sequenced (ISS 195) was obtained from the laboratory of Judith Appleton (Cornell University) and has been maintained in rats since 1970. Worm isolation and DNA extraction was performed by Dante Zarlenga (USDA) This assembly consists of plasmid, fosmid and BAC end sequences. The data were assembled using the assembly engine, PCAP (Xiaoqiu Huang et. al. 2006). Our goal is to explore this WGS draft sequence of T. spiralis in several ways: i) to provide a better understanding of evolutionary biology by identifying gene loss or gain across the phylum Nematoda and clarify evolution of genome architecture (synteny, operons); ii) help identify RNA genes and regulatory regions; and iii) better define proteins involved in nematode parasitism that impact health and disease and are relevant to both host-parasite relationships and basic biological processes.. We masked the repeats by using RECON (Bao and Eddy, 2002) and RepeatMasker (A.F.A. Smit, R. Hubley & P. Green RepeatMasker at http://repeatmasker.org). Then the Ribosomal RNA genes were identified using RNAmmer ((http://www.cbs.dtu.dk/cgi-bin/nph-sw_request?rnammer ). Transfer RNA genes were identified with tRNAscan-SE (Lowe and Eddy, 1997). Non-coding RNAs, such as microRNAs, were identified by sequence homology search of the Rfam database (http://selab.janelia.org/software.html). Protein-coding genes were predicted using a combination of ab initio programs (Snap, Korf, 2004 and Fgenesh, Softberry, Corp) and an inhouse evidence based program Eannot (Eannot Ding et al., 2004) which uses mRNA, EST and protein alignment information from same species or cross-species to aid in gene structure determination. A consensus gene set from the above prediction algorithms will be generated, using a logical, hierarchical approach. Gene product naming was determined by BER (JCVI: http://ber.sourceforge.net ). For information regarding this assembly or project, or any other GSC genome project, please visit our Genome Groups web page (http://genome.wustl.edu/genome_group_index.cgi) and email the designated contact person. For specific questions regarding the T. spiralis genome project contact Makedonka Mitreva [email protected] (Washington University School of Medicine). The National Human Genome Research Institute (NHGRI) of the National Institutes of Health (NIH) provided funds for this project.

