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Tomato locus endo-1,4-beta-glucanase (Cel3)
Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
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Registry name: | None | [Associate registry name] |
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![]() ![]() | [Associate accession] |
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Associated loci - graphical view | None |
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![]() ![]() | unprocessed genomic sequence region underlying this gene |
>Solyc01g102580.2 SL2.50ch01:91360972..91357022 (sequence from reverse strand)
CAAGTTTGGTAATATTACTAGTATTAAATATATTGTGTTATAATCAAAAAAGCCAAAAAAACAGCACCATCACAGCTTTCATATATCCATTATTTTCCACTAGATTTTCTAGTCCCATTTTCCTCCTTCCTCCATAATACCCCATCCTTTCTGCCATCTCCTTTCATTCCACAACTTTCTTGAAAAAAGGAAAAAAAAAAACAGTAGATCAAGACTTACCCAGTTCAGCATTTCTTGAATCTTGGAAAAAAGATTCAACCTTTGCATGTTTTGAGCTTGTGGGGGTGTTTTTTCAGCTCTAATTTGAGTACCCAGAATCAATATGTACGGTAGGGATCCATGGGGTGGACCTTTAGAGATCCACACAGCTGATTCAGCTACAGACGATGACAGGAGCAGGAACTTGCAGGATTTTGATAGGGCAGCGATGTCTAGGTCACTGGATGAGACTCAACAGAGCTGGCTGTTGGGTCCGACTGAGCAGAAGAAGAAGAAGTATGTGGATCTTGGTTGTATTATTGTGAGTAGGAAGATTTTTAAGTGGACTGTGGGGTGTATTATTGCGGCTGCGCTTCTAGCTGGATTCATTACTATGATTGTTAAGCTTGTACCTAGACACAAACATCACAATCCTCCACCGGATAATTATACTCTGGCTCTCCGTAAAGCTCTTATGTTCTTCAATGCCCAGAAATGTAAGTTATCTGTTTATTATTTGCTTGAATTCTTCAGTCTGTGGGCTTAAAAATCTGATTTTTACTATCTCATTGCACATTAGATCTGTTATTGATTATGTTTTTTGTCTGGATTTTAGTTTGTGATAGATTGATAGTTGGAAACTGTATGATCTTGGTGAAGCATGATTCAGTCCTCTGTATTGATCTTCTTGTTTTGTTTGCTTTGATTTGGAAATATTTATTATTTTCCCCAAATTTTTGGTTAGTTTGGTTGATTAAGGTAATGAACAACAACATGCCCACCGTAATCCTAAGAGTATAAGTGGGGTTCGAGGAGGGTAGAGTGTCGCAGCCTTACCCCCTTATCTTATGTGAAGTTAGTATTTAAGTTGATCAAGGTCACTTGATATAGAATATGATATTTTTTTCATTTATCTTTATATATGATATGTGGAATGGCTCTACGTGCCTTTGACTTGAGATTGGAAGATTACTGCATCAGCAGCTACATGATTTGAGCTGCAAAAATATTATTTTTTAAATTTAGTGCTTGAATGTGATGTTTTGGTCTTCTTTGGTTATAGCTTAGTTTTTTGCTAATTCTCTATTGGAATTTACAGCTGGAAAATTGCCCAAGCATAATAACGTGTCATGGAGGGGGAATTCATGTTTGCAAGATGGCAAGTCAGATGATTCAACTATGTTCAAAAATTTGGTTGGGGGTTATTATGATGCAGGAGATGCAATCAAGTTTAATTTCCCTCAGTCATTTGCTCTCACCATGTTGAGTTGGAGTGTGATCGAGTACAGTGCTAAATATGAAGCTGCTGGGGAGCTCGCTCATGTTAAAGATACTATTAAGTGGGGTACTGATTATCTCCTGAAGACTTTCAATTCCTCTGCTGATACCATAGACCGGATTGCTGCACAGGTAATTATCATTTAAATTTTCCTTATAAATGTGTAGATCACAAATTTTCTCAACTAGAATGTCATAGTTTGTTCTATCGTCAGTAATTAGTATTCAGCTCTAACCAGTTATCATCGCCTTACCCGTCTGAGTCATGAAATCATGATTCCCATTATACTTCTTAAACATTTAAAATAACTATAATCTCTTGGCTGGCTTTTTGACTTTCACTAAGATAAGTCTCCTTGTTAATCAGATCAGCATCAATGACTGCATGAAATTGTATTTTGACAGTGTTTGAGTCAAAATTGAACTTATTCTGAATTAATTAATCTCATCGGACAAATTATGTTTTGTGTAGGTTGGAAAAGGGGATACTACCGGAGGGGCTACTGACCCCAATGATCACTATTGCTGGGTGCGTCCTGAAGACATTGATTACGCTCGGCCTGTGACTGAATGTCACGGCTGCTCGGACCTTGCTGCAGAGATGGCTGCTGCGCTGGCTTCTGCCTCCATTGTTTTTAAGGACAACAAAGCTTACTCGCAAAAGCTTGTACATGGTGCTAGAACTCTCTTCAAATTTTCTAGAGACCAGCGTGGAAGATACAGCGTCGGCAATGAAGCTGAAACTTTCTATAATTCCACCGGTTATTGGGATGAGTTTATATGGGGTGCGGCTTGGCTGTATTATGCTACTGGAAATTCTTCATATCTTCAGCTTGCTACAACACCTGGTATTGCCAAACATGCTGGTGCTTTCTGGGGAGGTCCTGATTACGGTGTGCTCAGCTGGGATAACAAGCTCACTGGAGCTCAGGTCAGTCAATATCACCTCTTCTTTCCTTTTACCCTCCTCTAGTATTTCTGTGCAGCTTTTGTGCTTGAGACTTATAAGCTAGGATATCTCATTTCTTCGAGGGACTTATTTTTTGCTATAACACTGCTTTTTGTTATCTCTTCAGGTGCTACTGAGCCGTATGAGGCTGTTTCTGAGCCCTGGATATCCTTATGAAGAAATTTTAAGGACATTTCATAACCAGACTAGCATAATCATGTGCTCCTACCTGCCAATCTTCACTTCTTTTAATCGCACAAAAGGTAACCTTCATTACCCAATTCGCGTCAAAGTAATTTGAAATCTTTAGTTTGAAATCTAAACCAATTCTTTTTGACCTTTCCAGGAGGGCTAATCCAATTAAACCATGGAAGGCCTCAGCCTCTCCAGTATGTAGTCAATGCAGCCTTCCTGGCTACCTTGTTTAGTGACTATCTCGCAGCTGCCGACACTCCTGGATGGTACTGTGGACCAAATTTCTACTCTACTGATGTCCTGCGTAAATTTGCAGAAACCCAGGTAAATGAATCTCCCCTAGTAAGAGTCTCTTTTCTTATTCTTGGGTTCTATCTTGTCAATGGTTGTTGTTTATGCTATTCCACAACCAACTTCCCTTCTCCCTGCTTCATGTTTTGGGGACAATAGGGACAAATATGAATGATAATTTGCCGCTAGGGTGTGTAGAATATTAGAGATACGATATACACAAGTTTTCTTTTGCCTATTCTGTTGTAAGGTGAAAATCATTTCTTGGTTTTAACTTGGACGTTTCTTTGACCTTGTAGATTGACTACATCCTTGGGAAGAACCCCAGGAAAATGAGTTATGTTGTTGGCTTTGGCAATCACTATCCTAAGCATGTCCACCACAGAGGGGCATCAATTCCTAAAAACAAGGTCAAATATAACTGTAAAGGTGGATGGAAATATAGGGATTCATCTAAGGCTAATCCAAATACTATTGTTGGAGCCATGGTTGCTGGACCAGACAAGCATGATGGTTTCCGTGATGTCCGTTCTAATTACAATTATACGGAGCCTACTCTTGCTGGAAATGCTGGTTTAGTTGCAGCTCTCGTGGCTCTATCTGGAGATAGAGATGTCGGAATTGATAAGAACACTTTATTCTCTGCAGTACCACCGATGTTTCCCACTCCACCACCTCCGCCAGCTCCTTGGAAACCATGATCTTTAATACGTCGTTTGTGCCTCCCTCATCTGAGTGTAGGTTCTTTATTTTTGATATTAGATTCTGAGACAAAGAAGCTAGATGAAACTTGGATGTGCACACCCTTGAACATAGATAGTAGTTTGGGCATTATTAGGACACTAGCAAGTGAAATTCTTCAAGAAATGCCCAATGCATGTCTGTTTTACTTTGATGTATCATCTACACACACTATGAATGTAACGTAACCAATCATGTATTCTTTGAACAGTGTAATCTCAATTTCCTCGGAACAAGTTCTCACATAATGTTCGTGTTTTGTGTTGTCAAAAATTATTCAAGTCAGGATAGTGCTGGAC
