Tb927.5.4130 cDNA ORF clone, Trypanosoma brucei brucei TREU927

The following Tb927.5.4130 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Tb927.5.4130 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
OTr133057 XM_839990.1
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Trypanosoma brucei brucei TREU927 hypothetical protein, conserved (Tb927.5.4130), partial mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00

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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 OTr133057
    Clone ID Related Accession (Same CDS sequence) XM_839990.1
    Accession Version XM_839990.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3195bp)
    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 2018-04-09
    Organism Trypanosoma brucei brucei TREU927
    Product hypothetical protein, conserved
    Comment Comment: PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. This record is derived from an annotated genomic sequence (NC_007278). COMPLETENESS: incomplete on both ends.

    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
    ATGCTGCACC CCAATACTCG TATTGGGACC GTCTTTCAGA CACGAGGCGT CGGACAAACA 
    AAAGTTATTC CACTTCGCTG CAGTGCAGCT GCTGTTGGTG GTGTCAGCGG GATCACGTGT
    ATCGAAACGA TTCAGCTCCC CGGCATGATA AGATGTCGTG CGTCTTTGCG GCCTTCGCTT
    TGGACCGCTT TCATCAACAT GCAGTGGGCT TATTTCTGGC AAGCTTTCAG GCGAGAGAGA
    GTGGAGCAGT TGCTGGGTAG GATCAGATGC AGCTGGCAGA ACGCAGTGGT CGTTTCGTCC
    AATGCTACGT GTCTAGTTTG GCACACTAGC AGAAATGCAA ACACTATCGG TCGTCGTGCT
    TCCGCGGGTT GTTGGACTAC CCCTTCGCGC CCACTTGCCG CTATTTCTCG GCCCCAACCC
    CTGTTTTCGC GCAGTTGGAG GCAACCTCGG GCCCTCCCTC TTCGCATGGA TTTCATGCAT
    GTAGCGAAAA GACACCTTGG GGAGGAAGGG TATTGCCAAG CCACTGCCAC CGGTTTTTTT
    GTTACCCCAA CCATTGCAAC CGCACAAGTA TGCATGACCA GATGGTACGG CTCTCGAGCA
    CAGTTATCGC TCGTTGACTT CGAAAGTATG AAACGGCTGT GTCGTGAAGA ACGCATGCAG
    CGCTATGGAC GGCGAGTCGC TTTGGTTGTG GGATTCCTAA CAAATGCTTT GGGCTCAAGC
    AGCTGCGAGT GCTGCCCGCA GGATGTGCTG AACTTACTAT CCGTTTCTGA GCGTGTTGAG
    GTCATAAGCA CTATTGCTAC CACTCCTTTT GTGAAGACCC AACCCGTAGT CTTGGAGGAG
    ATGCTGTTAT CTGTTTTCAG CGACGAATGC CTCTCCCAAG AGGCTGCGTA TAGTCTGCTA
    CAGGTGATTG ATAAGGCTCG TGCTGACGGC TTGCCGGTGA GCACCATGTG CTTTTCTGAG
    GGCATCCACT GCGTGTTATC AAAGAAGAGT GCAAATAGTA ATGCTTCCCA GAGGCGAGAA
    CTGGTTGCGG CGACTCTGGC GTGTGGCGAG CGTGTGTTGG GCTTCGATGA GTTGGCATCT
    CGTTGTGATT TGTGTGGTTT ATGGTATGAG AGCGCGGCAT ATCGCACTGC AGTATCTGGA
    GTGTTGATGG GATTGAACCG ACCGTCGCCA GGAACTGATG GTAAAGAATT CTGTTTAATG
    AGCACCACAT CGGAGGACAT TGGGTTCGGT GGGCTCGTAT TGCTGCTTCT TCAGTTTCTA
    AGGATGAGGA AAGGGGCGGC TGCCAGTCAC ATCGCTGCAA TTGAATTTCT CCGCTGTCGG
    ATGTCCCCGT GTGTTGCTAA CTTTACTAAA CAAAGCGTTG CAGTTGAACT TGCACGGATG
    GAGAGTAATA GTGCTTTTCT TGCTGACAAT TATCCGAGTG CGCTGCATTA TCTTTGGAAT
    GCTGATCAAA AGCACAAGAA AGAGAGGGAG TTGGCGGCCG CGGCGTGGCT TCACTTCGAC
    GTCAAGTGCG GGACGCCGTC AACTGCCGCA GTGCTCTTGT CGTGTTACAA CAATAATTGG
    AATGGAATAG CTTACATACT GCAACGTACA AGGCAGGCCG GCTTAGGTGT TGCGTTAAAT
    GCACTCTCCG CAATGATCGA ACTGACACCA ACAGGATGTT ACTATGCCAT CGTACGGCTC
    TGTTTCCCTC ACAGTCGTGG ATATATTGAA AAAAATAGCC AAAGCAAAGG TTCCTGCACT
    TTCCTTTTTG AGGCAAGGGC GCCAGGGGGG GAAAGAGGAG GGGACGTCGT ATTGAACCCT
    CCGAAAAATG TCTTGGAGTC ATGGCAGTTT GTTGAAAACG CGGTTCGTCA ACATCGGCAA
    CGACTTCTGC TGCAGTTGGG TGGTGGGTGT GCTGTATGGT CTTTATCAGC GGAATACGCT
    CAACAGATCG CTGTTGCTCT GCCACAACTT TCGGGCACAC TTCTTTCGCA GTGGATTAGA
    GGGGTATTAT ATCATAACCA ATGGAACACC ATCTTCACAC TACTACGTGT AGCAGCGGGG
    CGCGGTGTTT CTCCTGAAAT GGAGGTTCTT GTTGAAATTC TCGAGAAAGC TTATAGGAAT
    ATTGGAAGGG GCGGGAACGG TGTGCCAAAT GAGCAGAAAG GCGTTAGTGT TCTGCAATCA
    GTTGTAGAAA ATATACGAAC GCTGTTTCCG TATTGTGCGC AAACCGTCTT TCGCGCGTTT
    GTCGAGCGCA TAGCAGTGCA GTTGGACATC GACACTACGT CGTCGCTTCC GTGGGATTCT
    GCCCTTCGGA TTCTATCTGC TGTTAATGAT CTCGGTCTTA TGCACTACCC ACGTAATTGC
    ATGGAGTTAG TTGCAACGAG CGCCCCCGCA GTTGCCGCGT TCTCCATGCT TCAGATGTTG
    GACACCACGC GTAGAGCTGA CAACCATGTG CGCAATCATT TTCCTTTAAA CCTTTCTCCC
    CTCCCACTGG AGGTAGCGGC ACTTCAGTCT CTGTTGCGCT CCGCACAATC AACTGGTCTT
    CATGTGGTCG CTGATGCGTT TGCGGTTCCT CCTTCTAACA TCAATACAGC GAGGGTCACG
    TGGTGGTCAT CGAGCGAGTT AGCAGTAGGT ATACCTGTGG CTACTGCACT TTACAGGCGC
    CAGGCCGTCG GACTTTGGTA CGTGGCACTA CAGAGCCTGC ACAGGAGTTT TGCACACAGT
    GGCAGAGATG TGAGCAACGT TGATGCGCAT CATGCGATCA GACTTGCTGC ATTCGGGTCC
    ACGAGTAATG CCACATTGCT GCAGTGTCTT GTAGCACTCC CGAAGCACGA GGGGAAGCAA
    GAACTAGCGT TTTCACGGCG TCGCCTCAAG AGGGCTGATG ACGCCACGCT CGTGACAACG
    CTTGGGTGCA TCGTAGGTGC GTTAACGGCG CGTGGCGCAT GGGAAGTGGC GCTTCGCATT
    CTTCCGTTAG GTGCCACTGA CCTTCCACCG TTGCTTCGCT GTGCGCAGGA ACATGCGATA
    CGCCTCAGCG ACGGCAATAT TAGCACAGGC GGTGCCGAGG AAAAGCGGAA GGATCGGTTT
    CTTAAGTCAG GTGGTAGGAG AGGATCTCGA AAACCTTTTC GACATCATGC GATGCCGACT
    AGGGTGAAGA GGCTTGTCGT CAAAATGCAT CTTGAGGATT CTTTCCGTTG GTGGGATAAC
    AACCAGAAGT GTTGA

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

    RefSeq XP_845083.1
    CDS1..3195
    Translation

    Target ORF information:

    RefSeq Version XM_839990.1
    Organism Trypanosoma brucei brucei TREU927
    Definition Trypanosoma brucei brucei TREU927 hypothetical protein, conserved (Tb927.5.4130), partial mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_839990.1

    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
    ATGCTGCACC CCAATACTCG TATTGGGACC GTCTTTCAGA CACGAGGCGT CGGACAAACA 
    AAAGTTATTC CACTTCGCTG CAGTGCAGCT GCTGTTGGTG GTGTCAGCGG GATCACGTGT
    ATCGAAACGA TTCAGCTCCC CGGCATGATA AGATGTCGTG CGTCTTTGCG GCCTTCGCTT
    TGGACCGCTT TCATCAACAT GCAGTGGGCT TATTTCTGGC AAGCTTTCAG GCGAGAGAGA
    GTGGAGCAGT TGCTGGGTAG GATCAGATGC AGCTGGCAGA ACGCAGTGGT CGTTTCGTCC
    AATGCTACGT GTCTAGTTTG GCACACTAGC AGAAATGCAA ACACTATCGG TCGTCGTGCT
    TCCGCGGGTT GTTGGACTAC CCCTTCGCGC CCACTTGCCG CTATTTCTCG GCCCCAACCC
    CTGTTTTCGC GCAGTTGGAG GCAACCTCGG GCCCTCCCTC TTCGCATGGA TTTCATGCAT
    GTAGCGAAAA GACACCTTGG GGAGGAAGGG TATTGCCAAG CCACTGCCAC CGGTTTTTTT
    GTTACCCCAA CCATTGCAAC CGCACAAGTA TGCATGACCA GATGGTACGG CTCTCGAGCA
    CAGTTATCGC TCGTTGACTT CGAAAGTATG AAACGGCTGT GTCGTGAAGA ACGCATGCAG
    CGCTATGGAC GGCGAGTCGC TTTGGTTGTG GGATTCCTAA CAAATGCTTT GGGCTCAAGC
    AGCTGCGAGT GCTGCCCGCA GGATGTGCTG AACTTACTAT CCGTTTCTGA GCGTGTTGAG
    GTCATAAGCA CTATTGCTAC CACTCCTTTT GTGAAGACCC AACCCGTAGT CTTGGAGGAG
    ATGCTGTTAT CTGTTTTCAG CGACGAATGC CTCTCCCAAG AGGCTGCGTA TAGTCTGCTA
    CAGGTGATTG ATAAGGCTCG TGCTGACGGC TTGCCGGTGA GCACCATGTG CTTTTCTGAG
    GGCATCCACT GCGTGTTATC AAAGAAGAGT GCAAATAGTA ATGCTTCCCA GAGGCGAGAA
    CTGGTTGCGG CGACTCTGGC GTGTGGCGAG CGTGTGTTGG GCTTCGATGA GTTGGCATCT
    CGTTGTGATT TGTGTGGTTT ATGGTATGAG AGCGCGGCAT ATCGCACTGC AGTATCTGGA
    GTGTTGATGG GATTGAACCG ACCGTCGCCA GGAACTGATG GTAAAGAATT CTGTTTAATG
    AGCACCACAT CGGAGGACAT TGGGTTCGGT GGGCTCGTAT TGCTGCTTCT TCAGTTTCTA
    AGGATGAGGA AAGGGGCGGC TGCCAGTCAC ATCGCTGCAA TTGAATTTCT CCGCTGTCGG
    ATGTCCCCGT GTGTTGCTAA CTTTACTAAA CAAAGCGTTG CAGTTGAACT TGCACGGATG
    GAGAGTAATA GTGCTTTTCT TGCTGACAAT TATCCGAGTG CGCTGCATTA TCTTTGGAAT
    GCTGATCAAA AGCACAAGAA AGAGAGGGAG TTGGCGGCCG CGGCGTGGCT TCACTTCGAC
    GTCAAGTGCG GGACGCCGTC AACTGCCGCA GTGCTCTTGT CGTGTTACAA CAATAATTGG
    AATGGAATAG CTTACATACT GCAACGTACA AGGCAGGCCG GCTTAGGTGT TGCGTTAAAT
    GCACTCTCCG CAATGATCGA ACTGACACCA ACAGGATGTT ACTATGCCAT CGTACGGCTC
    TGTTTCCCTC ACAGTCGTGG ATATATTGAA AAAAATAGCC AAAGCAAAGG TTCCTGCACT
    TTCCTTTTTG AGGCAAGGGC GCCAGGGGGG GAAAGAGGAG GGGACGTCGT ATTGAACCCT
    CCGAAAAATG TCTTGGAGTC ATGGCAGTTT GTTGAAAACG CGGTTCGTCA ACATCGGCAA
    CGACTTCTGC TGCAGTTGGG TGGTGGGTGT GCTGTATGGT CTTTATCAGC GGAATACGCT
    CAACAGATCG CTGTTGCTCT GCCACAACTT TCGGGCACAC TTCTTTCGCA GTGGATTAGA
    GGGGTATTAT ATCATAACCA ATGGAACACC ATCTTCACAC TACTACGTGT AGCAGCGGGG
    CGCGGTGTTT CTCCTGAAAT GGAGGTTCTT GTTGAAATTC TCGAGAAAGC TTATAGGAAT
    ATTGGAAGGG GCGGGAACGG TGTGCCAAAT GAGCAGAAAG GCGTTAGTGT TCTGCAATCA
    GTTGTAGAAA ATATACGAAC GCTGTTTCCG TATTGTGCGC AAACCGTCTT TCGCGCGTTT
    GTCGAGCGCA TAGCAGTGCA GTTGGACATC GACACTACGT CGTCGCTTCC GTGGGATTCT
    GCCCTTCGGA TTCTATCTGC TGTTAATGAT CTCGGTCTTA TGCACTACCC ACGTAATTGC
    ATGGAGTTAG TTGCAACGAG CGCCCCCGCA GTTGCCGCGT TCTCCATGCT TCAGATGTTG
    GACACCACGC GTAGAGCTGA CAACCATGTG CGCAATCATT TTCCTTTAAA CCTTTCTCCC
    CTCCCACTGG AGGTAGCGGC ACTTCAGTCT CTGTTGCGCT CCGCACAATC AACTGGTCTT
    CATGTGGTCG CTGATGCGTT TGCGGTTCCT CCTTCTAACA TCAATACAGC GAGGGTCACG
    TGGTGGTCAT CGAGCGAGTT AGCAGTAGGT ATACCTGTGG CTACTGCACT TTACAGGCGC
    CAGGCCGTCG GACTTTGGTA CGTGGCACTA CAGAGCCTGC ACAGGAGTTT TGCACACAGT
    GGCAGAGATG TGAGCAACGT TGATGCGCAT CATGCGATCA GACTTGCTGC ATTCGGGTCC
    ACGAGTAATG CCACATTGCT GCAGTGTCTT GTAGCACTCC CGAAGCACGA GGGGAAGCAA
    GAACTAGCGT TTTCACGGCG TCGCCTCAAG AGGGCTGATG ACGCCACGCT CGTGACAACG
    CTTGGGTGCA TCGTAGGTGC GTTAACGGCG CGTGGCGCAT GGGAAGTGGC GCTTCGCATT
    CTTCCGTTAG GTGCCACTGA CCTTCCACCG TTGCTTCGCT GTGCGCAGGA ACATGCGATA
    CGCCTCAGCG ACGGCAATAT TAGCACAGGC GGTGCCGAGG AAAAGCGGAA GGATCGGTTT
    CTTAAGTCAG GTGGTAGGAG AGGATCTCGA AAACCTTTTC GACATCATGC GATGCCGACT
    AGGGTGAAGA GGCTTGTCGT CAAAATGCAT CTTGAGGATT CTTTCCGTTG GTGGGATAAC
    AACCAGAAGT GTTGA

