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  1. Transcript 'Moocul.CG.ELv1_2.S11...'
  2. Clone 'cign062p23'
  3. Transcript 'KH2012:KH.C3.101.v1....'
  4. Transcript 'KH2012:KH.C10.73.v2....'
  5. Transcript 'Moocul.CG.ELv1_2.S12...'

Transcript Model

Transcript Id

Moocul.CG.ELv1_2.S129898.g15233.01.t

Possible name(s)

ADAMTS10; ADAMTS18; ADAMTS6

Location

S129898 [16,151 / 26,629]

Sequences

Amino acid sequence

Length: 1,222

>Moocul.CG.ELv1_2.S129898.g15233.01.p
MSTFSSSTLLIAIMSLFISDVQTTQEHRHVKLSRALSGIENQDENVQIAHIRRVRSNGDF
LHHINLNSHSRQKRSVSEDLSSTPLDGDHEVYLHMDNALGLPEAKLYLKRNYKLISKNFV
IEERGRGGKIVNRKDMVSDCHYHGKIRNHNGYSKIALSLCEGVQGYISLDDSEFIIEPLW
NHTISQDAPEEAHPHVIYKRSIFKHLQERKKDENDLGHCGYSDNDKAAGGTPWWKVDPRD
SSRDRGQDEEDEEETVDEEEDEFDIQEQESTEEKKVQKKGKKHRGRKHRGGKRRSNKKGR
GRKNSHKNHRTSAGRSDLLDVDENKPKSRSKRSISEERNVETLVVADKMMVGYHGRQEVE
KYILTIMNIASSLYHDATIGNAINIIVTRIVLLTENQPNLEINHHADKSLDSFCKWQSKI
NVNETSSIPESGIAHHDNAVLITGFDICTYANKPCGTLGLAPVAGMCEPTRSCNINEDIG
LSSAFTIAHEIGHNFGMQHDGTQNDCGLQENEPAQIMAGQMTKNTRPFTWSRCSRKYITD
FLDSSSGKCLSNTPPRRDFDFPSELPGQQHDADEQCRFSYGPQSRQCKYGDVCRDLWCLN
KKGVCVTNSIPAAEGTDCHGLRIGKGWCYRGQCVSFGHRPNAVDGAWGEWSPWSDCSRTC
GGGARSSYRHCDSPAPEHGGKYCIGQRKRYESCNTENCNVTAKTYREEQCAQFDSEPFRG
KYYNWKPFVGGYNVNPCALNCLAESYNFYTERAPAVVDGTRCFPDSLDMCISGECHHVGC
DHVLNSDAVEDKCRICGGDGSTCQTVKAVFNSPVMHGQYREIVRIPKGSVHIRVEEVEIS
TDNYLALKNTDGQNFINGGWTIDWPRKFEIAGTTFSYKRPFDEPETLTAVGPTTEDLVVM
ILVQENNKGVKYEYNVPVEHSMGSGDGDVNFEWDFAPWSGCSATCAGGSQHRPVVCKRTD
DESEVQAAYCDQRTKPTVETRPCNLEPCAPKWAIADWQQCTHTCGGGERTRSVTCMRKIS
AAEDEMVADHFCTEAKPISHETCNVERCPPQWVAAEWSSCSPSCGSGWKNRGVTCQSSEG
EVIENSDCDQASKPPTRTRCNNRACPPPKWRVGRWGKCSAKCGRGRQSRQVKCLDHNRRP
SNRCPRHRKPSNYKSCQATCKPSDSPHEKPTSSSTNHHSAPAAEKCKDDTNVSYCPLVKK
FNFCSRAFFRKTCCATCAKLRG