CAAGTTTGGTAATATTACTAGTATTAAATATATTGTGTTATAATCAAAAAAGCCAAAAAAACAGCACCATCACAGCTTTCATATATCCATTATTTTCCACTAGATTTTCTAGTCCCATTTTCCTCCTTCCTCCATAATACCCCATCCTTTCTGCCATCTCCTTTCATTCCACAACTTTCTTGAAAAAAGGAAAAAAAAAAACAGTAGATCAAGACTTACCCAGTTCAGCATTTCTTGAATCTTGGAAAAAAGATTCAACCTTTGCATGTTTTGAGCTTGTGGGGGTGTTTTTTCAGCTCTAATTTGAGTACCCAGAATCAATATGTACGGTAGGGATCCATGGGGTGGACCTTTAGAGATCCACACAGCTGATTCAGCTACAGACGATGACAGGAGCAGGAACTTGCAGGATTTTGATAGGGCAGCGATGTCTAGGTCACTGGATGAGACTCAACAGAGCTGGCTGTTGGGTCCGACTGAGCAGAAGAAGAAGAAGTATGTGGATCTTGGTTGTATTATTGTGAGTAGGAAGATTTTTAAGTGGACTGTGGGGTGTATTATTGCGGCTGCGCTTCTAGCTGGATTCATTACTATGATTGTTAAGCTTGTACCTAGACACAAACATCACAATCCTCCACCGGATAATTATACTCTGGCTCTCCGTAAAGCTCTTATGTTCTTCAATGCCCAGAAATGTAAGTTATCTGTTTATTATTTGCTTGAATTCTTCAGTCTGTGGGCTTAAAAATCTGATTTTTACTATCTCATTGCACATTAGATCTGTTATTGATTATGTTTTTTGTCTGGATTTTAGTTTGTGATAGATTGATAGTTGGAAACTGTATGATCTTGGTGAAGCATGATTCAGTCCTCTGTATTGATCTTCTTGTTTTGTTTGCTTTGATTTGGAAATATTTATTATTTTCCCCAAATTTTTGGTTAGTTTGGTTGATTAAGGTAATGAACAACAACATGCCCACCGTAATCCTAAGAGTATAAGTGGGGTTCGAGGAGGGTAGAGTGTCGCAGCCTTACCCCCTTATCTTATGTGAAGTTAGTATTTAAGTTGATCAAGGTCACTTGATATAGAATATGATATTTTTTTCATTTATCTTTATATATGATATGTGGAATGGCTCTACGTGCCTTTGACTTGAGATTGGAAGATTACTGCATCAGCAGCTACATGATTTGAGCTGCAAAAATATTATTTTTTAAATTTAGTGCTTGAATGTGATGTTTTGGTCTTCTTTGGTTATAGCTTAGTTTTTTGCTAATTCTCTATTGGAATTTACAGCTGGAAAATTGCCCAAGCATAATAACGTGTCATGGAGGGGGAATTCATGTTTGCAAGATGGCAAGTCAGATGATTCAACTATGTTCAAAAATTTGGTTGGGGGTTATTATGATGCAGGAGATGCAATCAAGTTTAATTTCCCTCAGTCATTTGCTCTCACCATGTTGAGTTGGAGTGTGATCGAGTACAGTGCTAAATATGAAGCTGCTGGGGAGCTCGCTCATGTTAAAGATACTATTAAGTGGGGTACTGATTATCTCCTGAAGACTTTCAATTCCTCTGCTGATACCATAGACCGGATTGCTGCACAGGTAATTATCATTTAAATTTTCCTTATAAATGTGTAGATCACAAATTTTCTCAACTAGAATGTCATAGTTTGTTCTATCGTCAGTAATTAGTATTCAGCTCTAACCAGTTATCATCGCCTTACCCGTCTGAGTCATGAAATCATGATTCCCATTATACTTCTTAAACATTTAAAATAACTATAATCTCTTGGCTGGCTTTTTGACTTTCACTAAGATAAGTCTCCTTGTTAATCAGATCAGCATCAATGACTGCATGAAATTGTATTTTGACAGTGTTTGAGTCAAAATTGAACTTATTCTGAATTAATTAATCTCATCGGACAAATTATGTTTTGTGTAGGTTGGAAAAGGGGATACTACCGGAGGGGCTACTGACCCCAATGATCACTATTGCTGGGTGCGTCCTGAAGACATTGATTACGCTCGGCCTGTGACTGAATGTCACGGCTGCTCGGACCTTGCTGCAGAGATGGCTGCTGCGCTGGCTTCTGCCTCCATTGTTTTTAAGGACAACAAAGCTTACTCGCAAAAGCTTGTACATGGTGCTAGAACTCTCTTCAAATTTTCTAGAGACCAGCGTGGAAGATACAGCGTCGGCAATGAAGCTGAAACTTTCTATAATTCCACCGGTTATTGGGATGAGTTTATATGGGGTGCGGCTTGGCTGTATTATGCTACTGGAAATTCTTCATATCTTCAGCTTGCTACAACACCTGGTATTGCCAAACATGCTGGTGCTTTCTGGGGAGGTCCTGATTACGGTGTGCTCAGCTGGGATAACAAGCTCACTGGAGCTCAGGTCAGTCAATATCACCTCTTCTTTCCTTTTACCCTCCTCTAGTATTTCTGTGCAGCTTTTGTGCTTGAGACTTATAAGCTAGGATATCTCATTTCTTCGAGGGACTTATTTTTTGCTATAACACTGCTTTTTGTTATCTCTTCAGGTGCTACTGAGCCGTATGAGGCTGTTTCTGAGCCCTGGATATCCTTATGAAGAAATTTTAAGGACATTTCATAACCAGACTAGCATAATCATGTGCTCCTACCTGCCAATCTTCACTTCTTTTAATCGCACAAAAGGTAACCTTCATTACCCAATTCGCGTCAAAGTAATTTGAAATCTTTAGTTTGAAATCTAAACCAATTCTTTTTGACCTTTCCAGGAGGGCTAATCCAATTAAACCATGGAAGGCCTCAGCCTCTCCAGTATGTAGTCAATGCAGCCTTCCTGGCTACCTTGTTTAGTGACTATCTCGCAGCTGCCGACACTCCTGGATGGTACTGTGGACCAAATTTCTACTCTACTGATGTCCTGCGTAAATTTGCAGAAACCCAGGTAAATGAATCTCCCCTAGTAAGAGTCTCTTTTCTTATTCTTGGGTTCTATCTTGTCAATGGTTGTTGTTTATGCTATTCCACAACCAACTTCCCTTCTCCCTGCTTCATGTTTTGGGGACAATAGGGACAAATATGAATGATAATTTGCCGCTAGGGTGTGTAGAATATTAGAGATACGATATACACAAGTTTTCTTTTGCCTATTCTGTTGTAAGGTGAAAATCATTTCTTGGTTTTAACTTGGACGTTTCTTTGACCTTGTAGATTGACTACATCCTTGGGAAGAACCCCAGGAAAATGAGTTATGTTGTTGGCTTTGGCAATCACTATCCTAAGCATGTCCACCACAGAGGGGCATCAATTCCTAAAAACAAGGTCAAATATAACTGTAAAGGTGGATGGAAATATAGGGATTCATCTAAGGCTAATCCAAATACTATTGTTGGAGCCATGGTTGCTGGACCAGACAAGCATGATGGTTTCCGTGATGTCCGTTCTAATTACAATTATACGGAGCCTACTCTTGCTGGAAATGCTGGTTTAGTTGCAGCTCTCGTGGCTCTATCTGGAGATAGAGATGTCGGAATTGATAAGAACACTTTATTCTCTGCAGTACCACCGATGTTTCCCACTCCACCACCTCCGCCAGCTCCTTGGAAACCATGATCTTTAATACGTCGTTTGTGCCTCCCTCATCTGAGTGTAGGTTCTTTATTTTTGATATTAGATTCTGAGACAAAGAAGCTAGATGAAACTTGGATGTGCACACCCTTGAACATAGATAGTAGTTTGGGCATTATTAGGACACTAGCAAGTGAAATTCTTCAAGAAATGCCCAATGCATGTCTGTTTTACTTTGATGTATCATCTACACACACTATGAATGTAACGTAACCAATCATGTATTCTTTGAACAGTGTAATCTCAATTTCCTCGGAACAAGTTCTCACATAATGTTCGTGTTTTGTGTTGTCAAAAATTATTCAAGTCAGGATAGTGCTGGAC
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![]() ![]() | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>Solyc01g102580.2.1 Endo-1 4-beta-glucanase (AHRD V1 ***- O04890_SOLLC); contains Interpro domain(s) IPR008928 Six-hairpin glycosidase-like IPR018221 Glycoside hydrolase, family 9, active site IPR001701 Glycoside hydrolase, family 9