    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
    ATGGAAATTG TCCATCAGGA TGCCACTGCA ATGAAAACAC CACATTTTGA TTTGTCATTC 
    AATCGTATAC AATCAATAAA CAAAATGGAT TTAATGAACT TTAACGACTT GATTTCACTT
    GATATGGCAC ATAATTTATT GAAATTTATT GAAAGTTATA GTTTCACTTC GCTGGCTAAT
    TTAAAAATTT TGAATTTGAG TTACAATGAA TTGCAGTTTT TAAATAATGA TACATTTGTT
    GGTTTATCTC AACTTCGGCA TCTTTCATTG AACGATAACG CTTTATTGCT GATTGAAGAA
    GCTGCTCTGG AACCGTTGAT TAACTTAATT GAATTAGATG TGAGCAATAA TGAACATTTG
    AATTTTTCTT CACTTCTCAC AGCTATTGAA AAATTGAACA ATTTAAAATT GCTCCAAACA
    GACGAACATC ACATACGTTG TAACTGTTCC ACTGTTGTTG CCATCGTTAG TCTTCTTCAA
    AATAATACAG AATTGGGTAT TCAAACTGAA GATTGCTTTT ACAAATACAG TGAAGCTGAT
    AATTCAAGGT GTTTGGAAGA ATTGATAAAT TATGCAAACT ATTGCAAAGG TGAAACTGGA
    GACGTTGAAA ATATTTTTCC TGAATGCAGT AGAAGAAAAA TAAACAAAAC AAAGCAACAT
    CAACAACACA AAGTTCATTT AGGATCAAAA CAAGCTGATT TGGCAAATGC AAGGGTGAGA
    AGAATTCCCA GGCGCCATCG ACGTCGCAGT CCTGTTAAAA TAGTTCGACC TCCTGAAAAT
    GTGGATGCGG ATTTAGATGA GACTGTTTCT TTTACCTGCT TGGTTAGTGG TTATCCAAAT
    CCAAGAATTC ATTGGTTTTG CAATGGAAAC AAGTTGATAT CTTCGAATCG AATAAAATTT
    TATCAGCATG ATCAGAAAGT TGTTATAACG AATGTCCAAC GTGAAGACAA CGGCGTTTAC
    ACATGCGTGG CAGAAAATGC TATCAGCCAA TCCACTGCGA CAGCATTTTT ACAAGTAAAA
    TCTCGACCAG AATTTCGTCT ACGTCCTCAA AATACTATTG CTTTGGAAGG TGCAGAAGTA
    AAATTAGAAT GCGATCCTGT CGGCTATCCT CAACCAGCTA TAGTTTGGAC CAAAAATGGA
    CGATCCATAC CAACAAACAG AAGGATTGTC ATCAGTAACG CTGGAACAGT TTTGAAAATC
    AACTCTATTT CAGCAGACGA CGAAGGGCAG TACACTTGTT ACGCTACCAA TGCTTTGGGT
    AGCATTGAAT GGAGCGTTGC TGTGAAAGTG AAGCAGAGTT TTCCGCCGAG AATGCAAAAT
    GCTCCTTCAA CCCTGATTCT CACTGCTGGC AACACAGCAT CGTTTCCCTG CCGCGTGGTC
    GCAAATCCTG AACCGACAAT TACTTGGCTT TTCAATGGAA ACCCAATTCG AACAGTAAAA
    GGCCATTATG AAATGTCATC TCAAGGGACT TTGTACGTTT TCAACGTCAC CAAAAGTGAC
    GAAGGATTTT ACACTTGTCA AGCTAGCAAC GCTGTCGGGG CCATTTCCGC TGACGCCCAG
    CTAGAAGTTA TCGCATCAAA TTTATCTACT GACCAAAAAG CACCTGCTAT TTTGAATGTT
    GACTCTGAAT TCATTCGAAG CACAGTCCAA CAAGCTACTG CAAATGTCGA TAAAGCAATC
    AACTGGACAA GACAAAAACT GTATGATGAT CATCCCAAAA GCCCAGCTGA ATTGATGGCT
    TTGCTTCGGT ATCCAGGCCC AGCAGCGTTG GAACATGCTA GAGCTAGAGA AATTTATGAA
    CAAACAATCA GATCATACGA TGGTTCATGC AATAATTTTG AACATCCCTT AAGAGGAGCT
    AGTTTAACAT CCTTTAAACG ACTGCTGCCA CCAATATATG AAAATGGTTT CGATCAACCT
    GTTGGATGGC GTAAAGGGAA ACTTTATTAT GGCTATCCAA AGCCCAATGT CCGAACAGTG
    TCTCAAATGC TCATTTCTAC GAAGCAAGTG ACCAACGATA CAGAATACAG TCACATGCTT
    ATGCAATGGG GGCAGTTTTT AGATCATGAT TTGACGTTGA CAGTCAACGC ACCAAGCATT
    TTACAATTTC AAACTGGTGT TGATTGTAAA CGTACTTGTC AGAATAGACC TCCTTGTTTC
    AACATTGAAA TACCTCCAAA TGATCGACGT ATCAAATATG GTGTCTGCAT GGAATTTGAA
    AGATCTAGTG CTGTTTGTGG ATCTGGGGAT ACCTCTGTAC TTTTTGATAC GTTGCAGCAT
    CGAGAGCAGT TGAATGTGCT CACTGCTTAC ATTGATGCTT CCAATGTTTA CGGAAGTGAG
    GAAGCAGATG CGCTAAATTT GCGTGACTTG TTTTCAGATC ATGGACAACT AAAATTTGAC
    ATTACAAGTC ATAAACAAAA GCCATATCTT CCATTTAATA GAAACTTACC AATGGACTGT
    AGACGAAATT CGACCGTCCC ACATTCGATG CGCTGTTTGA TGGCTGGTGA TTACCGCGCT
    AATGAACAGG TTGGACTTTT GGCAATGCAT ACGTTGTGGA TGCGGGAGCA TAACCGTATT
    GCAGCTAAAT TGCTTCGCAT AAATTCTCAC TGGGATGGAG AAAAAATTTA TCAAGAGGCA
    AGAAAAATAA TAGGCGCGCA AATGCAACAC ATTACTTATC ACAGTTGGCT ACCAAAAATT
    TTAGGACCTC AAGGGATGAA CATGTTAGGA ACATACGGAG GATACAATCA AGCTGTAGAT
    TCGACAATAT CTAACGCTTT CGCCACGGCA GCATTTAGAT TTGGGCATAC ATTGATACAG
    CCGATTTTAA TTCGTCTTGA CGAGAATTTT AGGCCGCATT CAGCAGGACA TTTACCACTA
    GAAGAAGCAT TTTTTGCACC TGAAAGACTT CTAAATGAAG GCGGAATTGA TCCTATTTTG
    AGAGGGATGT TTTCAACTCC TGCCAAGTTG CCAACAACAG GTCAATATTT GAACAATATA
    TTGACAGAAC AGTTATTTAA CAAAGCGCAT GACGTTGCTT TGGATTTGGC AGCTCTGAAC
    ATTCAACGTG GTCGTGATCA CGCTTTACCA GGTTATTTGG AATACCGTAA ATTTTGCAAT
    TTGAGTTCAC CAGATACATT TGATGGTTTA AGCGACGTTA TACCGGATCA GTCAATTAGG
    AGAAAGCTGC AAATTTTGTA TGGACATCCG GGAAACGTGG ATCTTTGGGT TGGAGGTGTC
    TTGGAAAAAT TGCTACCTGG TGCTAGGGTA GGTCAGACAT TTGCTTGCAT CATTGCAGAT
    CAATTTCGAC GAATTCGTGA TGGCGACAGA TTTTGGTACG AAAATGCCGG TGTTTTTAGA
    CCAGATCAGT TATACGAAAT CAAAAAAACT ACCCTTGCAA GAATTCTGTG TGACAGTGGA
    GATGAAATTG ATCGAGTTCA ACGTGACATA TTCAAAAATA TCGGAAGCAC AAATCCAGAA
    CATTACACAA GATGCGAACA CTTACCAAAT ATAAATTTGA ACATGTGGCA AGAATGTTGT
    GAAGAAGACT GCCGAGCTGC AATTAAGTTT GAAACCGTCG ACGATGCACT AGACAAGGAC
    ACAACATTTT TAAAATCTTC TAACATTGAT GAATTACTTG CAATTCGCAG AAAAAGATCA
    ATAACAGCTT CACCAATAAT GTACAATTAT TTTAACTGCA GCTGTAAAAA CAAAATTCCA
    AAGATTTCTA CAGAAGCTGA ACACAAATTG CAATCTGAAA TCAACAGTTT GAAAGAAGCT
    GTAAAACACC TGGAACAAAT TATTATGAAA TTAAATTTAA ACAACAAATG A

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

    RefSeq XP_003381765.1
    CDS1..3831
    Translation

    Target ORF information:

    RefSeq Version XM_003381717.1
    Organism Trichinella spiralis
