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Tomato locus coiled-coil protein
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 |
>Solyc11g012860.1 SL2.50ch11:5653623..5649548 (sequence from reverse strand)
ATGGAAAAGAGGAAATGGTTGTGGAAAAGGAGACCTTCCGATAAGAGCCCTGGTGAAACGGAGAGTTCTGGTTCTTTATCTTCATATTCGGAGAGATACTCCGATGAGCAGGTAAAAGGCTTAAAGAGAAAGAGTTTTTCTTTTTTTGGTCTTTCAGTTAATTGTGCTGATATGGAATAATCTTATATCACATGGTTGGAAAAGATAAGCTGCTGTTTTTTAGAAACCTCACATTTAATCTTCACTTGCACCCCGGGTTTTAAATTGATAATGGTTGAGGTAAATATGCAGCTCAAATACTGACAGCTGAAAGTTTTTCGTGTCCGAGTACTGTATTTTCTTTCTACTTGCATATATATATATATATATGTACCAGTTTTGATTTTTGAAATATTTGGAAGGTCATTGGTCTTTATTGATCATCATCAGGTTTTCGCTATTGGTTTAGTTATAGAAATGACTAGCTTATAGTTATTGTAGACAAATAATCACAATAGATAGCCCCCCATATTGCTGAACCACCAGACTGCCCGTCATCATCTAGAGAACGTCCCTTCTCCGTGGTTTATCCAATTTCTACATTTAAATTGAGCCATAATTCTTCTCCCCTGTACTTCTTAACATTTATCTATTGTAAATGTTTACCTAAATGTTGGATTAGTATATAAATATTGTTATTTTATTGTCGTTTTTTCCTTTCAATCCTGCTTTGGTTACATTTTTTTGAGCTGAGGATCTATTAGAAATAACCTCTCTACCCCCACAAAGGTAGTGGTAAGGTCTGCATACATCCTACCCTACTTGTGGGGCTACACTTGTTCTCATTGAATTAGTATAAAGTTCCAGTTTTTAAGGTGCTTGGGAAGAATTATGTTTCATGACTTTATTAAAGAACACTAAGTTCCTCATAGAAGGGATTTATGATATCTATAAAACTAAATTGGTATAATACTAATTTGTTGTTTAATGATTCTGAGGTGATCTTTTTAAGAGTTTAAGGTTTTATTAAATGAAAAGTCTGCAGTCCAAGTTTGTAGCTAATTCACAAATCTCAGATCTATATGAGGCGAAAAGCAACATAAAAGAGATTGTTGTGATAGAATTTTGAGTATGTCAAACAGTTTATTTATCTGCAGAGCATCTCCTGAAATAGCAAATGTAAATTGCAGAGGCCGATTGAATAACAATTTATATGTGCAGCTAAAAACAGTAGTGGCTGAAGATTGACCTCTAGTTTGGTGCCTTGATATGCTTTCCAGTATAAAGATCTGTGCTCAGGTTAGATGGTAGCAGATGATGCAAGATCTTGGTTTGGAAAGAAAGTGCCAAAAGCTTTCATAAGTGATGTTTCTTACCGTAGTCAGCAGTTTCGTCCTGATAAGGAATATACTTTCACCCTTGACCCTTTTTTTTTGGTTGAGATTAGATGCTCTCAGTAAGTGTAAAGATGTTCCTATAGCTTTGTTAAAAGAAATATTGTCCTTATCACTGCACCATCCATTCCTTCTTTGTAGGGTCATTTGTCTCATATTGAAAATCATTCAATAGAAATCTTACTGACTAGCTGCCAGAGAACCATCTCTGTGCAATCTAGAACATTTTCTTGTCAAGAAAAGCTTTAACATTTTTAGCTATTGTATTACTTCTTTTACGAGAAAGGATCACCTGTTCTTTTCATTGAAGCAGGATGCACTAAAAGAATTTCCTGACCATGACAAACAGTCACCAGAGGTTACCTCAAAAGCTGCATTCGTTGATGATGAATCCAAGGAAAGCTTGAGATGCTTGACAGAGAAATTATCAGCTGCTCTTGTTAATGTTAGCGCCAAAGAAGACTTAGTTAAGCAGCATGCTAAAGTTGCCGAAGAAGCTATCGCAGGTATCTTCTTCAACTCCTTTCTTCCTCTGTTGTGATTCCAATCTAATTAAGGCATTTGGACATTAAAATGTGATATTTGAAAAATAGAAGTTGTAAAAAGGGTATTTGGAAGTTGTAGTTGTGTGTTGGACATTCATTTAACTTGAAATAAATAGAAGCTCTGTGACCGGAAAAAAAGTTCACTTGAACTGTATTTCATTGGAAAAAAAGGAAAAAATAAATGGGAGCTAAGATTTGTCTCTTGGCTGTCTCTTCATGCACACCCCTTTTTCTGGTATGTGTTTCACACGCTGAAACAATTTTGTGGAATATGCCTCTTCCATCACCTTCCAAAGAAAGTGATTTTTGGTCTGATAATTTCTTGTATACTTTTTATCATCTTGGTAGGTTGGGAAAAGGCAGAAAATGAAGTTGCAGTTCTAAAGCAGCAACTAGATGCGGCTGTGCAGCAAAACTTGACTTTGGAAGTTCGTGTCAGTCATCTCGACGGTGCACTCAAGGAATGTGTCAGGCAGTTGAGACAAGCAAGAGATGAGCAAGAGAAAATGATTCAAGACGCTATGGCAGAAAAAAATGAAATGGAATCTGAAAAAACTGCACTTGAGAAACAGCTACTTAAGCTCCAGACACAAGTGGAGGCTGGTAAAGCTGAAATGCCTACTTCTACTGATCCTGATATCCTTGTCAGGCTTAAGTATCTAGAGAAAGAGAATGCAGCTCTCAAAATTGAACTTGTCTCTTGTTCAGAAGTGTTGGAAATTAGGACTATTGAGAGGGATTTGAGTACTCAAGCAGCAGAAACTGCCAGCAAGCAGCAGCTGGAAAGCATAAAAAAACTGACCAAACTTGAAGTTGAGTGTCGAAAGCTACAGGCCATGGCTCGCAAATCATCCCCATTCAATGATCAACGCTCCTCTGCTGTTTCATCTTTCTATGTGGACTCTGTCACCGATAGCCAGTCTGACAGTGGAGAGCGGTTAAACACAGTTGACAATGATGCCCTCAAAATGAGTAAACTGGAAACAAGAGAATATGAACCAAGTTGCTCAAATTCATGGGCTTCAGCACTCATTGCTGAGCTTGATCAATTTAAGAATGAAAAGGCCATGCCTAAAACTCTTGCTGCCTGTTCTATAGAAATCGATATGATGGATGATTTCTTGGAGATGGAGCAACTTGCTGCATTATCTGAAACTGCAAACAAGACACCTTCAGTAACTTCTGATGCTGTTCCTCATGATTCTCCCAATATTGAGAACCCTTTGGCAGCAGAATACAATTCCATTTCACAAAGGGTGGTTGAATTAGAACAAAAGCTGGAGAAGATTGAAGCAGAGAAAGCTGAACTGGAGAATGCTTTCAACGAGAGTCAAGATGCCCTTAAAGTGTCCTCTTTGCAGCTTAAGGAAACTCAAACCAGGTTGGAAGGGCTGCAGAAGGAGCTAGATGTGGTAAATGAGTCAAAAGAGTTGCTCGAGTTTCAACTCTATGGCATGGAGGTAGAAGCACGGACAATGTCTGTAAATATTGATTCTTTGAAGACGGAAGTTGAAAAAGAAAAATCTTTGTCATCAGAAATGGAAGCTAAATGTCATGAATTGGAAAACGACCTTAGAAAAAAATCCCAGGAAGCTGAAGCTCAGCAAACTTCTGGTTCAAATAGTGAATTGAAAATAAAACAGGTAGCTCTTTCTCTCAACCTATCTTCCGTTGTTTGTCATTTATGTATAGACACATCGATGTGAAGAAAAGAAGATGAAAATTAATAATGGTATGTAAACTTTCTCACTAGCAGGAGGATTTAGCCGTGGCTGCTGACAAGCTTGCAGAATGCCAGAAAACAATTGCATCCCTTGGGAAACAGCTACAATCCCTAGCTACTCTAGAAGATTTCCTGACAGACACTGCAAATCTTCCTGGTGGAGGAGCAGTTGTTGCTAAAGCAGGAGGAGAACTATGGAAGTTGCATGTAAACGAGACATTTACCCCAAAACGTGATTCTGATCCTACCAAGGTTGAGGAGAATGTGAGTCATTCTACAAACGAAAATGAAGGGGAATCTCCAGCATCTTCATCTTCATCATCTACTTCATCCACTACTCAGGCTAGCACTGGCAAAAGCAAAAATGGCTTTGGGAAGTTGTTTTCTCGGAGTAAGAGTGGAGTTCCAACTCTAAAAGTTATCGAGGATAAATAA
