cDNA Clone
C15ORF41/Codanin-1 (Alligator)

Plasmid
pEX StrepII 3FLAG Alligator CDAN1 2A2A 6His C150rf41 D196A
Parent Plasmid
pEX C-GST
Expressed
StrepII 3FLAG Alligator CDAN1 2A2A 6His C150rf41 D196A
Genbank
CDAN1 codon optimised XM_019496591.1; C15orf41 XM_006272326.3
Tag
6His
3FLAG
StrepII
Species
Alligator mississippiensis
Sequence of Insert
GGATCCGCCACCATGTGGAGCCACCCGCAGTTCGAAAAAATGGACTACAAAGACCATGACGGTGATTATAAAGATCATGATATCGATTACAAGGATGACGATGACAAGATGGCAGCTGCGCTGGAGCTAGTGCTGCGAGAGGAGGTGGCGCCCGGCGCCCTGGTGCACTGGCTCAAGCACGACCCCGGGCGCCGCTCGGCCGAGGAGAACCATATCCATGAAAAGCTGGTATCTCTTAGTTTGCCTCAGAAAGACTTTGTGCCTTTCTTCTTGAATTTTTTAAGGGAGCAAACCGGTCAGATCCTGACCAATGGGCCTTCCACCCCTGCAAAAACACCGAATTCCAAGGCCCTTGGAAACTCTGCTGGCCGTGGGAGCCAAAGGAGAGGCTCAGAAAGGAGGGCAGGAAACACAACAGGGTCAAGCAGCAGCCGAATGCAGCTCTTTACCCAAAAAGGCTCTGCTAACTCCTGTTCCCCAGATACCAGCTTTGCCCCTTCTGCTGTGTCAGGTGGCTCTCCTGCATTTACTGGATCAAACCTGTCTAGCCCCAGCAGTGATTTCCCTAGTGTGGTCTCCAGTGTGAGCCCAAGCTTTGGTTGCAGCCCTGTATTTAACCACAGTGAGAGGCGCTCAGCTCAGAAGGCCAACTTGGGGAACTTTTTTGTGGCCATGCCAGAAGTTCAGCCGACAAGGCGAGGCAGAAGAAAGGGCAACAGCTCCACCAGTACCTCTAGCCGGCAGGTGGCTCGGGATCTTGGACGATGTCTTGCTGATGAGGAGGATGGGAAGAGTGATAACACTTCATGGAGTGGAGGGAGGAAGAAGCGCAATGAAGTGTTGGGTGTCTCTGCCAGTTCCCCACCTGATCAGCTGAACCTCAACAACTTGGAGGAGTTCCCACCCATGTGCGCTTCTTCTGGCTTCACAAACAAAAGTAAGCCATCAAGACGAATTAACCCCACTCCAGTGAGTATTGAGCGCCCGCTCTCTAAACCCAAGATGTGCTTCACTTCTACACCAGTCAGCCAATCTCCAGCTGCTCGGTTTCCATCTGGAGCAAGTCATGAAGCCTTTGTGACCATCCAGGAAGGAAATGTTGCTTCCACTGCAGGGAGCAGCCTTCAAGAGGAGAGAGAGATGCTGAAGAAAGAACGATGCAAGTTGCTGCACCAGGCTTCTTCTCCTGCAGGCCTGTCTCTGGAGCCCAGCACTCCTACCAAGCTTAGCTACACTCGAAGTGCAAGCCTCCCTCCTGAGGGCCATCTGATGACCTGTGCATATCTCAGTAAGGTCTCCTGCAAAAAGCAACTAGATCAGCTGGCCTTGCTTTATTCATCTTGTATAGCAGAAAACCTGGTTCCGAACATCTTCCTGGAGCTCTTTTTTGTTCTGCAGCTGCTAACATCCAGGGGAATATCTGCAGAAGATGGAGAGAGTGATCTGGAATTCAATCAAGGATGTAAAGGTGCAGTAGAGAGGCAGCATTTTCATAATGTGCACAACTGTGTCTATTTTGCTGTCCAGGTCTTGGATCGTCAGTATGAACTTATTTCCCACTTAGAGAAGGGGACCTTGAAACTCTTGGCTGAGAACGAGCGGATTGCGTCCTTTTCCCCTCACCTGCACAAGAGGCTGAGGCAGGCTTATGAAAGCAGCACAGCCAAGGTTTCTCTCCTGCTGCCTTCATCTGTACAATCTGTTTCTTTCCAGCCAGAAACTGATAATCGCTCTAACTTTCCCAGTGACAGGGCATTTCATATTTTTAAGAAGCAAAGGGACATCTTCTATGAGTTGCTGCGTGAATGGGAAGATAACCATGAAAAACCAGCTTGGGATTTTGAAAGAGTCCTGGGCAACAAGATCAGGGCTATGATGGCTCACCTTACAGCAACTTGTAACCACAGCCATTTTGCCAGACTCTTTCAAAAACAGATTATCCAGATGTGTAAAGGTCCCGTTGGTGGTGGCACAAGCTGGGGAGACACCCCAGACCAGGACGTCCTTAATATGTTGGGCTGTGATGATCTGAGTCGGCTGAAGAGGCTGCAGGAGAGATTTGTCGCTCCTCAGAGCATCAGAGGGCCTTGCCCACCCCCTTCCTTCCCAGGGTGCCAGCAATTCTTCAGGGACTTCATCCTCAGCGCAGGAAGCTATCAGTTCAATCAACACCTCATGGATAACCTGTGCCTAAAAATACTTGAGCTGGATGGCCTTACTTTGGTAGAGCATGAGCCTAGCGATGGTGAAGCAGACATGGAGGAACAGGATGAAAAGAAACATTTCACCGTTGTCCTGATGAGCCTCCGGCTCCTGGCAAAATTTCTTGGATTTCTTGTTTTCCTTCCGTATCGCACAGTGGAGCCACCAACAAGAGACTTGCACGAGTCTGCAGTGGCATTAAGAAATCAAAGCCTACCTGTACTGGATGTATTGAAACTCCTGCAGCGAGCTATCCAGGGCCGGCGTACTATCCTCACTATACCTTGGATTGTGGAGTTCCTCTCCCTCGTAGATCATATTGCTCCTTTTCTTGACTACTATGGGACAGTATTTTCCCTCTTGCTGCAAGTGTACAGGTCCATGGTACCCTCTGAAGATAAGGAGATGAGTTTCCTAAACAAGCTGTTGATCCTTGCAGTGTTGGGTTGGCTTTTTCAGTTTCTGTTCCAGATCCCCTCTGTCCCAGAGGAGCTGTTCTTTACCAGTGAAGTCAGACAGGATGGATTGATGATGGATACCATGTCATCTGCTCAGGCCTTGGATTCTGCAACTTTGGTGGATCAGCAGTTACTTTATACCTGCTGTCCATATCTTGGTGAGCTGCGGAAGCTGCTGGCCTCCTTTGTGGCAGGCAGTGGAGCAAAGAATGGTGGCTTTATAAGAAAAATAACCCCAACAGCTGCAGAGTCCTTGGCACCCAAACCTTCTGTCACACAGCAGAAACTGCAGGCAGAGCTGGAGCAGGCCTTCTTCCACAATCAGCCCCCATCACTGCGGAGAACAGTGGAATTTGTGGCAGAGAGGGTGGGTTCCAACTGTGTTAAGCATATCAAGGCCACTCTGGTAGCAGAGCTTGTCAAAAGGGCAGAGGTCATGCTGCAGGAAAAAGTGAAGGAGGACAATACTAATCATGACAAACTGCTAGATGAGGTGTGCACTCAGCTTTATGAAGAAGGGGCACAGGCTTTCCTCAAAGGCAGAGAATTTTGCAGGAAGAAAGGTCCTGAAGCTGTGAGAGTTCTTCTGCCAGAAGAGACGTCTGCAGCTGTCCTGAGCAGTGCAGAGGATATTGCAGTGAGGCTGGCTACTGAAAAGGCATGTACCTGGCTCTCCACCAACATCACAGCACTGATCAAAAGGGAAGTGAGGACCACATTCAGTCGAATGCTGAAAATCCAGGGTCCTTCCTTACCTAGTGAGGATACACAAGAGATGAAGAAGGACTGCCCTCCAGGATGCCAGCATCATGCTCCATTTCCCTCTGAAATCATCAATGAGATCAAAGATGTTCTCTGTATTGCTGTGGGACCAAGGGATGGAGATGAAGCGATTCATTATGCCCATCTGGAGTGCTTGTTGGAGAAGCTGAGTCAAACACTTCAATGCAGAAAGTTCATGTGTCCTACCTCGGAACAGCAGCTGGCTAAGTGTACCATAGAGTTGGCTTCTCTTTTAGTTTCAGACCGCATTCCGATCCAAGGTCTTGAGCTTCAGACCCAGAAATACCCTGAAAGACAGCGATCAAAGAATCATCCCATCTGCAACCTCCTCACATCGCTGCTCTCTGTCTGGAAGGAAGATTTTGTGATGCTTGTTCCAGTGCAGCTGATCTTCAGCAAGAAGAACGTTGGCTATGTTGCAGAAGCTAAGCAGCGAGAGTGGGACTTGTTCCTGTTCATGCTTCATGGCCTGGTTGAGTACAATCTGATGGGAAATGCGGAGATAGAGAGCTACTTGCAAAGTCTCCAGGAATTTGCCTGGCCCTCAGACTTCTTAAAAGAGCTGGAAACTCTGTCCAGAGTGTTTGAATCTGAGCTTCATATAGAAGAACTCAGGACTAATCCTTGTGAATTGGTGAGACAATCTCTAGGCGCTGTGACAGCACAAAGCGAGGGCAGAGGAAGTCTTCTAACATGCGGTGACGTGGAGGAGAATCCCGGCCCAGAAGGGAGAGGAAGTCTTCTAACATGCGGTGACGTGGAGGAGAATCCCGGCCCAATGCACCATCACCATCACCATATGAAGTTGAGCAAGGCGCAGTACGAGGAGATCGCCCGGTTCCTGGGGCACGTGCAGCCCACCCGCCAGAGCCTGAGGCGGCTGAAGGAGCGATTCCCCAGTCAATCGCAGTCCACTCTGCTGAGCATCTTCTCCCAGGAGTACCAGAAACAAATCAAAAGAACACATGCCAAACATCACACTGCTGAGGCTATTGAAACTTACTATCAAAGGTACCGGAGTAGGGTGATGAAAAATGCAGCTGCCCCTGTATTATTGGAGCTAGCCAATGAGGTGGACTTTGCACCATCATTGATGGCTCGAATTGTGCTGGAAAGATTTTTACAAGAACAGGAGCAAGGTATCCCATCCAAGACTCTTATAAACAGTATGTTACGGGACCCTTCTCAGATTCCAGATGGAGTTCTAGCAAATCAGGTCTATCAGTGTACTGTGAATGACTGTTGTTATGGACCACTGGTGGACTGCATCAAACATGCTATTGGACATGAACATGAAGTCTTGCTACGAGAAATGCTTCTGAAGAAAAATCTCTCTTTCCTAGCTGAAGATCAGCTTCGTGCAAAGGGTTATGACAAAACACCAGCCTTTATTTTGGAAGTGCCAGTAGCTGTTGAAGGCCACATAATTCACTGGATTGAAAGTAAAGCTTCATTTGGTGATGAAAGCAGCCACCAGTCATACCTTCAGGACCAATTCTGGAGCTACTGGAATAGATTTGGTCCTGGATTAGTCATCTATTGGTATGGTTTTATTGAAGAGCTAGACTGTCATCGGGAACGCGGTATCCTGCTAAAAGACTGTTTTCCTACTGACATTGTAACACTGCGACACAGCATGGCTCAACACTGAGCGGCCGC
Amino Acid Sequence
MWSHPQFEKMDYKDHDGDYKDHDIDYKDDDDKMAAALELVLREEVAPGALVHWLKHDPGRRSAEENHIHEKLVSLSLPQKDFVPFFLNFLREQTGQILTN