CAAGTTTGGTAATATTACTAGTATTAAATATATTGTGTTATAATCAAAAAAGCCAAAAAAACAGCACCATCACAGCTTTCATATATCCATTATTTTCCACTAGATTTTCTAGTCCCATTTTCCTCCTTCCTCCATAATACCCCATCCTTTCTGCCATCTCCTTTCATTCCACAACTTTCTTGAAAAAAGGAAAAAAAAAAACAGTAGATCAAGACTTACCCAGTTCAGCATTTCTTGAATCTTGGAAAAAAGATTCAACCTTTGCATGTTTTGAGCTTGTGGGGGTGTTTTTTCAGCTCTAATTTGAGTACCCAGAATCAATATGTACGGTAGGGATCCATGGGGTGGACCTTTAGAGATCCACACAGCTGATTCAGCTACAGACGATGACAGGAGCAGGAACTTGCAGGATTTTGATAGGGCAGCGATGTCTAGGTCACTGGATGAGACTCAACAGAGCTGGCTGTTGGGTCCGACTGAGCAGAAGAAGAAGAAGTATGTGGATCTTGGTTGTATTATTGTGAGTAGGAAGATTTTTAAGTGGACTGTGGGGTGTATTATTGCGGCTGCGCTTCTAGCTGGATTCATTACTATGATTGTTAAGCTTGTACCTAGACACAAACATCACAATCCTCCACCGGATAATTATACTCTGGCTCTCCGTAAAGCTCTTATGTTCTTCAATGCCCAGAAATCTGGAAAATTGCCCAAGCATAATAACGTGTCATGGAGGGGGAATTCATGTTTGCAAGATGGCAAGTCAGATGATTCAACTATGTTCAAAAATTTGGTTGGGGGTTATTATGATGCAGGAGATGCAATCAAGTTTAATTTCCCTCAGTCATTTGCTCTCACCATGTTGAGTTGGAGTGTGATCGAGTACAGTGCTAAATATGAAGCTGCTGGGGAGCTCGCTCATGTTAAAGATACTATTAAGTGGGGTACTGATTATCTCCTGAAGACTTTCAATTCCTCTGCTGATACCATAGACCGGATTGCTGCACAGGTTGGAAAAGGGGATACTACCGGAGGGGCTACTGACCCCAATGATCACTATTGCTGGGTGCGTCCTGAAGACATTGATTACGCTCGGCCTGTGACTGAATGTCACGGCTGCTCGGACCTTGCTGCAGAGATGGCTGCTGCGCTGGCTTCTGCCTCCATTGTTTTTAAGGACAACAAAGCTTACTCGCAAAAGCTTGTACATGGTGCTAGAACTCTCTTCAAATTTTCTAGAGACCAGCGTGGAAGATACAGCGTCGGCAATGAAGCTGAAACTTTCTATAATTCCACCGGTTATTGGGATGAGTTTATATGGGGTGCGGCTTGGCTGTATTATGCTACTGGAAATTCTTCATATCTTCAGCTTGCTACAACACCTGGTATTGCCAAACATGCTGGTGCTTTCTGGGGAGGTCCTGATTACGGTGTGCTCAGCTGGGATAACAAGCTCACTGGAGCTCAGGTGCTACTGAGCCGTATGAGGCTGTTTCTGAGCCCTGGATATCCTTATGAAGAAATTTTAAGGACATTTCATAACCAGACTAGCATAATCATGTGCTCCTACCTGCCAATCTTCACTTCTTTTAATCGCACAAAAGGAGGGCTAATCCAATTAAACCATGGAAGGCCTCAGCCTCTCCAGTATGTAGTCAATGCAGCCTTCCTGGCTACCTTGTTTAGTGACTATCTCGCAGCTGCCGACACTCCTGGATGGTACTGTGGACCAAATTTCTACTCTACTGATGTCCTGCGTAAATTTGCAGAAACCCAGATTGACTACATCCTTGGGAAGAACCCCAGGAAAATGAGTTATGTTGTTGGCTTTGGCAATCACTATCCTAAGCATGTCCACCACAGAGGGGCATCAATTCCTAAAAACAAGGTCAAATATAACTGTAAAGGTGGATGGAAATATAGGGATTCATCTAAGGCTAATCCAAATACTATTGTTGGAGCCATGGTTGCTGGACCAGACAAGCATGATGGTTTCCGTGATGTCCGTTCTAATTACAATTATACGGAGCCTACTCTTGCTGGAAATGCTGGTTTAGTTGCAGCTCTCGTGGCTCTATCTGGAGATAGAGATGTCGGAATTGATAAGAACACTTTATTCTCTGCAGTACCACCGATGTTTCCCACTCCACCACCTCCGCCAGCTCCTTGGAAACCATGATCTTTAATACGTCGTTTGTGCCTCCCTCATCTGAGTGTAGGTTCTTTATTTTTGATATTAGATTCTGAGACAAAGAAGCTAGATGAAACTTGGATGTGCACACCCTTGAACATAGATAGTAGTTTGGGCATTATTAGGACACTAGCAAGTGAAATTCTTCAAGAAATGCCCAATGCATGTCTGTTTTACTTTGATGTATCATCTACACACACTATGAATGTAACGTAACCAATCATGTATTCTTTGAACAGTGTAATCTCAATTTCCTCGGAACAAGTTCTCACATAATGTTCGTGTTTTGTGTTGTCAAAAATTATTCAAGTCAGGATAGTGCTGGAC