ATGGAAAAGAGGAAATGGTTGTGGAAAAGGAGACCTTCCGATAAGAGCCCTGGTGAAACGGAGAGTTCTGGTTCTTTATCTTCATATTCGGAGAGATACTCCGATGAGCAGGTAAAAGGCTTAAAGAGAAAGAGTTTTTCTTTTTTTGGTCTTTCAGTTAATTGTGCTGATATGGAATAATCTTATATCACATGGTTGGAAAAGATAAGCTGCTGTTTTTTAGAAACCTCACATTTAATCTTCACTTGCACCCCGGGTTTTAAATTGATAATGGTTGAGGTAAATATGCAGCTCAAATACTGACAGCTGAAAGTTTTTCGTGTCCGAGTACTGTATTTTCTTTCTACTTGCATATATATATATATATATGTACCAGTTTTGATTTTTGAAATATTTGGAAGGTCATTGGTCTTTATTGATCATCATCAGGTTTTCGCTATTGGTTTAGTTATAGAAATGACTAGCTTATAGTTATTGTAGACAAATAATCACAATAGATAGCCCCCCATATTGCTGAACCACCAGACTGCCCGTCATCATCTAGAGAACGTCCCTTCTCCGTGGTTTATCCAATTTCTACATTTAAATTGAGCCATAATTCTTCTCCCCTGTACTTCTTAACATTTATCTATTGTAAATGTTTACCTAAATGTTGGATTAGTATATAAATATTGTTATTTTATTGTCGTTTTTTCCTTTCAATCCTGCTTTGGTTACATTTTTTTGAGCTGAGGATCTATTAGAAATAACCTCTCTACCCCCACAAAGGTAGTGGTAAGGTCTGCATACATCCTACCCTACTTGTGGGGCTACACTTGTTCTCATTGAATTAGTATAAAGTTCCAGTTTTTAAGGTGCTTGGGAAGAATTATGTTTCATGACTTTATTAAAGAACACTAAGTTCCTCATAGAAGGGATTTATGATATCTATAAAACTAAATTGGTATAATACTAATTTGTTGTTTAATGATTCTGAGGTGATCTTTTTAAGAGTTTAAGGTTTTATTAAATGAAAAGTCTGCAGTCCAAGTTTGTAGCTAATTCACAAATCTCAGATCTATATGAGGCGAAAAGCAACATAAAAGAGATTGTTGTGATAGAATTTTGAGTATGTCAAACAGTTTATTTATCTGCAGAGCATCTCCTGAAATAGCAAATGTAAATTGCAGAGGCCGATTGAATAACAATTTATATGTGCAGCTAAAAACAGTAGTGGCTGAAGATTGACCTCTAGTTTGGTGCCTTGATATGCTTTCCAGTATAAAGATCTGTGCTCAGGTTAGATGGTAGCAGATGATGCAAGATCTTGGTTTGGAAAGAAAGTGCCAAAAGCTTTCATAAGTGATGTTTCTTACCGTAGTCAGCAGTTTCGTCCTGATAAGGAATATACTTTCACCCTTGACCCTTTTTTTTTGGTTGAGATTAGATGCTCTCAGTAAGTGTAAAGATGTTCCTATAGCTTTGTTAAAAGAAATATTGTCCTTATCACTGCACCATCCATTCCTTCTTTGTAGGGTCATTTGTCTCATATTGAAAATCATTCAATAGAAATCTTACTGACTAGCTGCCAGAGAACCATCTCTGTGCAATCTAGAACATTTTCTTGTCAAGAAAAGCTTTAACATTTTTAGCTATTGTATTACTTCTTTTACGAGAAAGGATCACCTGTTCTTTTCATTGAAGCAGGATGCACTAAAAGAATTTCCTGACCATGACAAACAGTCACCAGAGGTTACCTCAAAAGCTGCATTCGTTGATGATGAATCCAAGGAAAGCTTGAGATGCTTGACAGAGAAATTATCAGCTGCTCTTGTTAATGTTAGCGCCAAAGAAGACTTAGTTAAGCAGCATGCTAAAGTTGCCGAAGAAGCTATCGCAGGTATCTTCTTCAACTCCTTTCTTCCTCTGTTGTGATTCCAATCTAATTAAGGCATTTGGACATTAAAATGTGATATTTGAAAAATAGAAGTTGTAAAAAGGGTATTTGGAAGTTGTAGTTGTGTGTTGGACATTCATTTAACTTGAAATAAATAGAAGCTCTGTGACCGGAAAAAAAGTTCACTTGAACTGTATTTCATTGGAAAAAAAGGAAAAAATAAATGGGAGCTAAGATTTGTCTCTTGGCTGTCTCTTCATGCACACCCCTTTTTCTGGTATGTGTTTCACACGCTGAAACAATTTTGTGGAATATGCCTCTTCCATCACCTTCCAAAGAAAGTGATTTTTGGTCTGATAATTTCTTGTATACTTTTTATCATCTTGGTAGGTTGGGAAAAGGCAGAAAATGAAGTTGCAGTTCTAAAGCAGCAACTAGATGCGGCTGTGCAGCAAAACTTGACTTTGGAAGTTCGTGTCAGTCATCTCGACGGTGCACTCAAGGAATGTGTCAGGCAGTTGAGACAAGCAAGAGATGAGCAAGAGAAAATGATTCAAGACGCTATGGCAGAAAAAAATGAAATGGAATCTGAAAAAACTGCACTTGAGAAACAGCTACTTAAGCTCCAGACACAAGTGGAGGCTGGTAAAGCTGAAATGCCTACTTCTACTGATCCTGATATCCTTGTCAGGCTTAAGTATCTAGAGAAAGAGAATGCAGCTCTCAAAATTGAACTTGTCTCTTGTTCAGAAGTGTTGGAAATTAGGACTATTGAGAGGGATTTGAGTACTCAAGCAGCAGAAACTGCCAGCAAGCAGCAGCTGGAAAGCATAAAAAAACTGACCAAACTTGAAGTTGAGTGTCGAAAGCTACAGGCCATGGCTCGCAAATCATCCCCATTCAATGATCAACGCTCCTCTGCTGTTTCATCTTTCTATGTGGACTCTGTCACCGATAGCCAGTCTGACAGTGGAGAGCGGTTAAACACAGTTGACAATGATGCCCTCAAAATGAGTAAACTGGAAACAAGAGAATATGAACCAAGTTGCTCAAATTCATGGGCTTCAGCACTCATTGCTGAGCTTGATCAATTTAAGAATGAAAAGGCCATGCCTAAAACTCTTGCTGCCTGTTCTATAGAAATCGATATGATGGATGATTTCTTGGAGATGGAGCAACTTGCTGCATTATCTGAAACTGCAAACAAGACACCTTCAGTAACTTCTGATGCTGTTCCTCATGATTCTCCCAATATTGAGAACCCTTTGGCAGCAGAATACAATTCCATTTCACAAAGGGTGGTTGAATTAGAACAAAAGCTGGAGAAGATTGAAGCAGAGAAAGCTGAACTGGAGAATGCTTTCAACGAGAGTCAAGATGCCCTTAAAGTGTCCTCTTTGCAGCTTAAGGAAACTCAAACCAGGTTGGAAGGGCTGCAGAAGGAGCTAGATGTGGTAAATGAGTCAAAAGAGTTGCTCGAGTTTCAACTCTATGGCATGGAGGTAGAAGCACGGACAATGTCTGTAAATATTGATTCTTTGAAGACGGAAGTTGAAAAAGAAAAATCTTTGTCATCAGAAATGGAAGCTAAATGTCATGAATTGGAAAACGACCTTAGAAAAAAATCCCAGGAAGCTGAAGCTCAGCAAACTTCTGGTTCAAATAGTGAATTGAAAATAAAACAGGTAGCTCTTTCTCTCAACCTATCTTCCGTTGTTTGTCATTTATGTATAGACACATCGATGTGAAGAAAAGAAGATGAAAATTAATAATGGTATGTAAACTTTCTCACTAGCAGGAGGATTTAGCCGTGGCTGCTGACAAGCTTGCAGAATGCCAGAAAACAATTGCATCCCTTGGGAAACAGCTACAATCCCTAGCTACTCTAGAAGATTTCCTGACAGACACTGCAAATCTTCCTGGTGGAGGAGCAGTTGTTGCTAAAGCAGGAGGAGAACTATGGAAGTTGCATGTAAACGAGACATTTACCCCAAAACGTGATTCTGATCCTACCAAGGTTGAGGAGAATGTGAGTCATTCTACAAACGAAAATGAAGGGGAATCTCCAGCATCTTCATCTTCATCATCTACTTCATCCACTACTCAGGCTAGCACTGGCAAAAGCAAAAATGGCTTTGGGAAGTTGTTTTCTCGGAGTAAGAGTGGAGTTCCAACTCTAAAAGTTATCGAGGATAAATAA