Nucleotide sequence

Length: 4,606

>Moocul.CG.ELv1_2.S129898.g15233.01.t
TTATATTTTAGACAAGCTGGGCATTTTGCCTCCTATTTATTTATTTAAACACCTACTATT
TATTTATTTCATCATCGGAAAAAACTACGAAAGGAATATACTAAAAGAAGAACGGAAGAA
AGCATTTATGATCACGGAACCTGCAATTGATTTATCGTCAATTATTATTTATTAAGGCGA
GCGACGCTGCAAGAAATATTTATTTGAAAATGTCAACTTTTTCATCATCAACACTTTTAA
TTGCGATAATGTCATTATTTATTTCGGATGTTCAAACGACACAAGAACACCGACACGTCA
AACTTTCACGGGCGTTGAGCGGAATCGAAAATCAAGATGAAAACGTTCAAATTGCCCACA
TAAGAAGAGTGAGGAGCAATGGGGATTTTCTTCATCACATCAACTTGAATAGTCACAGCA
GACAGAAACGAAGTGTCTCTGAAGATTTAAGTTCGACACCTCTGGACGGTGACCACGAGG
TGTACCTTCATATGGACAATGCTCTTGGCTTGCCAGAAGCAAAACTTTATTTAAAAAGAA
ACTATAAATTAATATCAAAAAATTTTGTAATCGAAGAACGAGGAAGAGGCGGTAAAATTG
TCAATCGCAAAGACATGGTCAGCGATTGCCACTATCATGGAAAAATTCGTAACCATAATG
GTTATTCCAAAATTGCACTCAGCCTCTGCGAGGGAGTGCAAGGTTACATTTCCTTGGACG
ACTCAGAATTTATCATCGAACCACTGTGGAACCACACAATATCACAAGACGCACCAGAGG
AAGCTCATCCTCATGTAATTTATAAAAGATCAATTTTCAAACATCTTCAAGAACGTAAAA
AGGACGAGAATGATTTGGGTCACTGTGGGTATTCAGATAATGATAAAGCCGCTGGCGGCA
CTCCATGGTGGAAGGTTGACCCAAGAGATTCATCCAGAGATAGAGGACAGGATGAAGAAG
ACGAAGAAGAAACTGTTGATGAAGAAGAAGATGAATTTGATATTCAAGAGCAGGAATCAA
CTGAAGAGAAGAAAGTGCAGAAGAAAGGAAAGAAGCATCGAGGCCGAAAACATCGTGGAG
GAAAGAGGAGGAGTAACAAGAAGGGAAGAGGAAGAAAGAACTCTCATAAAAACCACAGAA
CGAGCGCCGGACGTTCGGATTTGTTGGATGTTGATGAAAACAAACCAAAAAGTAGAAGCA
AGAGATCAATCAGTGAAGAAAGAAATGTCGAAACGCTGGTCGTTGCAGACAAGATGATGG
TTGGCTACCATGGAAGGCAAGAGGTTGAAAAGTACATCTTGACAATCATGAACATCGCTT
CAAGTTTGTATCATGACGCCACAATAGGAAATGCCATCAACATTATCGTGACGAGAATCG
TACTTTTGACCGAAAATCAGCCAAACTTGGAAATCAACCACCATGCTGATAAATCATTGG
ACAGTTTTTGCAAATGGCAATCAAAAATCAACGTGAATGAAACCAGTAGCATCCCAGAAA
GTGGAATTGCTCATCATGATAACGCTGTATTGATCACAGGGTTCGACATCTGCACATACG
CCAACAAACCATGTGGAACATTAGGATTGGCACCAGTAGCGGGAATGTGTGAACCAACTA
GAAGCTGTAACATAAACGAAGATATTGGTCTCTCGTCTGCATTTACCATCGCACATGAAA
TTGGGCATAATTTTGGAATGCAACATGACGGAACACAGAACGATTGTGGCCTGCAAGAAA
ATGAACCTGCCCAGATCATGGCTGGACAAATGACCAAAAACACTCGTCCATTCACATGGT
CAAGATGTTCAAGAAAATACATCACAGATTTCTTGGATTCATCTTCTGGCAAATGTCTTT
CAAACACCCCACCACGACGAGACTTCGACTTTCCTTCCGAGTTACCAGGGCAACAGCACG
ATGCCGATGAACAATGCCGATTCAGTTACGGCCCGCAATCTCGTCAGTGCAAATACGGGG
ACGTTTGTCGAGATCTGTGGTGCTTGAACAAGAAAGGTGTATGTGTCACTAACAGCATAC
CAGCTGCAGAAGGTACTGACTGTCATGGACTTCGTATTGGCAAGGGATGGTGCTACCGTG
GTCAATGTGTTTCATTTGGTCACCGACCCAACGCTGTTGACGGCGCTTGGGGCGAGTGGA
GTCCATGGAGTGATTGCTCACGAACATGTGGAGGTGGCGCCAGGTCATCATACAGACACT
GTGACAGCCCAGCACCTGAACATGGTGGAAAATACTGCATTGGACAAAGAAAGCGATACG
