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Tomato locus LeMA-1 putatve Mg-dependent ATPase 1
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] |
Accession name:
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Alleles (0) | None | [Add new Allele] |
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Associated loci - graphical view | None |
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![]() ![]() | unprocessed genomic sequence region underlying this gene |
>Solyc01g099760.2 SL2.50ch01:89907447..89912465
GGCATCGAAAAAGAAGAGAATATAAAGCTTTCCGACTATACAAGGTTACACAGATCGACTCCACTCCAATTTCATTTCGGAATCCCATACAAACAATCTTGTCGACGATGGCAACGCCGATGGCTGAGGATAGCAACTTCGAAGATGACCAGCTCCATGCTATGTCCACTGAAGATATTATTAGGGCTTCTCGCCTTCTTGACAATGAAATTCGAATCATAAAGGTTCCGATCTCTCTTAGCTTGATCTTTTATTGCAGTTATCATGAGTTATTTTGTGTTTGATGAATGTTTAGTTTTGTCTATTTGTGTCGATTTTGGGGTTTTACCTAGGAGATTGACTAATTGACTTGAATGGTGAATTATAGGAAGAGCTGCAGAGGACGAATCTAGAGTTGGATTCATTCAAGGAGAAGATAAAGGAGAACCAAGAAAAAATTAAGCTCAATAAGCAACTTCCTTACTTGGTCGGCAACATTGTTGAGGTGAGTAATTAGGTTTTCCTCAAATGAGCATCTCTCTTGCTTTGACGTCTATCTTTTAGCGAGTGATATTTACACTAAAGGAAAAAAGAATTTTATTTTTAGAAAATAAAGCTCAATAAGCAACTTCGTTATCCAGTTACTTGATCGGCAACAAGTTGAGATGAGTAATTAGGTTTTCATAGATGAGTATCTCTCTTGTTTTGACGCCTATTCTTAGCAAGAGCGTAGTGCAGAGAGGGCTTAGGACGTCTTTGAATATGGGGATTGACTACATTGAACCTGAAGCCTGCTGTGCTGCAAGTTTATCTATCACATCACTCTTTTTATAAGAGTAACCTTGTTGTAGGCAGAAGCTTTAGATTATGGGATAGTGACAAGTACCAATAGTGCTATTACAGAAGAAGTGCAGGTCTTTGGCTGAACAAAAGAAGGACGAGGAACTTGGGTAATTCATCAGCAATTGTTTCATCGAGGAGTACCGTAACATGCTAAATTTTGAATGCCAGAAGCTAGATGTTAAGAAATTACAAAAGGATAAAAAAGGAGGTTTCTGAGGGACTCAAAGGAGCAGCTCCTTTGTGATGATATCTCAAGTCTCAAGTATAAAAGAATTGTTAGATCGGTTCTTGCTCCTAGTCACTTTACATCTCTTAGTCATTTTACATCTCTTGTGCTACACGACAAAGGAATTTAGTGGTTTGCAACTTTTAGGATTTGTTTTGGTACCTGACTTGATATATATATATACACACACACATATACATGTAGTATATTTGTACTTATGTATCTTTTGCTTGGAATAATATAATGTCACGAAATAATTTCACGTACTATCGAAAAACTAACATTCTAAAGATGCATATATTGTTGTTGATTTTGTTTGTAGCATTTTCCTGTTCAATTAGTTGAAGGAGTTCACGGAAAAATTAATTGAAGTGTCAAATATATATATATATATATATACACACACACACACACATATATATACATATATATATTTGAAGTGTCAAATATATATATACACACACACACACATATACATATAGTATATTTGTACTTATGTATCTTTTGCTTGGAATTATATAATGTCACGAAATAATTTCACGTACTATCGACAAACTAACATTCTAAAGATGCATATATTGGTGTTGATTTTGTTTGTAGCATTTTCTTGTTCAATTAGTTGAAGAGTTCACGGAAAAATTAATTGAAGTGTCAATATAAGTATAAAAACTGCATTTTTTGGAGGGGATAGATGGGAACATATGTATCACTAGTCCATCCTCCTATTTCTGTTTCTTTTTCTTTTCTTTTCTTTTTTGTGAAGAAAGAAAATAGGACGATGATCAAGAGAAACATAAATTGGGCAGGACAGAAGCAAATGACCATTATGCTTCCTTTTCTTCAGTGCTTGAGTCTGTTTTTCAGTAGATCGAGCCATTGAGGTGTTATATTTTTTTACACATTGAACTGTGAGGATGCAAATTTTGAGTTTCTTTGTGTTTTTATTTTGGGGTACTAGGTTCATTGAAGTAGTAGTGGGGAAGTCTAGCTTTGAGGAACTCATTTATTTTCGGTCTTTTTCAGATTTTGGAAATGAATCCTGAAGAAGAAGCTGAGGAGGATGGTGCAAATATTGATCTCGACTCACAAAGGAAGGGCAAGTGTGTTGTACTGAAAACATCCACACGCCAGGTAAGGTGTCAAATTATTGGATTACATCATTTGCTTCTAGGTGTTTATTGTCGGTATTACTATCCAAAATTCCCTTCATCTATTTCTCTTGAATGGAATTGGTGATCTTGTGCTTTATCCTTCTACCACAGTTTTTTTGGGTTATACTCTGTTTAGATGCTAAAGTTCTTTCACTAAATGAATCCTTTCATTTCTATTTGTAGACAATTTTCTTGCCTGTTGTTGGTCTTGTTGATCCTGACAACTTAAAACCTGGTGATCTGGTTGGAGTAAATAAAGACAGTTATTTGATATTGGACACCTTGCCATCTGAATATGATTCTCGGGTAAAGGCAATGGAAGTTGATGAAAAGCCAACTGAAGACTACAATGATATTGGAGGCTTGGAGAAACAGATTCAAGAACTTGTCGAGGCAATTGTGCTGCCTATGACACACCAAGAACGGTTCCAGAAATTAGGTGTTCGTCCTCCAAAGGGAGTCCTTTTGTATGGGCCTCCTGGGACTGGGAAAACCCTGATGGCCAGAGCCTGTGCTGCACAAACAAATGCTACTTTTCTCAAGTTAGCGGGACCTCAGCTTGTGCAGGTAGATCATCTTCGACGTTTCATCTTATTGTGTTTAATTGCTCTAGATTTGTACGAAATTGAACTCTCTTTTGCTCTATGGTGGGAACCTAGTTTCCCTCTTTTCATTGTTCCTGGCAATTCTAACTAAGAGCTGCTGCAAAGTACACTCGTCTTTTTTAAGTAGATATATTAAAATTTTAATATGTAAGATGGGTCTCTACTTGAATTTGTATCAAACCAGAGGATTAATCTACAAAAAATGAAAAAAATGGTCCTTCATATCTGGGGGCAGGTCTAAAATCATCCGTCTTGTTTACCTCTGGACATGTTTAGTCCTTTAACTTTACCAAAAGGGAGCGTTGGTGGTCTCTGTTTAGTTTTAAGTATACAGCTCTAGCAGACCCTGTGTTAATCATCTTCGAAAGCGAAATTTTCGTTCTTGTTTTTAACTTATGATTGTGTGAGCAAGCATGTAATTGTTTATGATATTATTGTTTGGCTTTCTAAAGTTAGCAACCAACTACTGCATGGGAACTTTTACAATTTTGTTAAGTTGCAATCAAAGTAATTGACTCAAATATGCTGCTGATCAATGCCTGTTCTAACTTTAGATGTTCATTGGAGATGGAGCAAAACTTGTTCGTGATGCTTTCCAGCTGGCAAAAGAGAAATCACCTTGCATAATTTTCATTGATGAAATTGATGCTATAGGCACAAAGCGTTTTGATAGGTACTATTTCTTTGTTTTCCATTGCTTATATATGTGCTTAACCTTGCATGCTCATAATATGCTTATATATGTGCTTACAAGTCTTGGTGCATACTGGTCAAGGAGTAGCTTCTGCTTGCAAAAAAGAAACTAAGCACTATTACCTTCCTCATAAATGTGCATGCTAATTCTTCGTTACTGCATATGTTCTCTTGCAGCGAAGTTAGTGGGGATCGAGAGGTCCAACGAACTATGTTGGAGTTACTTAACCAGCTCGATGGTTTTAGCAGCGATGATCGGATTAAGGTTCTTTTCTACTTAAACCCATTATATATACATTTTTTTCTTACTTCGTGGTTTGGGTATTAATCACAATATTCCTTTCCAAAAATTTTACCTTGTTGGTATCTTGATTTTAGCTAACACACAACTGCAAAACCTAAAATCAAGTGATCTTTGGTTTCTGTTTTTTACATTTTCATGAATTGATTTGGTTTCTTTCCTTCACTTCAGGTGATAGCAGCAACAAACAGAGCTGATATTTTGGATCCTGCTTTGATGCGATCTGGTCGTTTGGATCGTAAAATCGAATTCCCCCACCCCACAGAGGAAGCCAGGGCTCGGATCCTGCAGGTGAGTATTCTGCCAAAACAATCATTTCATTGTCTTGCCTTGCCTTGTTAGCCAACACGAAATGAGTTCTTGAGAATTTCGCTTTAACTGAGGATTCTTTGCTGGAACTACTGCAGATCCATTCCAGAAAGATGAATGTCAACCCAGATGTTAACTTTGAAGAATTGGCTCGGTCGACAGATGATTTTAATGGGGCACAGTTGAAAGCTGTATGTGTTGAGGCAGGCATGCTAGCACTCCGTCGCGATGCCACTGAGGTCTCTATTCTTTATTCTGCTTCCTGACGGTTACATAATTTTTGAACTTATGAGTTGCAATGGGATTTAGACTTTTATTTTGGTTAATCAATAATCTGGATTATATATATATAAACCTAATTAAATTGAACTGGCCTGTTTAAGTCTGCGATGATCTCTAGTACCCATATGAATATGATTAAGTTTATCCTGTGAGAGCTAATCAACCGTGCCAATATAAAACCCCATCCTTTTTATGGTTGACAAGCTGGATAGCACTAATTTGGTCTCCAAACTCTTGCAGGTAACTCATGAAGACTTCAATGAAGGTATCATTCAAGTTCAAGCCAAGAAGAAAGCCAGCTTAAACTACTATGCCTAAACTTTCTGCAGGCCCCATGGCAAGCAGCTTTTAGCTTTTCGAAGTTGAAGATGGCTACTGCCTGCCACACCCCCGAACTCCTTTTAGTATCCCTCTTCTTTCTTTCTGTGCGGGTAGGGGGTGGGGATAGAAGCTTTGCACATTAGCGTCTGTTCTGTGGATTACTGATATCAAAGGAGGTGTCTGGTAGTATGTGGATCTCTTCTTGAATTTGTTCAGCTGTATACTTTCCTGCTGTATGACTTAATGACCTAGAATAGCCTTGTGCTATATTGGCAATCGAAACTTTATCGTTAATTTTGGACAATAGCT
GGCATCGAAAAAGAAGAGAATATAAAGCTTTCCGACTATACAAGGTTACACAGATCGACTCCACTCCAATTTCATTTCGGAATCCCATACAAACAATCTTGTCGACGATGGCAACGCCGATGGCTGAGGATAGCAACTTCGAAGATGACCAGCTCCATGCTATGTCCACTGAAGATATTATTAGGGCTTCTCGCCTTCTTGACAATGAAATTCGAATCATAAAGGTTCCGATCTCTCTTAGCTTGATCTTTTATTGCAGTTATCATGAGTTATTTTGTGTTTGATGAATGTTTAGTTTTGTCTATTTGTGTCGATTTTGGGGTTTTACCTAGGAGATTGACTAATTGACTTGAATGGTGAATTATAGGAAGAGCTGCAGAGGACGAATCTAGAGTTGGATTCATTCAAGGAGAAGATAAAGGAGAACCAAGAAAAAATTAAGCTCAATAAGCAACTTCCTTACTTGGTCGGCAACATTGTTGAGGTGAGTAATTAGGTTTTCCTCAAATGAGCATCTCTCTTGCTTTGACGTCTATCTTTTAGCGAGTGATATTTACACTAAAGGAAAAAAGAATTTTATTTTTAGAAAATAAAGCTCAATAAGCAACTTCGTTATCCAGTTACTTGATCGGCAACAAGTTGAGATGAGTAATTAGGTTTTCATAGATGAGTATCTCTCTTGTTTTGACGCCTATTCTTAGCAAGAGCGTAGTGCAGAGAGGGCTTAGGACGTCTTTGAATATGGGGATTGACTACATTGAACCTGAAGCCTGCTGTGCTGCAAGTTTATCTATCACATCACTCTTTTTATAAGAGTAACCTTGTTGTAGGCAGAAGCTTTAGATTATGGGATAGTGACAAGTACCAATAGTGCTATTACAGAAGAAGTGCAGGTCTTTGGCTGAACAAAAGAAGGACGAGGAACTTGGGTAATTCATCAGCAATTGTTTCATCGAGGAGTACCGTAACATGCTAAATTTTGAATGCCAGAAGCTAGATGTTAAGAAATTACAAAAGGATAAAAAAGGAGGTTTCTGAGGGACTCAAAGGAGCAGCTCCTTTGTGATGATATCTCAAGTCTCAAGTATAAAAGAATTGTTAGATCGGTTCTTGCTCCTAGTCACTTTACATCTCTTAGTCATTTTACATCTCTTGTGCTACACGACAAAGGAATTTAGTGGTTTGCAACTTTTAGGATTTGTTTTGGTACCTGACTTGATATATATATATACACACACACATATACATGTAGTATATTTGTACTTATGTATCTTTTGCTTGGAATAATATAATGTCACGAAATAATTTCACGTACTATCGAAAAACTAACATTCTAAAGATGCATATATTGTTGTTGATTTTGTTTGTAGCATTTTCCTGTTCAATTAGTTGAAGGAGTTCACGGAAAAATTAATTGAAGTGTCAAATATATATATATATATATATACACACACACACACACATATATATACATATATATATTTGAAGTGTCAAATATATATATACACACACACACACATATACATATAGTATATTTGTACTTATGTATCTTTTGCTTGGAATTATATAATGTCACGAAATAATTTCACGTACTATCGACAAACTAACATTCTAAAGATGCATATATTGGTGTTGATTTTGTTTGTAGCATTTTCTTGTTCAATTAGTTGAAGAGTTCACGGAAAAATTAATTGAAGTGTCAATATAAGTATAAAAACTGCATTTTTTGGAGGGGATAGATGGGAACATATGTATCACTAGTCCATCCTCCTATTTCTGTTTCTTTTTCTTTTCTTTTCTTTTTTGTGAAGAAAGAAAATAGGACGATGATCAAGAGAAACATAAATTGGGCAGGACAGAAGCAAATGACCATTATGCTTCCTTTTCTTCAGTGCTTGAGTCTGTTTTTCAGTAGATCGAGCCATTGAGGTGTTATATTTTTTTACACATTGAACTGTGAGGATGCAAATTTTGAGTTTCTTTGTGTTTTTATTTTGGGGTACTAGGTTCATTGAAGTAGTAGTGGGGAAGTCTAGCTTTGAGGAACTCATTTATTTTCGGTCTTTTTCAGATTTTGGAAATGAATCCTGAAGAAGAAGCTGAGGAGGATGGTGCAAATATTGATCTCGACTCACAAAGGAAGGGCAAGTGTGTTGTACTGAAAACATCCACACGCCAGGTAAGGTGTCAAATTATTGGATTACATCATTTGCTTCTAGGTGTTTATTGTCGGTATTACTATCCAAAATTCCCTTCATCTATTTCTCTTGAATGGAATTGGTGATCTTGTGCTTTATCCTTCTACCACAGTTTTTTTGGGTTATACTCTGTTTAGATGCTAAAGTTCTTTCACTAAATGAATCCTTTCATTTCTATTTGTAGACAATTTTCTTGCCTGTTGTTGGTCTTGTTGATCCTGACAACTTAAAACCTGGTGATCTGGTTGGAGTAAATAAAGACAGTTATTTGATATTGGACACCTTGCCATCTGAATATGATTCTCGGGTAAAGGCAATGGAAGTTGATGAAAAGCCAACTGAAGACTACAATGATATTGGAGGCTTGGAGAAACAGATTCAAGAACTTGTCGAGGCAATTGTGCTGCCTATGACACACCAAGAACGGTTCCAGAAATTAGGTGTTCGTCCTCCAAAGGGAGTCCTTTTGTATGGGCCTCCTGGGACTGGGAAAACCCTGATGGCCAGAGCCTGTGCTGCACAAACAAATGCTACTTTTCTCAAGTTAGCGGGACCTCAGCTTGTGCAGGTAGATCATCTTCGACGTTTCATCTTATTGTGTTTAATTGCTCTAGATTTGTACGAAATTGAACTCTCTTTTGCTCTATGGTGGGAACCTAGTTTCCCTCTTTTCATTGTTCCTGGCAATTCTAACTAAGAGCTGCTGCAAAGTACACTCGTCTTTTTTAAGTAGATATATTAAAATTTTAATATGTAAGATGGGTCTCTACTTGAATTTGTATCAAACCAGAGGATTAATCTACAAAAAATGAAAAAAATGGTCCTTCATATCTGGGGGCAGGTCTAAAATCATCCGTCTTGTTTACCTCTGGACATGTTTAGTCCTTTAACTTTACCAAAAGGGAGCGTTGGTGGTCTCTGTTTAGTTTTAAGTATACAGCTCTAGCAGACCCTGTGTTAATCATCTTCGAAAGCGAAATTTTCGTTCTTGTTTTTAACTTATGATTGTGTGAGCAAGCATGTAATTGTTTATGATATTATTGTTTGGCTTTCTAAAGTTAGCAACCAACTACTGCATGGGAACTTTTACAATTTTGTTAAGTTGCAATCAAAGTAATTGACTCAAATATGCTGCTGATCAATGCCTGTTCTAACTTTAGATGTTCATTGGAGATGGAGCAAAACTTGTTCGTGATGCTTTCCAGCTGGCAAAAGAGAAATCACCTTGCATAATTTTCATTGATGAAATTGATGCTATAGGCACAAAGCGTTTTGATAGGTACTATTTCTTTGTTTTCCATTGCTTATATATGTGCTTAACCTTGCATGCTCATAATATGCTTATATATGTGCTTACAAGTCTTGGTGCATACTGGTCAAGGAGTAGCTTCTGCTTGCAAAAAAGAAACTAAGCACTATTACCTTCCTCATAAATGTGCATGCTAATTCTTCGTTACTGCATATGTTCTCTTGCAGCGAAGTTAGTGGGGATCGAGAGGTCCAACGAACTATGTTGGAGTTACTTAACCAGCTCGATGGTTTTAGCAGCGATGATCGGATTAAGGTTCTTTTCTACTTAAACCCATTATATATACATTTTTTTCTTACTTCGTGGTTTGGGTATTAATCACAATATTCCTTTCCAAAAATTTTACCTTGTTGGTATCTTGATTTTAGCTAACACACAACTGCAAAACCTAAAATCAAGTGATCTTTGGTTTCTGTTTTTTACATTTTCATGAATTGATTTGGTTTCTTTCCTTCACTTCAGGTGATAGCAGCAACAAACAGAGCTGATATTTTGGATCCTGCTTTGATGCGATCTGGTCGTTTGGATCGTAAAATCGAATTCCCCCACCCCACAGAGGAAGCCAGGGCTCGGATCCTGCAGGTGAGTATTCTGCCAAAACAATCATTTCATTGTCTTGCCTTGCCTTGTTAGCCAACACGAAATGAGTTCTTGAGAATTTCGCTTTAACTGAGGATTCTTTGCTGGAACTACTGCAGATCCATTCCAGAAAGATGAATGTCAACCCAGATGTTAACTTTGAAGAATTGGCTCGGTCGACAGATGATTTTAATGGGGCACAGTTGAAAGCTGTATGTGTTGAGGCAGGCATGCTAGCACTCCGTCGCGATGCCACTGAGGTCTCTATTCTTTATTCTGCTTCCTGACGGTTACATAATTTTTGAACTTATGAGTTGCAATGGGATTTAGACTTTTATTTTGGTTAATCAATAATCTGGATTATATATATATAAACCTAATTAAATTGAACTGGCCTGTTTAAGTCTGCGATGATCTCTAGTACCCATATGAATATGATTAAGTTTATCCTGTGAGAGCTAATCAACCGTGCCAATATAAAACCCCATCCTTTTTATGGTTGACAAGCTGGATAGCACTAATTTGGTCTCCAAACTCTTGCAGGTAACTCATGAAGACTTCAATGAAGGTATCATTCAAGTTCAAGCCAAGAAGAAAGCCAGCTTAAACTACTATGCCTAAACTTTCTGCAGGCCCCATGGCAAGCAGCTTTTAGCTTTTCGAAGTTGAAGATGGCTACTGCCTGCCACACCCCCGAACTCCTTTTAGTATCCCTCTTCTTTCTTTCTGTGCGGGTAGGGGGTGGGGATAGAAGCTTTGCACATTAGCGTCTGTTCTGTGGATTACTGATATCAAAGGAGGTGTCTGGTAGTATGTGGATCTCTTCTTGAATTTGTTCAGCTGTATACTTTCCTGCTGTATGACTTAATGACCTAGAATAGCCTTGTGCTATATTGGCAATCGAAACTTTATCGTTAATTTTGGACAATAGCT
