# STOCKHOLM 1.0 #=GF ID 3.40.390.10/FF/000070 #=GF DE Matrix metallopeptidase 25b #=GF AC 3.40.390.10/FF/000070 #=GF TP FunFam #=GF DR CATH: v4.3 #=GF DR DOPS: 77.577 #=GS E7F1N5/25-290 AC E7F1N5 #=GS E7F1N5/25-290 OS Danio rerio #=GS E7F1N5/25-290 DE Matrix metallopeptidase 25b #=GS E7F1N5/25-290 DR ORG; Eukaryota; Metazoa; Chordata; Craniata; Actinopterygii; Actinopteri; Neopterygii; Teleostei; Otomorpha; Ostariophysi; Cypriniphysae; Cypriniformes; Cyprinoidei; Cyprinidae; Danio; Danio rerio; #=GS E7F1N5/25-290 DR GO; GO:0008237; GO:0097374; #=GS A0A0R4IVT7/45-313 AC A0A0R4IVT7 #=GS A0A0R4IVT7/45-313 OS Danio rerio #=GS A0A0R4IVT7/45-313 DE Matrix metallopeptidase 17b #=GS A0A0R4IVT7/45-313 DR ORG; Eukaryota; Metazoa; Chordata; Craniata; Actinopterygii; Actinopteri; Neopterygii; Teleostei; Otomorpha; Ostariophysi; Cypriniphysae; Cypriniformes; Cyprinoidei; Cyprinidae; Danio; Danio rerio; #=GS A0A0R4IVT7/45-313 DR GO; GO:0001755; #=GS F7BXU6/1-248 AC F7BXU6 #=GS F7BXU6/1-248 OS Xenopus tropicalis #=GS F7BXU6/1-248 DE Matrix metallopeptidase 25 #=GS F7BXU6/1-248 DR ORG; Eukaryota; Metazoa; Chordata; Craniata; Sarcopterygii; Amphibia; Batrachia; Anura; Pipoidea; Pipidae; Xenopodinae; Xenopus; Silurana; Xenopus tropicalis; #=GS H9GRP6/16-284 AC H9GRP6 #=GS H9GRP6/16-284 OS Anolis carolinensis #=GS H9GRP6/16-284 DE Uncharacterized protein #=GS H9GRP6/16-284 DR ORG; Eukaryota; Metazoa; Chordata; Craniata; Sarcopterygii; Lepidosauria; Squamata; Iguania; Dactyloidae; Anolis; Anolis carolinensis; #=GS H2M4S6/30-300 AC H2M4S6 #=GS H2M4S6/30-300 OS Oryzias latipes #=GS H2M4S6/30-300 DE Uncharacterized protein #=GS H2M4S6/30-300 DR ORG; Eukaryota; Metazoa; Chordata; Craniata; Actinopterygii; Actinopteri; Neopterygii; Teleostei; Euteleosteomorpha; Atherinomorphae; Beloniformes; Adrianichthyoidei; Adrianichthyidae; Oryziinae; Oryzias; Oryzias latipes; #=GS A0A0R4IB00/45-313 AC A0A0R4IB00 #=GS A0A0R4IB00/45-313 OS Danio rerio #=GS A0A0R4IB00/45-313 DE Matrix metallopeptidase 17b #=GS A0A0R4IB00/45-313 DR ORG; Eukaryota; Metazoa; Chordata; Craniata; Actinopterygii; Actinopteri; Neopterygii; Teleostei; Otomorpha; Ostariophysi; Cypriniphysae; Cypriniformes; Cyprinoidei; Cyprinidae; Danio; Danio rerio; #=GS A0A0R4IB00/45-313 DR GO; GO:0001755; #=GS I3IT28/29-302 AC I3IT28 #=GS I3IT28/29-302 OS Danio rerio #=GS I3IT28/29-302 DE Matrix metallopeptidase 25a #=GS I3IT28/29-302 DR ORG; Eukaryota; Metazoa; Chordata; Craniata; Actinopterygii; Actinopteri; Neopterygii; Teleostei; Otomorpha; Ostariophysi; Cypriniphysae; Cypriniformes; Cyprinoidei; Cyprinidae; Danio; Danio rerio; #=GS A0A3P9MHR9/30-300 AC A0A3P9MHR9 #=GS A0A3P9MHR9/30-300 OS Oryzias latipes #=GS A0A3P9MHR9/30-300 DE Uncharacterized protein #=GS A0A3P9MHR9/30-300 DR ORG; Eukaryota; Metazoa; Chordata; Craniata; Actinopterygii; Actinopteri; Neopterygii; Teleostei; Euteleosteomorpha; Atherinomorphae; Beloniformes; Adrianichthyoidei; Adrianichthyidae; Oryziinae; Oryzias; Oryzias