AATCTTGCAATACTGAGAACTGCAACGTAACTGCAAAAACATACCGGGAAGAGCAATGCG
CTCAGTTCGATTCCGAACCGTTCCGAGGAAAATATTACAACTGGAAGCCTTTTGTCGGAG
GTTACAACGTCAATCCTTGTGCTCTTAACTGTTTGGCTGAGAGTTATAATTTTTACACCG
AAAGAGCTCCTGCGGTTGTTGATGGAACTCGATGTTTCCCAGATTCATTGGACATGTGCA
TCAGTGGCGAATGTCACCATGTTGGGTGCGACCATGTGTTGAACTCGGATGCTGTCGAAG
ACAAATGTCGCATATGTGGCGGAGATGGCAGCACATGTCAAACAGTCAAGGCCGTCTTCA
ATTCTCCAGTTATGCACGGACAATATCGAGAAATCGTGAGAATCCCGAAAGGATCTGTAC
ACATTCGCGTCGAAGAAGTCGAGATATCGACCGATAATTATCTTGCTCTCAAAAACACCG
ATGGACAGAACTTTATCAACGGCGGATGGACAATTGATTGGCCAAGAAAATTTGAAATAG
CCGGTACTACTTTCTCATACAAGCGACCTTTTGATGAACCCGAAACTCTTACCGCCGTCG
GTCCGACCACAGAAGATTTGGTTGTGATGATTTTGGTGCAAGAGAACAACAAGGGAGTGA
AGTATGAATACAATGTGCCTGTCGAACACAGCATGGGAAGTGGAGATGGTGACGTCAACT
TCGAATGGGACTTTGCTCCATGGAGTGGGTGCTCAGCCACATGTGCTGGTGGCTCGCAAC
ATCGACCAGTCGTCTGCAAACGAACTGATGATGAAAGCGAAGTGCAAGCGGCATATTGCG
ATCAAAGAACCAAACCAACCGTTGAAACTCGACCTTGCAATCTTGAACCATGCGCACCAA
AATGGGCCATTGCTGACTGGCAGCAATGCACACACACCTGTGGTGGAGGCGAACGAACAC
GTTCTGTTACTTGCATGCGAAAAATATCAGCCGCTGAAGATGAAATGGTTGCGGATCACT
TTTGTACCGAAGCCAAACCAATCTCACACGAAACATGCAACGTTGAGAGATGTCCTCCTC
AATGGGTGGCTGCTGAATGGTCATCTTGCTCACCAAGTTGTGGTTCGGGATGGAAGAACA
GGGGAGTCACCTGTCAATCAAGCGAAGGAGAAGTGATCGAGAATTCCGATTGTGATCAAG
CCAGCAAACCACCAACCAGAACAAGATGCAACAACAGAGCTTGTCCGCCTCCCAAGTGGA
GAGTTGGACGGTGGGGAAAATGTTCTGCTAAATGTGGTCGTGGAAGACAATCTCGTCAAG
TTAAATGTCTGGACCATAACAGAAGACCATCAAACAGATGCCCACGACACCGAAAACCTT
CGAATTACAAGAGTTGTCAAGCCACCTGCAAACCAAGTGACTCTCCTCATGAGAAACCAA
CAAGTAGCAGCACCAACCACCACTCAGCACCTGCCGCGGAAAAATGCAAAGATGACACTA
ACGTCAGCTACTGCCCTCTCGTCAAGAAATTCAACTTCTGCAGCCGAGCATTCTTCAGGA
AGACTTGCTGCGCAACATGTGCGAAGCTGAGAGGTTAAATGCTTACAAGAGCATTATAAC
GTGGAAGTTTTCGCGCGAACGTGCGCGTGAAGCGGCGCGGTGCTGCTTAACCTTACCTCA
GCAAGGCTCGTGTGAAACGAACCTGGTGACAACCTGTGCCCTATGTGGCCCTCTTACTGT
GAACGTTGCCTTTACTCGGTTTTAAGAGCATGTTACCACACGTTGAACGTGTTGACGAAT
TATGGTGTTATTTTTATATCTAACGCTTGTTTTATTTTACTATTGTTACAGAGCAATACT
ATTTACTCTTATATTATTTTGACTAACCTATACTGTCTTTCACTGCCATTCAACAGCATT
TGTTGCAAGACATACCTTGCACTTTTCAATAAACTTTTCGCTTTTTAATTCGACCGCATT
ATGTCGCTATTGATCTATATTTTTGTACAAATAACAAACGTTGTGCAAAATACTATTATT
TTATGTTTTGTTACTCTATAGTATTATTTATTTTTTGTTATATTAATTTAATGACTGTTT
GTTGTTGTATTTTTTTTATATTTTTCTAATTTCAAATATCGGTCTCAACCGATTTACCCA
GAAATGAGTATATTCGTTCGCTATCGTAAGTTTTATTGTTATCTATGCACATCTTCAAGT
GGCTCTAGTTTTGTCATCAGCGTCTCGGCATCACCTTGATGATGCCTCCCTTCTCCGCTA
TACGCATTTAAACAACTCTATTTGCCTTTCAATAAACTGAGTTCCG