Download sequence region |
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![]() ![]() | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>Solyc01g099760.2.1 26S protease regulatory subunit 6A homolog (AHRD V1 ***- PRS6A_SOLLC); contains Interpro domain(s) IPR005937 26S proteasome subunit P45
GGCATCGAAAAAGAAGAGAATATAAAGCTTTCCGACTATACAAGGTTACACAGATCGACTCCACTCCAATTTCATTTCGGAATCCCATACAAACAATCTTGTCGACGATGGCAACGCCGATGGCTGAGGATAGCAACTTCGAAGATGACCAGCTCCATGCTATGTCCACTGAAGATATTATTAGGGCTTCTCGCCTTCTTGACAATGAAATTCGAATCATAAAGGAAGAGCTGCAGAGGACGAATCTAGAGTTGGATTCATTCAAGGAGAAGATAAAGGAGAACCAAGAAAAAATTAAGCTCAATAAGCAACTTCCTTACTTGGTCGGCAACATTGTTGAGATTTTGGAAATGAATCCTGAAGAAGAAGCTGAGGAGGATGGTGCAAATATTGATCTCGACTCACAAAGGAAGGGCAAGTGTGTTGTACTGAAAACATCCACACGCCAGACAATTTTCTTGCCTGTTGTTGGTCTTGTTGATCCTGACAACTTAAAACCTGGTGATCTGGTTGGAGTAAATAAAGACAGTTATTTGATATTGGACACCTTGCCATCTGAATATGATTCTCGGGTAAAGGCAATGGAAGTTGATGAAAAGCCAACTGAAGACTACAATGATATTGGAGGCTTGGAGAAACAGATTCAAGAACTTGTCGAGGCAATTGTGCTGCCTATGACACACCAAGAACGGTTCCAGAAATTAGGTGTTCGTCCTCCAAAGGGAGTCCTTTTGTATGGGCCTCCTGGGACTGGGAAAACCCTGATGGCCAGAGCCTGTGCTGCACAAACAAATGCTACTTTTCTCAAGTTAGCGGGACCTCAGCTTGTGCAGATGTTCATTGGAGATGGAGCAAAACTTGTTCGTGATGCTTTCCAGCTGGCAAAAGAGAAATCACCTTGCATAATTTTCATTGATGAAATTGATGCTATAGGCACAAAGCGTTTTGATAGCGAAGTTAGTGGGGATCGAGAGGTCCAACGAACTATGTTGGAGTTACTTAACCAGCTCGATGGTTTTAGCAGCGATGATCGGATTAAGGTGATAGCAGCAACAAACAGAGCTGATATTTTGGATCCTGCTTTGATGCGATCTGGTCGTTTGGATCGTAAAATCGAATTCCCCCACCCCACAGAGGAAGCCAGGGCTCGGATCCTGCAGATCCATTCCAGAAAGATGAATGTCAACCCAGATGTTAACTTTGAAGAATTGGCTCGGTCGACAGATGATTTTAATGGGGCACAGTTGAAAGCTGTATGTGTTGAGGCAGGCATGCTAGCACTCCGTCGCGATGCCACTGAGGTAACTCATGAAGACTTCAATGAAGGTATCATTCAAGTTCAAGCCAAGAAGAAAGCCAGCTTAAACTACTATGCCTAAACTTTCTGCAGGCCCCATGGCAAGCAGCTTTTAGCTTTTCGAAGTTGAAGATGGCTACTGCCTGCCACACCCCCGAACTCCTTTTAGTATCCCTCTTCTTTCTTTCTGTGCGGGTAGGGGGTGGGGATAGAAGCTTTGCACATTAGCGTCTGTTCTGTGGATTACTGATATCAAAGGAGGTGTCTGGTAGTATGTGGATCTCTTCTTGAATTTGTTCAGCTGTATACTTTCCTGCTGTATGACTTAATGACCTAGAATAGCCTTGTGCTATATTGGCAATCGAAACTTTATCGTTAATTTTGGACAATAGCT