    Definition Trichinella spiralis putative immunoglobulin I-set domain protein (Tsp_07443) mRNA, complete cds.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_003381717.1

    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
    ATGGAAATTG TCCATCAGGA TGCCACTGCA ATGAAAACAC CACATTTTGA TTTGTCATTC 
    AATCGTATAC AATCAATAAA CAAAATGGAT TTAATGAACT TTAACGACTT GATTTCACTT
    GATATGGCAC ATAATTTATT GAAATTTATT GAAAGTTATA GTTTCACTTC GCTGGCTAAT
    TTAAAAATTT TGAATTTGAG TTACAATGAA TTGCAGTTTT TAAATAATGA TACATTTGTT
    GGTTTATCTC AACTTCGGCA TCTTTCATTG AACGATAACG CTTTATTGCT GATTGAAGAA
    GCTGCTCTGG AACCGTTGAT TAACTTAATT GAATTAGATG TGAGCAATAA TGAACATTTG
    AATTTTTCTT CACTTCTCAC AGCTATTGAA AAATTGAACA ATTTAAAATT GCTCCAAACA
    GACGAACATC ACATACGTTG TAACTGTTCC ACTGTTGTTG CCATCGTTAG TCTTCTTCAA
    AATAATACAG AATTGGGTAT TCAAACTGAA GATTGCTTTT ACAAATACAG TGAAGCTGAT
    AATTCAAGGT GTTTGGAAGA ATTGATAAAT TATGCAAACT ATTGCAAAGG TGAAACTGGA
    GACGTTGAAA ATATTTTTCC TGAATGCAGT AGAAGAAAAA TAAACAAAAC AAAGCAACAT
    CAACAACACA AAGTTCATTT AGGATCAAAA CAAGCTGATT TGGCAAATGC AAGGGTGAGA
    AGAATTCCCA GGCGCCATCG ACGTCGCAGT CCTGTTAAAA TAGTTCGACC TCCTGAAAAT
    GTGGATGCGG ATTTAGATGA GACTGTTTCT TTTACCTGCT TGGTTAGTGG TTATCCAAAT
    CCAAGAATTC ATTGGTTTTG CAATGGAAAC AAGTTGATAT CTTCGAATCG AATAAAATTT
    TATCAGCATG ATCAGAAAGT TGTTATAACG AATGTCCAAC GTGAAGACAA CGGCGTTTAC
    ACATGCGTGG CAGAAAATGC TATCAGCCAA TCCACTGCGA CAGCATTTTT ACAAGTAAAA
    TCTCGACCAG AATTTCGTCT ACGTCCTCAA AATACTATTG CTTTGGAAGG TGCAGAAGTA
    AAATTAGAAT GCGATCCTGT CGGCTATCCT CAACCAGCTA TAGTTTGGAC CAAAAATGGA
    CGATCCATAC CAACAAACAG AAGGATTGTC ATCAGTAACG CTGGAACAGT TTTGAAAATC
    AACTCTATTT CAGCAGACGA CGAAGGGCAG TACACTTGTT ACGCTACCAA TGCTTTGGGT
    AGCATTGAAT GGAGCGTTGC TGTGAAAGTG AAGCAGAGTT TTCCGCCGAG AATGCAAAAT
    GCTCCTTCAA CCCTGATTCT CACTGCTGGC AACACAGCAT CGTTTCCCTG CCGCGTGGTC
    GCAAATCCTG AACCGACAAT TACTTGGCTT TTCAATGGAA ACCCAATTCG AACAGTAAAA
    GGCCATTATG AAATGTCATC TCAAGGGACT TTGTACGTTT TCAACGTCAC CAAAAGTGAC
    GAAGGATTTT ACACTTGTCA AGCTAGCAAC GCTGTCGGGG CCATTTCCGC TGACGCCCAG
    CTAGAAGTTA TCGCATCAAA TTTATCTACT GACCAAAAAG CACCTGCTAT TTTGAATGTT
    GACTCTGAAT TCATTCGAAG CACAGTCCAA CAAGCTACTG CAAATGTCGA TAAAGCAATC
    AACTGGACAA GACAAAAACT GTATGATGAT CATCCCAAAA GCCCAGCTGA ATTGATGGCT
    TTGCTTCGGT ATCCAGGCCC AGCAGCGTTG GAACATGCTA GAGCTAGAGA AATTTATGAA
    CAAACAATCA GATCATACGA TGGTTCATGC AATAATTTTG AACATCCCTT AAGAGGAGCT