InterProScan

Pfam
Peptidase_M12B_N (IPR002870) - T[47-198] 4.2E-26
Gene3D
MetalloPept_cat_dom_sf (IPR024079) - T[333-574] 5.4E-91
ProSiteProfiles
Peptidase_M12B (IPR001590) - T[338-554] 23.265
Pfam
Peptidase_M12B (IPR001590) - T[340-554] 3.4E-24
SUPERFAMILY
TSP1_rpt_sf (IPR036383) - T[641-698] 6.67E-15 - T[933-988] 1.7E-10 - T[992-1048] 1.7E-10 - T[1049-1105] 5.75E-7 - T[1106-1156] 1.07E-6
Gene3D
TSP1_rpt_sf (IPR036383) - T[642-698] 5.0E-18 - T[931-988] 6.2E-10 - T[990-1049] 5.5E-10 - T[1051-1106] 2.6E-7 - T[1108-1160] 1.0E-6
ProSiteProfiles
TSP1_rpt (IPR000884) - T[644-699] 13.891 - T[929-989] 10.939 - T[992-1047] 8.164 - T[1048-1106] 11.321 - T[1107-1161] 9.634
SMART
TSP1_rpt (IPR000884) - T[647-699] 1.6E-14 - T[932-989] 8.2E-7 - T[991-1049] 0.0048 - T[1051-1106] 0.93 - T[1109-1161] 0.1
Pfam
TSP1_rpt (IPR000884) - T[648-698] 3.4E-10 - T[935-988] 6.8E-6 - T[996-1021] 0.0022 - T[1055-1105] 0.015
Pfam
ADAM_spacer1 (IPR010294) - T[804-917] 2.3E-34
ProSiteProfiles
PLAC (IPR010909) - T[1182-1221] 11.418
Pfam
PLAC (IPR010909) - T[1186-1217] 3.9E-9

Best Blast Hits in UniProt
Protein Name Identity Bit Score e-value
ATS6_HUMAN 53.781 % 1158 0
ATS18_HUMAN 35.285 % 745 0
ATS10_HUMAN 52.862 % 1003 0





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