GPSTPAKTPNSKALGNSAGRGSQRRGSERRAGNTTGSSSSRMQLFTQKGSANSCSPDTSFAPSAVSGGSPAFTGSNLSSPSSDFPSVVSSVSPSFGCSPV
FNHSERRSAQKANLGNFFVAMPEVQPTRRGRRKGNSSTSTSSRQVARDLGRCLADEEDGKSDNTSWSGGRKKRNEVLGVSASSPPDQLNLNNLEEFPPMC
ASSGFTNKSKPSRRINPTPVSIERPLSKPKMCFTSTPVSQSPAARFPSGASHEAFVTIQEGNVASTAGSSLQEEREMLKKERCKLLHQASSPAGLSLEPS
TPTKLSYTRSASLPPEGHLMTCAYLSKVSCKKQLDQLALLYSSCIAENLVPNIFLELFFVLQLLTSRGISAEDGESDLEFNQGCKGAVERQHFHNVHNCV
YFAVQVLDRQYELISHLEKGTLKLLAENERIASFSPHLHKRLRQAYESSTAKVSLLLPSSVQSVSFQPETDNRSNFPSDRAFHIFKKQRDIFYELLREWE
DNHEKPAWDFERVLGNKIRAMMAHLTATCNHSHFARLFQKQIIQMCKGPVGGGTSWGDTPDQDVLNMLGCDDLSRLKRLQERFVAPQSIRGPCPPPSFPG
CQQFFRDFILSAGSYQFNQHLMDNLCLKILELDGLTLVEHEPSDGEADMEEQDEKKHFTVVLMSLRLLAKFLGFLVFLPYRTVEPPTRDLHESAVALRNQ
SLPVLDVLKLLQRAIQGRRTILTIPWIVEFLSLVDHIAPFLDYYGTVFSLLLQVYRSMVPSEDKEMSFLNKLLILAVLGWLFQFLFQIPSVPEELFFTSE
VRQDGLMMDTMSSAQALDSATLVDQQLLYTCCPYLGELRKLLASFVAGSGAKNGGFIRKITPTAAESLAPKPSVTQQKLQAELEQAFFHNQPPSLRRTVE
FVAERVGSNCVKHIKATLVAELVKRAEVMLQEKVKEDNTNHDKLLDEVCTQLYEEGAQAFLKGREFCRKKGPEAVRVLLPEETSAAVLSSAEDIAVRLAT
EKACTWLSTNITALIKREVRTTFSRMLKIQGPSLPSEDTQEMKKDCPPGCQHHAPFPSEIINEIKDVLCIAVGPRDGDEAIHYAHLECLLEKLSQTLQCR
KFMCPTSEQQLAKCTIELASLLVSDRIPIQGLELQTQKYPERQRSKNHPICNLLTSLLSVWKEDFVMLVPVQLIFSKKNVGYVAEAKQREWDLFLFMLHG
LVEYNLMGNAEIESYLQSLQEFAWPSDFLKELETLSRVFESELHIEELRTNPCELVRQSLGAVTAQSEGRGSLLTCGDVEENPGPEGRGSLLTCGDVEEN
PGPMHHHHHHMKLSKAQYEEIARFLGHVQPTRQSLRRLKERFPSQSQSTLLSIFSQEYQKQIKRTHAKHHTAEAIETYYQRYRSRVMKNAAAPVLLELAN
EVDFAPSLMARIVLERFLQEQEQGIPSKTLINSMLRDPSQIPDGVLANQVYQCTVNDCCYGPLVDCIKHAIGHEHEVLLREMLLKKNLSFLAEDQLRAKG
YDKTPAFILEVPVAVEGHIIHWIESKASFGDESSHQSYLQDQFWSYWNRFGPGLVIYWYGFIEELDCHRERGILLKDCFPTDIVTLRHSMAQH*


(self cleavage at 2A2A sequence)
Vector Type
Bacterial
Antibiotic
Amp
DU Number
DU63130
Location
PPU
MTA
Low Temp
No
Price
£125.00
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