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  1. Transcript 'Moocul.CG.ELv1_2.S10...'

Transcript Model

Transcript Id

Moocul.CG.ELv1_2.S105402.g10058.01.t

Possible name(s)

MAP3K10; MAP3K11; MAP3K9

Location

S105402 [13,386 / 33,173]

Sequences

Amino acid sequence

Length: 1,302

>Moocul.CG.ELv1_2.S105402.g10058.01.p
MEAATFSPMQNGTTNGQLINNMNHAGPSQAANFYNPVTVFQPVSNGLTSPLVKNGINPAV
GGTTGYTGVNPYKVQQAPMTSWIGDTGHTNPMWMVKFPYQPEQEDELTLEHGQPIEVLSQ
QCQDEGWWMGKVNDKVGLFPSNYIEPVTKAAIPGIKPQKSNNYTKLNEDDSPLEANTIVV
EPPPYKEIRFSELTLNEIIGVGGFGKVYHGTWDDREVAVKAAKVDPDEDISMTINNVEKE
ARMFSMISHKNIIALEGVCLELPNLCIVLEYATGGALNRFLTGRKLPPQILVDWALQIAH
GMNYLHNEVETPLIHRDLKSSNVLIKEAVTENDNLQNKTMKIADFGLAREMYKTTKMSAA
GTYAWMAPEVIKSSTFSKASDVWSYGVLLWELLTGEQPYRGIDGLAIAYGVAINKFSLPI
PKTCPQEFKNLLNQCWCHDAHERPSFRMILTTLQTIAESPFITVNNESFRSMQDDWQKEI
EEMFNELRLKEKELRTREEDLQRSAMKQKIKEEYLNSRERELQEREVGIVERELKMIIKE
EQEHDEALKAPKPAKRKLKRSKLEKKGGIGEPTGFTHKLTVQANHVQSNRSILQEYLEGT
ADPHDFAPSNPTVRLKTIQNPSPGSSEALRAQKAAEIDSVDGDTTVRPTVLSISPDTSSS
PKGNSYDSEDFTPRPTPESSRENSLKRNPTLKQVVLGIARVFAAVAIGRDIQNFAQAAPS
LAIADDAASTSSGGSKGGRTASNSSLQVGGDKTTTAKDLTNQTSVGTVKAVPLHLQPDLM
SQSVTSLDSDPSTAVTQLSLSCDSINTIESQNTIRKNRSLDSTESKSLASSKQSLSSSRD
TIVVDKHTNAGFNHDDDVMGKINYAAQLSNSSTSGEFKGQENASKNLKKDDKKSDSPILV
VPFKTSPVLRKQPENRQRHSSAGNDKKRSSWGPTDVSDITVRTRGHRRTPSDGRVVVPIQ
PFDQIVRVLKETKSPAERAATPEQLNPELYRLPAPMPASRRKSDQGIIDTPGLERPNSLA
ITSRPRPNRNHRSNANKQQAMTPGSKSSLDSPLGLAALAPRTASLGSTSGDSSYAASLGS
NTPTNLNTVSSQHIVASSSSSGYNHGSVVPYTQPSNKSYPHAQSFSATTSYPQYQGNPAP
GYYQQQQHQPPPTTHTGYYQGTVYSSQPQLQAASQPPMQSKRTLSSNSSTGSLHSYSSSP
CRKMFQSQTSCDPYLQRGPTFYPSNNVHMGVRKTSSGSEKSYEALRQAASSSHPEPALSR
QPTSLLDRNMGEEEDKHFPLMQYRPKTEKQQNEKDFYRQFES