GGCATCGAAAAAGAAGAGAATATAAAGCTTTCCGACTATACAAGGTTACACAGATCGACTCCACTCCAATTTCATTTCGGAATCCCATACAAACAATCTTGTCGACGATGGCAACGCCGATGGCTGAGGATAGCAACTTCGAAGATGACCAGCTCCATGCTATGTCCACTGAAGATATTATTAGGGCTTCTCGCCTTCTTGACAATGAAATTCGAATCATAAAGGAAGAGCTGCAGAGGACGAATCTAGAGTTGGATTCATTCAAGGAGAAGATAAAGGAGAACCAAGAAAAAATTAAGCTCAATAAGCAACTTCCTTACTTGGTCGGCAACATTGTTGAGATTTTGGAAATGAATCCTGAAGAAGAAGCTGAGGAGGATGGTGCAAATATTGATCTCGACTCACAAAGGAAGGGCAAGTGTGTTGTACTGAAAACATCCACACGCCAGACAATTTTCTTGCCTGTTGTTGGTCTTGTTGATCCTGACAACTTAAAACCTGGTGATCTGGTTGGAGTAAATAAAGACAGTTATTTGATATTGGACACCTTGCCATCTGAATATGATTCTCGGGTAAAGGCAATGGAAGTTGATGAAAAGCCAACTGAAGACTACAATGATATTGGAGGCTTGGAGAAACAGATTCAAGAACTTGTCGAGGCAATTGTGCTGCCTATGACACACCAAGAACGGTTCCAGAAATTAGGTGTTCGTCCTCCAAAGGGAGTCCTTTTGTATGGGCCTCCTGGGACTGGGAAAACCCTGATGGCCAGAGCCTGTGCTGCACAAACAAATGCTACTTTTCTCAAGTTAGCGGGACCTCAGCTTGTGCAGATGTTCATTGGAGATGGAGCAAAACTTGTTCGTGATGCTTTCCAGCTGGCAAAAGAGAAATCACCTTGCATAATTTTCATTGATGAAATTGATGCTATAGGCACAAAGCGTTTTGATAGCGAAGTTAGTGGGGATCGAGAGGTCCAACGAACTATGTTGGAGTTACTTAACCAGCTCGATGGTTTTAGCAGCGATGATCGGATTAAGGTGATAGCAGCAACAAACAGAGCTGATATTTTGGATCCTGCTTTGATGCGATCTGGTCGTTTGGATCGTAAAATCGAATTCCCCCACCCCACAGAGGAAGCCAGGGCTCGGATCCTGCAGATCCATTCCAGAAAGATGAATGTCAACCCAGATGTTAACTTTGAAGAATTGGCTCGGTCGACAGATGATTTTAATGGGGCACAGTTGAAAGCTGTATGTGTTGAGGCAGGCATGCTAGCACTCCGTCGCGATGCCACTGAGGTAACTCATGAAGACTTCAATGAAGGTATCATTCAAGTTCAAGCCAAGAAGAAAGCCAGCTTAAACTACTATGCCTAAACTTTCTGCAGGCCCCATGGCAAGCAGCTTTTAGCTTTTCGAAGTTGAAGATGGCTACTGCCTGCCACACCCCCGAACTCCTTTTAGTATCCCTCTTCTTTCTTTCTGTGCGGGTAGGGGGTGGGGATAGAAGCTTTGCACATTAGCGTCTGTTCTGTGGATTACTGATATCAAAGGAGGTGTCTGGTAGTATGTGGATCTCTTCTTGAATTTGTTCAGCTGTATACTTTCCTGCTGTATGACTTAATGACCTAGAATAGCCTTGTGCTATATTGGCAATCGAAACTTTATCGTTAATTTTGGACAATAGCT
![]() ![]() | translated polypeptide sequence |
>Solyc01g099760.2.1 26S protease regulatory subunit 6A homolog (AHRD V1 ***- PRS6A_SOLLC); contains Interpro domain(s) IPR005937 26S proteasome subunit P45
MATPMAEDSNFEDDQLHAMSTEDIIRASRLLDNEIRIIKEELQRTNLELDSFKEKIKENQEKIKLNKQLPYLVGNIVEILEMNPEEEAEEDGANIDLDSQRKGKCVVLKTSTRQTIFLPVVGLVDPDNLKPGDLVGVNKDSYLILDTLPSEYDSRVKAMEVDEKPTEDYNDIGGLEKQIQELVEAIVLPMTHQERFQKLGVRPPKGVLLYGPPGTGKTLMARACAAQTNATFLKLAGPQLVQMFIGDGAKLVRDAFQLAKEKSPCIIFIDEIDAIGTKRFDSEVSGDREVQRTMLELLNQLDGFSSDDRIKVIAATNRADILDPALMRSGRLDRKIEFPHPTEEARARILQIHSRKMNVNPDVNFEELARSTDDFNGAQLKAVCVEAGMLALRRDATEVTHEDFNEGIIQVQAKKKASLNYYA*