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

  • PubMed

    Comparative genomics of trypanosomatid parasitic protozoa.
    Science (New York, N.Y.)309(5733)404-9(2005 Jul)
    El-Sayed NM,Myler PJ,Blandin G,Berriman M,Crabtree J,Aggarwal G,Caler E,Renauld H,Worthey EA,Hertz-Fowler C,Ghedin E,Peacock C,Bartholomeu DC,Haas BJ,Tran AN,Wortman JR,Alsmark UC,Angiuoli S,Anupama A,Badger J,Bringaud F,Cadag E,Carlton JM,Cerqueira GC,Creasy T,Delcher AL,Djikeng A,Embley TM,Hauser C,Ivens AC,Kummerfeld SK,Pereira-Leal JB,Nilsson D,Peterson J,Salzberg SL,Shallom J,Silva JC,Sundaram J,Westenberger S,White O,Melville SE,Donelson JE,Andersson B,Stuart KD,Hall N


    The genome of the African trypanosome Trypanosoma brucei.
    Science (New York, N.Y.)309(5733)416-22(2005 Jul)
    Berriman M,Ghedin E,Hertz-Fowler C,Blandin G,Renauld H,Bartholomeu DC,Lennard NJ,Caler E,Hamlin NE,Haas B,B?hme U,Hannick L,Aslett MA,Shallom J,Marcello L,Hou L,Wickstead B,Alsmark UC,Arrowsmith C,Atkin RJ,Barron AJ,Bringaud F,Brooks K,Carrington M,Cherevach I,Chillingworth TJ,Churcher C,Clark LN,Corton CH,Cronin A,Davies RM,Doggett J,Djikeng A,Feldblyum T,Field MC,Fraser A,Goodhead I,Hance Z,Harper D,Harris BR,Hauser H,Hostetler J,Ivens A,Jagels K,Johnson D,Johnson J,Jones K,Kerhornou AX,Koo H,Larke N,Landfear S,Larkin C,Leech V,Line A,Lord A,Macleod A,Mooney PJ,Moule S,Martin DM,Morgan GW,Mungall K,Norbertczak H,Ormond D,Pai G,Peacock CS,Peterson J,Quail MA,Rabbinowitsch E,Rajandream MA,Reitter C,Salzberg SL,Sanders M,Schobel S,Sharp S,Simmonds M,Simpson AJ,Tallon L,Turner CM,Tait A,Tivey AR,Van Aken S,Walker D,Wanless D,Wang S,White B,White O,Whitehead S,Woodward J,Wortman J,Adams MD,Embley TM,Gull K,Ullu E,Barry JD,Fairlamb AH,Opperdoes F,Barrell BG,Donelson JE,Hall N,Fraser CM,Melville SE,El-Sayed NM