latipes; #=GS H2LQD5/18-285 AC H2LQD5 #=GS H2LQD5/18-285 OS Oryzias latipes #=GS H2LQD5/18-285 DE Uncharacterized protein #=GS H2LQD5/18-285 DR ORG; Eukaryota; Metazoa; Chordata; Craniata; Actinopterygii; Actinopteri; Neopterygii; Teleostei; Euteleosteomorpha; Atherinomorphae; Beloniformes; Adrianichthyoidei; Adrianichthyidae; Oryziinae; Oryzias; Oryzias latipes; #=GS A0A3P9KYW3/18-284 AC A0A3P9KYW3 #=GS A0A3P9KYW3/18-284 OS Oryzias latipes #=GS A0A3P9KYW3/18-284 DE Matrix metallopeptidase 25b #=GS A0A3P9KYW3/18-284 DR ORG; Eukaryota; Metazoa; Chordata; Craniata; Actinopterygii; Actinopteri; Neopterygii; Teleostei; Euteleosteomorpha; Atherinomorphae; Beloniformes; Adrianichthyoidei; Adrianichthyidae; Oryziinae; Oryzias; Oryzias latipes; #=GS A0A3P9HXD9/18-284 AC A0A3P9HXD9 #=GS A0A3P9HXD9/18-284 OS Oryzias latipes #=GS A0A3P9HXD9/18-284 DE Matrix metallopeptidase 25b #=GS A0A3P9HXD9/18-284 DR ORG; Eukaryota; Metazoa; Chordata; Craniata; Actinopterygii; Actinopteri; Neopterygii; Teleostei; Euteleosteomorpha; Atherinomorphae; Beloniformes; Adrianichthyoidei; Adrianichthyidae; Oryziinae; Oryzias; Oryzias latipes; #=GF SQ 11 E7F1N5/25-290 S---APVKDQYSRGVDWLSRYGYLPPLDPRTGQLQSKDGIERAIREMQRFAGLKETGKLDSDTLTLMNTPRCSLPDII-------GIEDK-LKKRRR---------KRYATT-GLRWTKSDITWSVQNYP--SVHKRLTPTQVDPIISYALKAWSDVTNLNFYGA---SSSEKDRADIRISFARSLHDDGYPFDGKGGTLAHAFFPGESDVAGDTHFDDDEIWTYL-DES--GTDLFAVAVHEFGHALGLSHSSSSPSIMKPYYQGSVGDVGSYILPDDDREAIQSLYGRKISSP A0A0R4IVT7/45-313 A---IPTEDESGKLVDWLTKYGYLPPPDPSTGQLQAWTAVTQAVKKMQSFAGLDETGILDEETLQLMQTPRCSLPDDD-------DDDQT-IHSAQHADP----QNQRMKRA-VSTWTRRNINWRLRSYP---VSSKLSRETIRSLVFYALRVWADPTLLEFHEV-----RGPEGADLQIDFLHGPHGDGYPFDGAGGSVGHAFFPSDPNRAGGVHLDAEEDWAFRQPAT-EGTDLFTVLVHELGHALGLTHSSARRSVMRPYYQGPLGDPLHFSLGYQDLQHITALYGQRGND- F7BXU6/1-248 ---------------DWLTRYGYLPPPDPFSARQQTLEGLREAVKAMQRVAGLPETGELDDATVRMMNKPRCSLPDII-------MRPE--GRSRRN---------KRYALS-GSVWDKKLLTWRLENSP-----NTMSQDVSRTLIGTALAVWSKETQLQFRET-------REQPDIRVEFVTGSHGDGYPFDGQGGTLGHAFFPGVGERAGETHMDADESWSYNSKFSHEGTDLFAVAVHEFGHSLGLYHSSSENSIMKPYYQGTVGDPSRYRLPPDDVDGIQTLYGQPDSG- H9GRP6/16-284 ----TPT-DESGEIVEWLMQYGYLPPSDPITGQLQTWEAVTSAIRVMQHFAGIAETGIPDDATLSLIRMPRCSLPDIITPFPEKLPLREK-GRRKRQKGK----KSRSRRSA-GSVWTKRNISWRVKTYP---RESHLSRETMRTLMYYALKVWSEATPLNFHEV-----AATLRTSVEV--PRLDHHDGYPFD-PGGMVAHAFFPGDPQRAGNVHFDSSEEWTFRSPDD-FGTDLFAVAVHEFGHSLGLTHSPSKHSIMRPYYQGPVGDPLQYQLHVDDCMEIQNLYGMYS--- H2M4S6/30-300 EARPKPTEDGSTMLVNWLTKYGYLPPSDPSTGQLQAWTAVTKALRAMQKFAGLKDTGVLDEETVALMKSPRCSLPD----------EEES-LKSSAHEEG----KEARRKRSTVSMWTRRNINWRVQSYP---SSSHLSREMIRSLVFYALRVWADPIPLEFHEV-----GSPESADLQVDFLHGYHGDSYPFDGAGGAVGHAFFPSDPARAGGVHLDSEEQWVFRQPDS-EGTDLFTVLIHEFGHALGLTHSSSRHSVMRPYYQGPAGDPLHYRLGHQDLEYITQLYGRRNQPL A0A0R4IB00/45-313 A---IPTEDESGKLVDWLTKYGYLPPPDPSTGQLQAWTAVTQAVKKMQSFAGLDETGILDEETLQLMQTPRCSLPDDD-------DDDQT-IHSAQHADP----QNQRMKRA-VSTWTRRNINWRLRSYP---VSSKLSRETIRSLVFYALRVWADPTLLEFHEV-----RGPEGADLQIDFLHGPHGDGYPFDGAGGSVGHAFFPSDPNRAGGVHLDAEEDWAFRQPAT-EGTDLFTVLVHELGHALGLTHSSARRSVMRPYYQGPLGDPLHFSLGYQDLQHITALYGQRGND- I3IT28/29-302 -------PDQYARGVDWLIRYGYLQSPDTLIGGLQTKESIEEAVRKMQRFAGIEETGNLDQKTLEMMGRPRCSLPDTI-------SFEEL-LKRNRRGKNKVMMKKKRYTLP-KMRWDKTDITWSMQDFPPPSVSPALNPGLVRLILGNALRVWSENTPLRFHYS---PDEPSPQTDITVTFTSGYHEDGYPFDGKGGALAHAFFPGKGDLAGDTHFDAEESWSYGDWSS--DSDLFTVAVHDFGHALGLFHSSSSDSIMKPYYFGPVGEMNSYSLTAVDRLGIQALYGKQHNLK A0A3P9MHR9/30-300 EARLKPTEDGSTMLVNWLTKYGYLPPSDPSTGQLQAWTAVTKALRAMQKFAGLKDTGVLDEETVALMKSPRCSLPD----------EEES-LKSPAHEEG----KEARRKRSTVSMWTRRNINWRVQSYP---SSSHLSREMIRSLVFYALRVWADPIPLEFHEV-----GSPESADLQVDFLHGYHGDSYPFDGAGGAVGHAFFPSDPARAGGVHLDSEEQWAFRQPDS-EGTDLFTVLIHEFGHALGLTHSSSRHSVMRPYYQGPAGDPLHYRLGHQDLEYITQLYGRRNQPL H2LQD5/18-285 ----SALPDQYSRAVDWLSRYGYLPPPDPRTSRLQTKDGIENAIRVMQRFGGLPETGLLDRKTLKLMSTPRCSLPDIV-------EGEDMRRRRRRR---------KRYALS-GLKWHKTDLTWSVHSYP--KPSQGLSNSLVENLLFHALKAWSDAAPLNFQQLQGDSRGATAEGDIKVSFSRLLHDDGYPFDGLGGTLAHAFYPGVAQVSGDTHFDDDESWSFGGDSS--TTDLFTVAVHEFGHALGLSHSSSDPSIMRPYYQGSVGDVSTFKLALDDRLAIQQLYGARDG-- A0A3P9KYW3/18-284 ----SALPDQYSRAVDWLSRYGYLPPPDPRTSRLQTKDGIENAIRVMQRFGGLPETGLLDRKTLKLMSTPRCSLPDIV-------EGEDM-RRRRRR---------KRYALS-GLKWHKTDLTWSVHSYP--KPSQGLSNSLVENLLFHALKAWSDAAPLNFQQLQGDSRGATAEGDIKVSFSRLLHDDGYPFDGLGGTLAHAFYPGVAQVSGDTHFDDDESWSFGGDSS--TTDLFTVAVHEFGHALGLSHSSSDPSIMRPYYQGSVGDVSTFKLALDDRLAIQQLYGARDG-- A0A3P9HXD9/18-284 ----SALPDQYSRAVDWLSRYGYLPPPDPRTSRLQTKDGIENAIRVMQRFGGLPETGLLDRKTLKLMSTPRCSLPDIV-------EGEDM-RRRRRR---------KRYALS-GLKWHKTDLTWSVHSYP--KPSQGLSNSLVENLLFHALKAWSDAAPLNFQQLQGDSRGATAEGDIKVSFSRLLHDDGYPFDGLGGTLAHAFYPGVAQVSGDTHFDDDESWSFGGDSS--TTDLFTVAVHEFGHALGLSHSSSDPSIMRPYYQGSVGDVSSFKLALDDRLAIQQLYGARDG-- #=GC scorecons 0000233274433276994699997759736557953456449673995769737993794496378349999999330000000225620365455110000011574435044394745659565579000344386444554754599669664559495440001033433476473734439497999973994669997964444695595946949474333601579996957987997999499774397979997956984347393249333954999353310 #=GC scorecons_70 ________*_____****_*******_**_*__**____*__*_*_**_****_***_**__**_**__*******_______________________________*________*_*__*_*____**_______**______*___**_****___*_*______________*__*_*____*_*******_**_*_******____**__*_*__*_*_*________******_**********_****__*********__**___*_*___*___*__***______ #=GC scorecons_80 ________________**__******_**____**_______*_*_**_*_**_***_**__*__**__*******_______________________________*________*_*____*_____*_______*_______*___**__*_____*_*______________*__*______*_******__**___*****______*__*_*__*_*_*________****_*_******_***_****__*********__**___*_*___*___*__***______ #=GC scorecons_90 ________________**__****___*______*_______*___**___*___**__*__*___*__*******________________________________________*______*_____*_______*___________**__*_____*_*________________________*_*_****__**___***_*______*__*_*__*_*___________***_*__**_**_***_**____*_*_***_*__**_____*___*___*__***______ //