Download sequence region |
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Ontology terms | None | terms associated with this mRNA |
![]() ![]() | spliced cDNA sequence, including UTRs |
>Solyc11g012860.1.1 Filament-like plant protein (Fragment) (AHRD V1 ***- FPP_SOLLC); contains Interpro domain(s) IPR008587 Protein of unknown function DUF869, plant
ATGGAAAAGAGGAAATGGTTGTGGAAAAGGAGACCTTCCGATAAGAGCCCTGGTGAAACGGAGAGTTCTGGTTCTTTATCTTCATATTCGGAGAGATACTCCGATGAGCAGGATGCACTAAAAGAATTTCCTGACCATGACAAACAGTCACCAGAGGTTACCTCAAAAGCTGCATTCGTTGATGATGAATCCAAGGAAAGCTTGAGATGCTTGACAGAGAAATTATCAGCTGCTCTTGTTAATGTTAGCGCCAAAGAAGACTTAGTTAAGCAGCATGCTAAAGTTGCCGAAGAAGCTATCGCAGGTTGGGAAAAGGCAGAAAATGAAGTTGCAGTTCTAAAGCAGCAACTAGATGCGGCTGTGCAGCAAAACTTGACTTTGGAAGTTCGTGTCAGTCATCTCGACGGTGCACTCAAGGAATGTGTCAGGCAGTTGAGACAAGCAAGAGATGAGCAAGAGAAAATGATTCAAGACGCTATGGCAGAAAAAAATGAAATGGAATCTGAAAAAACTGCACTTGAGAAACAGCTACTTAAGCTCCAGACACAAGTGGAGGCTGGTAAAGCTGAAATGCCTACTTCTACTGATCCTGATATCCTTGTCAGGCTTAAGTATCTAGAGAAAGAGAATGCAGCTCTCAAAATTGAACTTGTCTCTTGTTCAGAAGTGTTGGAAATTAGGACTATTGAGAGGGATTTGAGTACTCAAGCAGCAGAAACTGCCAGCAAGCAGCAGCTGGAAAGCATAAAAAAACTGACCAAACTTGAAGTTGAGTGTCGAAAGCTACAGGCCATGGCTCGCAAATCATCCCCATTCAATGATCAACGCTCCTCTGCTGTTTCATCTTTCTATGTGGACTCTGTCACCGATAGCCAGTCTGACAGTGGAGAGCGGTTAAACACAGTTGACAATGATGCCCTCAAAATGAGTAAACTGGAAACAAGAGAATATGAACCAAGTTGCTCAAATTCATGGGCTTCAGCACTCATTGCTGAGCTTGATCAATTTAAGAATGAAAAGGCCATGCCTAAAACTCTTGCTGCCTGTTCTATAGAAATCGATATGATGGATGATTTCTTGGAGATGGAGCAACTTGCTGCATTATCTGAAACTGCAAACAAGACACCTTCAGTAACTTCTGATGCTGTTCCTCATGATTCTCCCAATATTGAGAACCCTTTGGCAGCAGAATACAATTCCATTTCACAAAGGGTGGTTGAATTAGAACAAAAGCTGGAGAAGATTGAAGCAGAGAAAGCTGAACTGGAGAATGCTTTCAACGAGAGTCAAGATGCCCTTAAAGTGTCCTCTTTGCAGCTTAAGGAAACTCAAACCAGGTTGGAAGGGCTGCAGAAGGAGCTAGATGTGGTAAATGAGTCAAAAGAGTTGCTCGAGTTTCAACTCTATGGCATGGAGGTAGAAGCACGGACAATGTCTGTAAATATTGATTCTTTGAAGACGGAAGTTGAAAAAGAAAAATCTTTGTCATCAGAAATGGAAGCTAAATGTCATGAATTGGAAAACGACCTTAGAAAAAAATCCCAGGAAGCTGAAGCTCAGCAAACTTCTGGTTCAAATAGTGAATTGAAAATAAAACAGGAGGATTTAGCCGTGGCTGCTGACAAGCTTGCAGAATGCCAGAAAACAATTGCATCCCTTGGGAAACAGCTACAATCCCTAGCTACTCTAGAAGATTTCCTGACAGACACTGCAAATCTTCCTGGTGGAGGAGCAGTTGTTGCTAAAGCAGGAGGAGAACTATGGAAGTTGCATGTAAACGAGACATTTACCCCAAAACGTGATTCTGATCCTACCAAGGTTGAGGAGAATGTGAGTCATTCTACAAACGAAAATGAAGGGGAATCTCCAGCATCTTCATCTTCATCATCTACTTCATCCACTACTCAGGCTAGCACTGGCAAAAGCAAAAATGGCTTTGGGAAGTTGTTTTCTCGGAGTAAGAGTGGAGTTCCAACTCTAAAAGTTATCGAGGATAAATAA
ATGGAAAAGAGGAAATGGTTGTGGAAAAGGAGACCTTCCGATAAGAGCCCTGGTGAAACGGAGAGTTCTGGTTCTTTATCTTCATATTCGGAGAGATACTCCGATGAGCAGGATGCACTAAAAGAATTTCCTGACCATGACAAACAGTCACCAGAGGTTACCTCAAAAGCTGCATTCGTTGATGATGAATCCAAGGAAAGCTTGAGATGCTTGACAGAGAAATTATCAGCTGCTCTTGTTAATGTTAGCGCCAAAGAAGACTTAGTTAAGCAGCATGCTAAAGTTGCCGAAGAAGCTATCGCAGGTTGGGAAAAGGCAGAAAATGAAGTTGCAGTTCTAAAGCAGCAACTAGATGCGGCTGTGCAGCAAAACTTGACTTTGGAAGTTCGTGTCAGTCATCTCGACGGTGCACTCAAGGAATGTGTCAGGCAGTTGAGACAAGCAAGAGATGAGCAAGAGAAAATGATTCAAGACGCTATGGCAGAAAAAAATGAAATGGAATCTGAAAAAACTGCACTTGAGAAACAGCTACTTAAGCTCCAGACACAAGTGGAGGCTGGTAAAGCTGAAATGCCTACTTCTACTGATCCTGATATCCTTGTCAGGCTTAAGTATCTAGAGAAAGAGAATGCAGCTCTCAAAATTGAACTTGTCTCTTGTTCAGAAGTGTTGGAAATTAGGACTATTGAGAGGGATTTGAGTACTCAAGCAGCAGAAACTGCCAGCAAGCAGCAGCTGGAAAGCATAAAAAAACTGACCAAACTTGAAGTTGAGTGTCGAAAGCTACAGGCCATGGCTCGCAAATCATCCCCATTCAATGATCAACGCTCCTCTGCTGTTTCATCTTTCTATGTGGACTCTGTCACCGATAGCCAGTCTGACAGTGGAGAGCGGTTAAACACAGTTGACAATGATGCCCTCAAAATGAGTAAACTGGAAACAAGAGAATATGAACCAAGTTGCTCAAATTCATGGGCTTCAGCACTCATTGCTGAGCTTGATCAATTTAAGAATGAAAAGGCCATGCCTAAAACTCTTGCTGCCTGTTCTATAGAAATCGATATGATGGATGATTTCTTGGAGATGGAGCAACTTGCTGCATTATCTGAAACTGCAAACAAGACACCTTCAGTAACTTCTGATGCTGTTCCTCATGATTCTCCCAATATTGAGAACCCTTTGGCAGCAGAATACAATTCCATTTCACAAAGGGTGGTTGAATTAGAACAAAAGCTGGAGAAGATTGAAGCAGAGAAAGCTGAACTGGAGAATGCTTTCAACGAGAGTCAAGATGCCCTTAAAGTGTCCTCTTTGCAGCTTAAGGAAACTCAAACCAGGTTGGAAGGGCTGCAGAAGGAGCTAGATGTGGTAAATGAGTCAAAAGAGTTGCTCGAGTTTCAACTCTATGGCATGGAGGTAGAAGCACGGACAATGTCTGTAAATATTGATTCTTTGAAGACGGAAGTTGAAAAAGAAAAATCTTTGTCATCAGAAATGGAAGCTAAATGTCATGAATTGGAAAACGACCTTAGAAAAAAATCCCAGGAAGCTGAAGCTCAGCAAACTTCTGGTTCAAATAGTGAATTGAAAATAAAACAGGAGGATTTAGCCGTGGCTGCTGACAAGCTTGCAGAATGCCAGAAAACAATTGCATCCCTTGGGAAACAGCTACAATCCCTAGCTACTCTAGAAGATTTCCTGACAGACACTGCAAATCTTCCTGGTGGAGGAGCAGTTGTTGCTAAAGCAGGAGGAGAACTATGGAAGTTGCATGTAAACGAGACATTTACCCCAAAACGTGATTCTGATCCTACCAAGGTTGAGGAGAATGTGAGTCATTCTACAAACGAAAATGAAGGGGAATCTCCAGCATCTTCATCTTCATCATCTACTTCATCCACTACTCAGGCTAGCACTGGCAAAAGCAAAAATGGCTTTGGGAAGTTGTTTTCTCGGAGTAAGAGTGGAGTTCCAACTCTAAAAGTTATCGAGGATAAATAA