MATPMAEDSNFEDDQLHAMSTEDIIRASRLLDNEIRIIKEELQRTNLELDSFKEKIKENQEKIKLNKQLPYLVGNIVEILEMNPEEEAEEDGANIDLDSQRKGKCVVLKTSTRQTIFLPVVGLVDPDNLKPGDLVGVNKDSYLILDTLPSEYDSRVKAMEVDEKPTEDYNDIGGLEKQIQELVEAIVLPMTHQERFQKLGVRPPKGVLLYGPPGTGKTLMARACAAQTNATFLKLAGPQLVQMFIGDGAKLVRDAFQLAKEKSPCIIFIDEIDAIGTKRFDSEVSGDREVQRTMLELLNQLDGFSSDDRIKVIAATNRADILDPALMRSGRLDRKIEFPHPTEEARARILQIHSRKMNVNPDVNFEELARSTDDFNGAQLKAVCVEAGMLALRRDATEVTHEDFNEGIIQVQAKKKASLNYYA*
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![]() ![]() | [Associate new unigene] |
Unigene ID:
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![]() ![]() | [Associate new genbank sequence] |
X74426 L.esculentum LeMA-1 mRNA for putatve Mg-dependent ATPase 1.
Other genome matches | None |
![]() ![]() | [Associate publication] [Matching publications] |
Structure and expression of LeMA-1, a tomato protein belonging to the SEC18-PAS1-CDC48-TBP-1 protein family of putative Mg(2+)-dependent ATPases.
Plant molecular biology (1995)
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Show / hide abstract
cDNA clones of a tomato protein, called Lycopersicum esculentum putative Mg(2+)-dependent ATPase (LeMA-1), were isolated from a cDNA library. Sequence comparison of the tomato protein with other genes in the database revealed that the protein is highly homologous to a human protein called TBP-1 and a yeast Tat-binding-analogue protein YTA1A. All three proteins belong to the recently discovered protein family of putative Mg(2+)-dependent ATPases and form within this family a subgroup of proteins involved in controlled protein degradation and possibly also in transcriptional regulation. Expression of the mRNA of LeMA-1 could be monitored in several plant tissues. LeMA-1 is the first member of this subgroup of proteins isolated from plants.
Prombona, A. Tabler, M. Providaki, M. Tsagris, M.
Plant molecular biology.
1995.
27(6).
1109-18.
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- Genomic details
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