CAAGTTTGGTAATATTACTAGTATTAAATATATTGTGTTATAATCAAAAAAGCCAAAAAAACAGCACCATCACAGCTTTCATATATCCATTATTTTCCACTAGATTTTCTAGTCCCATTTTCCTCCTTCCTCCATAATACCCCATCCTTTCTGCCATCTCCTTTCATTCCACAACTTTCTTGAAAAAAGGAAAAAAAAAAACAGTAGATCAAGACTTACCCAGTTCAGCATTTCTTGAATCTTGGAAAAAAGATTCAACCTTTGCATGTTTTGAGCTTGTGGGGGTGTTTTTTCAGCTCTAATTTGAGTACCCAGAATCAATATGTACGGTAGGGATCCATGGGGTGGACCTTTAGAGATCCACACAGCTGATTCAGCTACAGACGATGACAGGAGCAGGAACTTGCAGGATTTTGATAGGGCAGCGATGTCTAGGTCACTGGATGAGACTCAACAGAGCTGGCTGTTGGGTCCGACTGAGCAGAAGAAGAAGAAGTATGTGGATCTTGGTTGTATTATTGTGAGTAGGAAGATTTTTAAGTGGACTGTGGGGTGTATTATTGCGGCTGCGCTTCTAGCTGGATTCATTACTATGATTGTTAAGCTTGTACCTAGACACAAACATCACAATCCTCCACCGGATAATTATACTCTGGCTCTCCGTAAAGCTCTTATGTTCTTCAATGCCCAGAAATCTGGAAAATTGCCCAAGCATAATAACGTGTCATGGAGGGGGAATTCATGTTTGCAAGATGGCAAGTCAGATGATTCAACTATGTTCAAAAATTTGGTTGGGGGTTATTATGATGCAGGAGATGCAATCAAGTTTAATTTCCCTCAGTCATTTGCTCTCACCATGTTGAGTTGGAGTGTGATCGAGTACAGTGCTAAATATGAAGCTGCTGGGGAGCTCGCTCATGTTAAAGATACTATTAAGTGGGGTACTGATTATCTCCTGAAGACTTTCAATTCCTCTGCTGATACCATAGACCGGATTGCTGCACAGGTTGGAAAAGGGGATACTACCGGAGGGGCTACTGACCCCAATGATCACTATTGCTGGGTGCGTCCTGAAGACATTGATTACGCTCGGCCTGTGACTGAATGTCACGGCTGCTCGGACCTTGCTGCAGAGATGGCTGCTGCGCTGGCTTCTGCCTCCATTGTTTTTAAGGACAACAAAGCTTACTCGCAAAAGCTTGTACATGGTGCTAGAACTCTCTTCAAATTTTCTAGAGACCAGCGTGGAAGATACAGCGTCGGCAATGAAGCTGAAACTTTCTATAATTCCACCGGTTATTGGGATGAGTTTATATGGGGTGCGGCTTGGCTGTATTATGCTACTGGAAATTCTTCATATCTTCAGCTTGCTACAACACCTGGTATTGCCAAACATGCTGGTGCTTTCTGGGGAGGTCCTGATTACGGTGTGCTCAGCTGGGATAACAAGCTCACTGGAGCTCAGGTGCTACTGAGCCGTATGAGGCTGTTTCTGAGCCCTGGATATCCTTATGAAGAAATTTTAAGGACATTTCATAACCAGACTAGCATAATCATGTGCTCCTACCTGCCAATCTTCACTTCTTTTAATCGCACAAAAGGAGGGCTAATCCAATTAAACCATGGAAGGCCTCAGCCTCTCCAGTATGTAGTCAATGCAGCCTTCCTGGCTACCTTGTTTAGTGACTATCTCGCAGCTGCCGACACTCCTGGATGGTACTGTGGACCAAATTTCTACTCTACTGATGTCCTGCGTAAATTTGCAGAAACCCAGATTGACTACATCCTTGGGAAGAACCCCAGGAAAATGAGTTATGTTGTTGGCTTTGGCAATCACTATCCTAAGCATGTCCACCACAGAGGGGCATCAATTCCTAAAAACAAGGTCAAATATAACTGTAAAGGTGGATGGAAATATAGGGATTCATCTAAGGCTAATCCAAATACTATTGTTGGAGCCATGGTTGCTGGACCAGACAAGCATGATGGTTTCCGTGATGTCCGTTCTAATTACAATTATACGGAGCCTACTCTTGCTGGAAATGCTGGTTTAGTTGCAGCTCTCGTGGCTCTATCTGGAGATAGAGATGTCGGAATTGATAAGAACACTTTATTCTCTGCAGTACCACCGATGTTTCCCACTCCACCACCTCCGCCAGCTCCTTGGAAACCATGATCTTTAATACGTCGTTTGTGCCTCCCTCATCTGAGTGTAGGTTCTTTATTTTTGATATTAGATTCTGAGACAAAGAAGCTAGATGAAACTTGGATGTGCACACCCTTGAACATAGATAGTAGTTTGGGCATTATTAGGACACTAGCAAGTGAAATTCTTCAAGAAATGCCCAATGCATGTCTGTTTTACTTTGATGTATCATCTACACACACTATGAATGTAACGTAACCAATCATGTATTCTTTGAACAGTGTAATCTCAATTTCCTCGGAACAAGTTCTCACATAATGTTCGTGTTTTGTGTTGTCAAAAATTATTCAAGTCAGGATAGTGCTGGAC
![]() ![]() | translated polypeptide sequence |
>Solyc01g102580.2.1 Endo-1 4-beta-glucanase (AHRD V1 ***- O04890_SOLLC); contains Interpro domain(s) IPR008928 Six-hairpin glycosidase-like IPR018221 Glycoside hydrolase, family 9, active site IPR001701 Glycoside hydrolase, family 9
MYGRDPWGGPLEIHTADSATDDDRSRNLQDFDRAAMSRSLDETQQSWLLGPTEQKKKKYVDLGCIIVSRKIFKWTVGCIIAAALLAGFITMIVKLVPRHKHHNPPPDNYTLALRKALMFFNAQKSGKLPKHNNVSWRGNSCLQDGKSDDSTMFKNLVGGYYDAGDAIKFNFPQSFALTMLSWSVIEYSAKYEAAGELAHVKDTIKWGTDYLLKTFNSSADTIDRIAAQVGKGDTTGGATDPNDHYCWVRPEDIDYARPVTECHGCSDLAAEMAAALASASIVFKDNKAYSQKLVHGARTLFKFSRDQRGRYSVGNEAETFYNSTGYWDEFIWGAAWLYYATGNSSYLQLATTPGIAKHAGAFWGGPDYGVLSWDNKLTGAQVLLSRMRLFLSPGYPYEEILRTFHNQTSIIMCSYLPIFTSFNRTKGGLIQLNHGRPQPLQYVVNAAFLATLFSDYLAAADTPGWYCGPNFYSTDVLRKFAETQIDYILGKNPRKMSYVVGFGNHYPKHVHHRGASIPKNKVKYNCKGGWKYRDSSKANPNTIVGAMVAGPDKHDGFRDVRSNYNYTEPTLAGNAGLVAALVALSGDRDVGIDKNTLFSAVPPMFPTPPPPPAPWKP*
MYGRDPWGGPLEIHTADSATDDDRSRNLQDFDRAAMSRSLDETQQSWLLGPTEQKKKKYVDLGCIIVSRKIFKWTVGCIIAAALLAGFITMIVKLVPRHKHHNPPPDNYTLALRKALMFFNAQKSGKLPKHNNVSWRGNSCLQDGKSDDSTMFKNLVGGYYDAGDAIKFNFPQSFALTMLSWSVIEYSAKYEAAGELAHVKDTIKWGTDYLLKTFNSSADTIDRIAAQVGKGDTTGGATDPNDHYCWVRPEDIDYARPVTECHGCSDLAAEMAAALASASIVFKDNKAYSQKLVHGARTLFKFSRDQRGRYSVGNEAETFYNSTGYWDEFIWGAAWLYYATGNSSYLQLATTPGIAKHAGAFWGGPDYGVLSWDNKLTGAQVLLSRMRLFLSPGYPYEEILRTFHNQTSIIMCSYLPIFTSFNRTKGGLIQLNHGRPQPLQYVVNAAFLATLFSDYLAAADTPGWYCGPNFYSTDVLRKFAETQIDYILGKNPRKMSYVVGFGNHYPKHVHHRGASIPKNKVKYNCKGGWKYRDSSKANPNTIVGAMVAGPDKHDGFRDVRSNYNYTEPTLAGNAGLVAALVALSGDRDVGIDKNTLFSAVPPMFPTPPPPPAPWKP*
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![]() ![]() | [Associate new unigene] |
Unigene ID:
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![]() ![]() | [Associate new genbank sequence] |
Other genome matches | None |
![]() ![]() | [Associate publication] [Matching publications] |
A membrane-anchored E-type endo-1,4-beta-glucanase is localized on Golgi and plasma membranes of higher plants.
Proceedings of the National Academy of Sciences of the United States of America (1997)
Show / hide abstract
Show / hide abstract
Endo-1,4-beta-D-glucanases (EGases, EC 3.2.1.4) are enzymes produced in bacteria, fungi, and plants that hydrolyze polysaccharides possessing a 1,4-beta-D-glucan backbone. All previously identified plant EGases are E-type endoglucanases that possess signal sequences for endoplasmic reticulum entry and are secreted to the cell wall. Here we report the characterization of a novel E-type plant EGase (tomato Cel3) with a hydrophobic transmembrane domain and structure typical of type II integral membrane proteins. The predicted protein is composed of 617 amino acids and possesses seven potential sites for N-glycosylation. Cel3 mRNA accumulates in young vegetative tissues with highest abundance during periods of rapid cell expansion, but is not hormonally regulated. Antibodies raised to a recombinant Cel3 protein specifically recognized three proteins, with apparent molecular masses of 93, 88, and 53 kDa, in tomato root microsomal membranes separated by sucrose density centrifugation. The 53-kDa protein comigrated in the gradient with plasma membrane markers, the 88-kDa protein with Golgi membrane markers, and the 93-kDa protein with markers for both Golgi and plasma membranes. EGase enzyme activity was also found in regions of the density gradient corresponding to both Golgi and plasma membranes, suggesting that Cel3 EGase resides in both membrane systems, the sites of cell wall polymer biosynthesis. The in vivo function of Cel3 is not known, but the only other known membrane-anchored EGase is present in Agrobacterium tumefaciens where it is required for cellulose biosynthesis.
Brummell, DA. Catala, C. Lashbrook, CC. Bennett, AB.
Proceedings of the National Academy of Sciences of the United States of America.
1997.
94(9).
4794-9.
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