![]() ![]() | translated polypeptide sequence |
>Solyc11g012860.1.1 Filament-like plant protein (Fragment) (AHRD V1 ***- FPP_SOLLC); contains Interpro domain(s) IPR008587 Protein of unknown function DUF869, plant
MEKRKWLWKRRPSDKSPGETESSGSLSSYSERYSDEQDALKEFPDHDKQSPEVTSKAAFVDDESKESLRCLTEKLSAALVNVSAKEDLVKQHAKVAEEAIAGWEKAENEVAVLKQQLDAAVQQNLTLEVRVSHLDGALKECVRQLRQARDEQEKMIQDAMAEKNEMESEKTALEKQLLKLQTQVEAGKAEMPTSTDPDILVRLKYLEKENAALKIELVSCSEVLEIRTIERDLSTQAAETASKQQLESIKKLTKLEVECRKLQAMARKSSPFNDQRSSAVSSFYVDSVTDSQSDSGERLNTVDNDALKMSKLETREYEPSCSNSWASALIAELDQFKNEKAMPKTLAACSIEIDMMDDFLEMEQLAALSETANKTPSVTSDAVPHDSPNIENPLAAEYNSISQRVVELEQKLEKIEAEKAELENAFNESQDALKVSSLQLKETQTRLEGLQKELDVVNESKELLEFQLYGMEVEARTMSVNIDSLKTEVEKEKSLSSEMEAKCHELENDLRKKSQEAEAQQTSGSNSELKIKQEDLAVAADKLAECQKTIASLGKQLQSLATLEDFLTDTANLPGGGAVVAKAGGELWKLHVNETFTPKRDSDPTKVEENVSHSTNENEGESPASSSSSSTSSTTQASTGKSKNGFGKLFSRSKSGVPTLKVIEDK*
MEKRKWLWKRRPSDKSPGETESSGSLSSYSERYSDEQDALKEFPDHDKQSPEVTSKAAFVDDESKESLRCLTEKLSAALVNVSAKEDLVKQHAKVAEEAIAGWEKAENEVAVLKQQLDAAVQQNLTLEVRVSHLDGALKECVRQLRQARDEQEKMIQDAMAEKNEMESEKTALEKQLLKLQTQVEAGKAEMPTSTDPDILVRLKYLEKENAALKIELVSCSEVLEIRTIERDLSTQAAETASKQQLESIKKLTKLEVECRKLQAMARKSSPFNDQRSSAVSSFYVDSVTDSQSDSGERLNTVDNDALKMSKLETREYEPSCSNSWASALIAELDQFKNEKAMPKTLAACSIEIDMMDDFLEMEQLAALSETANKTPSVTSDAVPHDSPNIENPLAAEYNSISQRVVELEQKLEKIEAEKAELENAFNESQDALKVSSLQLKETQTRLEGLQKELDVVNESKELLEFQLYGMEVEARTMSVNIDSLKTEVEKEKSLSSEMEAKCHELENDLRKKSQEAEAQQTSGSNSELKIKQEDLAVAADKLAECQKTIASLGKQLQSLATLEDFLTDTANLPGGGAVVAKAGGELWKLHVNETFTPKRDSDPTKVEENVSHSTNENEGESPASSSSSSTSSTTQASTGKSKNGFGKLFSRSKSGVPTLKVIEDK*
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![]() ![]() | [Associate new unigene] |
Unigene ID:
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![]() ![]() | [Associate new genbank sequence] |
AF405309 Lycopersicon esculentum coiled-coil protein (FPP) mRNA, partial cds.