Nucleotide sequence

Length: 5,327

>Moocul.CG.ELv1_2.S105402.g10058.01.t
GATTTTACTTATAGATTGTTGTTGTTAAAGGCTTGGGGAATTATAGTTTTTGTTACTTTC
TGTTTTTGCCTGCTGATTTCTTAGTAAATGTGCTATGATTCCACTATTATAAGAAACTTT
ACATCGATGTAAATGCAATCAACATGCTTCAACAACATTAAATCTGACATGAAGGAGTAG
TGTGAAGACTGCGAGCAATGAAACGCATTGCAAACACAGACGGGCTACAATTAGCCAAAT
ATACTTGATTAGTAAAATTTAAAATGGAGGCTGCTACATTCTCACCAATGCAGAATGGCA
CTACTAATGGTCAACTGATAAACAATATGAATCATGCCGGACCATCACAAGCAGCAAACT
TCTACAACCCTGTCACTGTGTTTCAACCTGTTTCAAATGGACTAACTTCACCTCTTGTCA
AGAATGGAATTAATCCAGCTGTTGGCGGAACTACTGGTTATACAGGTGTAAACCCATACA
AAGTGCAACAAGCTCCCATGACATCATGGATCGGGGATACTGGTCATACCAATCCAATGT
GGATGGTGAAGTTTCCGTATCAGCCTGAGCAGGAGGATGAGTTAACACTAGAACATGGAC
AACCTATTGAAGTGTTATCGCAACAATGCCAAGATGAGGGTTGGTGGATGGGTAAAGTGA
ACGACAAAGTTGGCTTGTTTCCTAGCAATTATATCGAGCCAGTTACCAAAGCTGCAATAC
CTGGAATCAAACCTCAAAAATCAAATAATTACACAAAACTTAACGAAGATGATTCACCAT
TAGAAGCCAATACTATAGTAGTTGAACCTCCACCATATAAAGAAATTCGCTTTTCTGAAT
TGACGTTAAATGAAATTATTGGTGTTGGTGGCTTTGGGAAGGTCTACCATGGTACGTGGG
ATGATAGAGAGGTTGCTGTCAAAGCTGCAAAAGTAGACCCTGATGAAGACATCAGTATGA
CGATTAATAATGTGGAGAAAGAAGCGCGGATGTTTTCCATGATTTCACATAAGAACATAA
TTGCATTGGAAGGCGTTTGTTTGGAGTTACCCAATTTGTGTATCGTATTGGAATATGCTA
CTGGAGGTGCTTTGAATAGGTTTTTAACTGGCCGTAAACTTCCACCACAAATTTTGGTGG
ACTGGGCATTGCAAATTGCACATGGAATGAACTACCTTCACAATGAAGTCGAAACGCCGC
TAATTCATCGAGATTTAAAGTCAAGCAATGTGTTAATCAAAGAAGCAGTAACTGAAAACG
ACAATCTTCAAAATAAAACCATGAAAATAGCGGACTTTGGACTTGCGAGGGAAATGTACA
AAACAACGAAAATGAGCGCAGCGGGAACGTACGCTTGGATGGCTCCGGAGGTCATTAAAA
GTTCAACTTTCTCGAAAGCAAGCGATGTTTGGAGCTATGGAGTTCTGCTATGGGAATTAT
TGACGGGAGAGCAGCCATATCGCGGCATAGATGGGTTAGCGATCGCATACGGTGTTGCAA
TCAACAAATTCTCACTTCCCATTCCAAAAACATGTCCTCAGGAATTCAAAAATCTTTTGA
ATCAATGCTGGTGTCATGATGCGCATGAGCGACCTTCATTTCGAATGATTCTTACAACGT
TGCAAACTATTGCTGAGTCACCGTTTATCACTGTTAACAATGAATCGTTTCGAAGCATGC
AGGATGACTGGCAAAAAGAAATTGAAGAAATGTTCAATGAATTACGACTTAAGGAGAAAG
AACTTCGCACGCGTGAAGAAGACTTGCAACGATCCGCGATGAAGCAGAAGATCAAAGAAG
AATACTTGAACAGCCGAGAACGAGAGTTGCAGGAACGAGAGGTTGGAATCGTTGAACGAG
AACTGAAGATGATTATAAAAGAAGAACAAGAGCATGACGAAGCTCTTAAAGCTCCAAAAC
CTGCAAAGAGAAAGTTGAAGAGGAGTAAATTGGAGAAGAAAGGAGGAATCGGGGAACCGA
CTGGTTTCACGCACAAACTGACGGTACAAGCGAACCACGTGCAATCAAATCGATCAATCC
TGCAGGAATATTTGGAAGGAACAGCCGATCCTCATGACTTTGCACCATCGAATCCAACAG
TTCGATTAAAAACCATTCAAAATCCAAGCCCGGGTTCTTCAGAAGCACTGAGAGCGCAAA
AAGCAGCGGAAATTGATTCGGTGGACGGTGACACTACTGTCCGTCCAACTGTCCTTTCAA
TATCACCGGACACAAGTTCATCACCGAAGGGAAATTCGTACGACAGTGAAGACTTTACAC
CAAGACCAACACCAGAGAGCAGTAGAGAGAACAGTTTAAAGAGGAATCCCACATTAAAGC
AAGTGGTTCTTGGCATTGCACGAGTTTTTGCGGCCGTTGCGATTGGTCGGGATATTCAAA
ACTTCGCTCAAGCAGCTCCTTCACTTGCGATTGCTGATGACGCGGCAAGTACAAGTTCTG
GTGGATCTAAAGGTGGGCGGACAGCTTCAAACTCCTCTCTACAAGTCGGCGGGGACAAAA
CCACAACTGCAAAAGATTTAACCAATCAGACGTCAGTTGGCACGGTGAAAGCAGTTCCAC
TTCATTTGCAACCAGATCTGATGTCACAATCAGTAACTTCACTGGACAGCGATCCATCGA