    AGTTTAACAT CCTTTAAACG ACTGCTGCCA CCAATATATG AAAATGGTTT CGATCAACCT
    GTTGGATGGC GTAAAGGGAA ACTTTATTAT GGCTATCCAA AGCCCAATGT CCGAACAGTG
    TCTCAAATGC TCATTTCTAC GAAGCAAGTG ACCAACGATA CAGAATACAG TCACATGCTT
    ATGCAATGGG GGCAGTTTTT AGATCATGAT TTGACGTTGA CAGTCAACGC ACCAAGCATT
    TTACAATTTC AAACTGGTGT TGATTGTAAA CGTACTTGTC AGAATAGACC TCCTTGTTTC
    AACATTGAAA TACCTCCAAA TGATCGACGT ATCAAATATG GTGTCTGCAT GGAATTTGAA
    AGATCTAGTG CTGTTTGTGG ATCTGGGGAT ACCTCTGTAC TTTTTGATAC GTTGCAGCAT
    CGAGAGCAGT TGAATGTGCT CACTGCTTAC ATTGATGCTT CCAATGTTTA CGGAAGTGAG
    GAAGCAGATG CGCTAAATTT GCGTGACTTG TTTTCAGATC ATGGACAACT AAAATTTGAC
    ATTACAAGTC ATAAACAAAA GCCATATCTT CCATTTAATA GAAACTTACC AATGGACTGT
    AGACGAAATT CGACCGTCCC ACATTCGATG CGCTGTTTGA TGGCTGGTGA TTACCGCGCT
    AATGAACAGG TTGGACTTTT GGCAATGCAT ACGTTGTGGA TGCGGGAGCA TAACCGTATT
    GCAGCTAAAT TGCTTCGCAT AAATTCTCAC TGGGATGGAG AAAAAATTTA TCAAGAGGCA
    AGAAAAATAA TAGGCGCGCA AATGCAACAC ATTACTTATC ACAGTTGGCT ACCAAAAATT
    TTAGGACCTC AAGGGATGAA CATGTTAGGA ACATACGGAG GATACAATCA AGCTGTAGAT
    TCGACAATAT CTAACGCTTT CGCCACGGCA GCATTTAGAT TTGGGCATAC ATTGATACAG
    CCGATTTTAA TTCGTCTTGA CGAGAATTTT AGGCCGCATT CAGCAGGACA TTTACCACTA
    GAAGAAGCAT TTTTTGCACC TGAAAGACTT CTAAATGAAG GCGGAATTGA TCCTATTTTG
    AGAGGGATGT TTTCAACTCC TGCCAAGTTG CCAACAACAG GTCAATATTT GAACAATATA
    TTGACAGAAC AGTTATTTAA CAAAGCGCAT GACGTTGCTT TGGATTTGGC AGCTCTGAAC
    ATTCAACGTG GTCGTGATCA CGCTTTACCA GGTTATTTGG AATACCGTAA ATTTTGCAAT
    TTGAGTTCAC CAGATACATT TGATGGTTTA AGCGACGTTA TACCGGATCA GTCAATTAGG
    AGAAAGCTGC AAATTTTGTA TGGACATCCG GGAAACGTGG ATCTTTGGGT TGGAGGTGTC
    TTGGAAAAAT TGCTACCTGG TGCTAGGGTA GGTCAGACAT TTGCTTGCAT CATTGCAGAT
    CAATTTCGAC GAATTCGTGA TGGCGACAGA TTTTGGTACG AAAATGCCGG TGTTTTTAGA
    CCAGATCAGT TATACGAAAT CAAAAAAACT ACCCTTGCAA GAATTCTGTG TGACAGTGGA
    GATGAAATTG ATCGAGTTCA ACGTGACATA TTCAAAAATA TCGGAAGCAC AAATCCAGAA
    CATTACACAA GATGCGAACA CTTACCAAAT ATAAATTTGA ACATGTGGCA AGAATGTTGT
    GAAGAAGACT GCCGAGCTGC AATTAAGTTT GAAACCGTCG ACGATGCACT AGACAAGGAC
    ACAACATTTT TAAAATCTTC TAACATTGAT GAATTACTTG CAATTCGCAG AAAAAGATCA
    ATAACAGCTT CACCAATAAT GTACAATTAT TTTAACTGCA GCTGTAAAAA CAAAATTCCA
    AAGATTTCTA CAGAAGCTGA ACACAAATTG CAATCTGAAA TCAACAGTTT GAAAGAAGCT
    GTAAAACACC TGGAACAAAT TATTATGAAA TTAAATTTAA ACAACAAATG A

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