Other genome matches | None |
![]() ![]() | [Associate publication] [Matching publications] |
Four signature motifs define the first class of structurally related large coiled-coil proteins in plants.
BMC genomics (2002)
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BACKGROUND: Animal and yeast proteins containing long coiled-coil domains are involved in attaching other proteins to the large, solid-state components of the cell. One subgroup of long coiled-coil proteins are the nuclear lamins, which are involved in attaching chromatin to the nuclear envelope and have recently been implicated in inherited human diseases. In contrast to other eukaryotes, long coiled-coil proteins have been barely investigated in plants. RESULTS: We have searched the completed Arabidopsis genome and have identified a family of structurally related long coiled-coil proteins. Filament-like plant proteins (FPP) were identified by sequence similarity to a tomato cDNA that encodes a coiled-coil protein which interacts with the nuclear envelope-associated protein, MAF1. The FPP family is defined by four novel unique sequence motifs and by two clusters of long coiled-coil domains separated by a non-coiled-coil linker. All family members are expressed in a variety of Arabidopsis tissues. A homolog sharing the structural features was identified in the monocot rice, indicating conservation among angiosperms. CONCLUSION: Except for myosins, this is the first characterization of a family of long coiled-coil proteins in plants. The tomato homolog of the FPP family binds in a yeast two-hybrid assay to a nuclear envelope-associated protein. This might suggest that FPP family members function in nuclear envelope biology. Because the full Arabidopsis genome does not appear to contain genes for lamins, it is of interest to investigate other long coiled-coil proteins, which might functionally replace lamins in the plant kingdom.
Gindullis, F. Rose, A. Patel, S. Meier, I.
BMC genomics.
2002.
3(1).
9.
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