CTGCCGTAACGCAGTTATCGTTATCATGTGATTCAATAAATACGATTGAAAGTCAAAATA
CGATTCGTAAAAATCGTAGTTTGGATTCGACGGAGAGCAAATCCCTCGCAAGCTCGAAGC
AGTCGTTGTCGAGTTCACGTGATACGATCGTCGTTGATAAACACACAAACGCTGGTTTCA
ATCACGATGATGATGTCATGGGAAAGATTAATTACGCTGCGCAGTTGTCCAACAGTTCCA
CTTCGGGAGAATTTAAAGGACAAGAAAATGCCAGCAAAAATTTAAAGAAAGATGATAAAA
AGTCTGATTCTCCTATCTTGGTTGTACCTTTCAAAACGTCGCCAGTCCTTCGAAAGCAAC
CGGAAAATCGACAGCGGCATTCGTCTGCTGGAAACGACAAGAAACGGTCATCATGGGGAC
CAACAGATGTTTCGGACATTACCGTTCGAACCAGAGGCCACAGGAGGACACCATCTGATG
GCAGAGTTGTTGTTCCTATTCAACCTTTTGATCAAATTGTAAGGGTATTGAAGGAAACGA
AAAGTCCAGCAGAAAGAGCTGCTACACCTGAACAACTGAACCCTGAACTCTACCGGCTTC
CTGCACCAATGCCAGCATCTAGAAGAAAGAGTGATCAGGGAATCATCGACACTCCTGGTT
TGGAGAGACCAAACTCGCTTGCCATCACTTCTCGTCCTCGACCGAATCGAAATCATCGAT
CAAATGCCAACAAGCAACAAGCGATGACCCCAGGCAGCAAATCAAGCCTCGATTCTCCGC
TAGGGTTAGCAGCCCTTGCACCCCGTACTGCTAGTCTTGGTAGTACGAGTGGTGATTCCT
CGTATGCAGCCAGTTTGGGCTCAAACACTCCAACAAATTTAAACACTGTTTCTTCACAAC
ATATTGTTGCTAGTTCCAGCAGCTCAGGGTACAATCATGGGTCTGTAGTTCCATACACCC
AACCATCAAATAAAAGTTATCCCCATGCACAGTCGTTCAGTGCCACCACATCCTACCCCC
AGTACCAAGGAAACCCCGCACCCGGGTACTACCAGCAGCAGCAGCACCAACCACCTCCCA
CAACCCACACTGGGTACTACCAAGGTACAGTGTACTCCAGTCAGCCACAGCTCCAAGCTG
CCAGTCAACCCCCAATGCAAAGCAAAAGAACACTGTCTTCTAACTCCTCCACGGGCTCTC
TACATTCCTACAGCTCATCACCATGCAGAAAAATGTTCCAAAGTCAAACTTCTTGTGACC
CTTATCTTCAGAGAGGACCCACTTTTTACCCTAGCAATAACGTGCACATGGGGGTGCGAA
AAACTTCATCAGGCTCTGAGAAAAGTTACGAAGCTTTACGTCAAGCTGCCTCGTCATCTC
ATCCAGAACCTGCTTTGAGCAGGCAACCAACGAGTCTGTTGGACCGAAACATGGGAGAGG
AAGAAGATAAACATTTTCCTTTGATGCAGTACCGACCTAAAACAGAGAAGCAGCAAAACG
AAAAAGATTTTTATCGACAGTTTGAATCGTAGTGCATGTAAAATGTCAAGTTCAATAGAT
ACAGCTTTGTACACAAAGCATAAAATCATACAAATAACGTGCAAATATGAACTTAAATCG
ATGTTTATAATGAAATGTTCGAGAATGTGCTTATAATAAGTTGTTATATGTTACACTTTT
TCTACCAACTTTTTTTGTGTGTGTTAAGCTTTTTACCAATCGCAGTAGGTAGTAATCAAT
TACGATCAGTGAACTAAACCTGCAAGTTCGTCGTACTATATGTAATTTGCTTGCTTTAGC
TGTAAGACAGTTAGATGTCTAGAACAGAAACCTCTGCTAATTGGTAAATGCTAATTGCTT
CCTTTTTTCACAGTTTAATTTGTGGTACGAAATAGTAACCTCTATTGTATGTCGCTGTTT
ATTATGAGATGTGGTAGATGGTTGTATCTGAATGTCGAAATATCTAGCAAGAAAATGGCT
TTTAACACAAGATGTATTTAAATATCGTTGTGTGCAACAAGTGACATTTTGAAGAATAAG
CTGATCCATTCCTGCTAGAGTGTTGTAGTGCAACAATTTATATTTGTTGTGCTTTAATTC
TTCTTTGGATTTAACAACAGATGTTTGGTATTGATTTAACAGAATGATGTGGACAATGAT
TGTGATGCTTTATAGAGTCTAAAGTGCCATTATTTTGCCTTTAATTTTGCTGGCCAATCT
AATTAAATACTTCGGCTGCTTTTATATGTACTGTACTGTGTCAATACTTGTATATTCCGT
TTTCATCGAATTCTTACGAAAGTTTCAAAACTTTACAATCGTTTTCGTATTTTTTTTTGC
TTGAAGGTGTAACAAAATATCTGTTCACCTTTTTACCAATATTGGCAGTCAAACGATCAC
AAAGTTACAACTCTCATTGAATAAGTAAAGTTAATTTGATTGTTGATGTAGCTATTGTAA
CTGCATCTCAAATTTTCATTGTAATTGACCTTTAATTTTGATCTTCTCGCACTTTTTTTT
TTTATTTATTTCTGATTCCAACGATGATGGCATGACATCACAGTGACCTTTGTTATCTGT
TGTGACGTCATATTGTTATACTGTGAGCGAACAGTGGTACATTGTGCGCTCTCTTACACT
TGAATTGTTTACTATAGACGCAATTGCATATTATATTCTTCTGTCCC

InterProScan

ProSiteProfiles
SH3_domain (IPR001452) - T[88-149] 15.153
SMART
SH3_domain (IPR001452) - T[91-148] 1.4E-17
SUPERFAMILY
SH3-like_dom_sf (IPR036028) - T[91-158] 5.78E-19
Pfam
SH3_domain (IPR001452) - T[95-145] 6.7E-13
PRINTS
SH3_domain (IPR001452) - T[105-120] 1.1E-5 - T[124-133] 1.1E-5 - T[135-147] 1.1E-5
SUPERFAMILY
Kinase-like_dom_sf (IPR011009) - T[177-453] 2.87E-75
SMART
Prot_kinase_dom (IPR000719) - T[193-462] 1.2E-61
Pfam
Ser-Thr/Tyr_kinase_cat_dom (IPR001245) - T[193-452] 2.0E-67
ProSiteProfiles
Prot_kinase_dom (IPR000719) - T[193-462] 44.273
ProSitePatterns
Protein_kinase_ATP_BS (IPR017441) - T[199-220] .
PRINTS
Ser-Thr/Tyr_kinase_cat_dom (IPR001245) - T[269-282] 3.0E-15 - T[307-325] 3.0E-15 - T[361-371] 3.0E-15 - T[380-402] 3.0E-15 - T[424-446] 3.0E-15
ProSitePatterns
Ser/Thr_kinase_AS (IPR008271) - T[313-325] .

Best Blast Hits in UniProt
Protein Name Identity Bit Score e-value
M3K10_HUMAN 53.021 % 532 1.13E-170
M3K9_HUMAN 54.862 % 580 0
M3K11_HUMAN 47.872 % 534 7.85E-173





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