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Tomato locus viroid RNA-binding protein
| Locus details | Download GMOD XML | Note to Editors | Annotation guidelines |
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Links to external databases
Links to external databases
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| Registry name: | None | [Associate registry name] |
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Accessions and images (0)
| [Associate accession] |
Accession name:
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| Alleles (0) | None | [Add new Allele] |
Associated loci (0)
Associated loci (0)
| [Associate new locus] |
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| Associated loci - graphical view | None |
SolCyc links
SolCyc links
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Sequence annotations
Sequence annotations
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Genome features
Genome features
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Genomic sequence
Genomic sequence
| unprocessed genomic sequence region underlying this gene |
>Solyc12g006470.1 SL2.50ch12:956774..962587
ATGGCCAAGACTAATGGGTAAAGTACTCTAAGTCATTCTAAATTGAGGAAAAAATATATTTATTATGATAAAAATATATTTATTATGATAAAGTTCAATTACTTTACTATGATTTTTATTTTTATTTATATAATTTTACAGATTTATGGGACATGATATGTTGGCACCATTTACTGCGGCATGGATGATTGATATGGGACCTTTAGTTATAGATAAAGCGGAGGTTAGATTTTGAGTTTATTTTTGTTACGAATTTTAAGTTATATGTATCGTTAGTATAATTTTAATTTTAATTATTTGAGGTATAATTAACTTTTGAATTATGATCGAAATTTAAATAATGCACTTTAATTGACTAAATTAAGGTGATTTGCTGAGTTTCGATCATAATTTAGGAATATTTATGCCTCATCACTTAATTATTTTGTCATTATGAAAATAAAAATATTTTTTAACTTATATTTTGTTGGTTATTTTTAATATTTAAGATATTTATGTTTTTAATATTTGTGTAATTTGTTATAGGGTTCTTATGTCTATGACGTAAATGGAAAGAAGTACCTTGATTCTTTATCTGGTTTATGGTGCTCAGTATTAGGTATTTAATTAATTACAATCCTTAATTATTGCATTATTTGATTTTATTGGCTAATTTTGTCATTCATTTGATTTAATTAATTCCACTAGTTTTCTTTTTTGTTGTTTGTCATGATTTCTATATTTAGAGTCAAATTATAAAAACTTTGATTAATATGTTATTTTTATCATATTAATATGTAAAAAATTACAATTTATGTACTTTTCATGTAATTTAAAAATATCTAGTTTTTTTTTTAAATTTTGAATTAATGTGATCTAATTTAACTTTAAATTATTCAAATTGAGTTTCGAAAAGCACAACATGACAAATAATTTTAAACGAAAGATGTATCAATCAAAATAACAATAATATGAAATTAATTCTTGAAATTTGTAAGGACGATAAATTGGATTTAATTTGGGATTTTTGTTGTTTAGCTACTGAATTTTGTATGGTTTGGCAGTTTCTTATTTTCTAATAATGATTACTGAAAAGAATTAATGTCATTGCATCAATAATCGCGAAATTTTTTAATGATATTTATATAAAGTGTTGATTATAATTATATTTATTATTATTGTTAAATATAATAAAAGGACAATTATATTATTATCACTAAATAATTTTTGCTAAATCTTTTATTTATTGTGTTGCAGGTAAAGTAAACTTAGTTAATTAGGAGATTTATTACTAATTTCTCCTTTAATTAGGACCCCATCATGGATGGACCAACCTAATAATTATTTTTTGATAGTTACGTTTGTGGTGTGTTTGATGGAAAGAAACTTTACTTCAATATCCAATATTTTATTAAATTTTAAAATTTATTTTAATTAGAGTAAGAGAAATATATAAGCAAATAAATTCATTTTTCTCTCTTTTATTAATGTTTATAATTTGATTGCTAAAAATGATTTATTTATTTTTAACAAGGATTTTCCTTCATGCCAAATATTTTACTTTGATTGCAACATGTTGAAAGCTATCTTTGATTATTATAGAAAATTACTTTGGCATTTTGTGAAATTCTTGATTGGATTAATAAGTTATATATTGATATTTGTAGATATTATTTTTTATATTATTAAAATATATATTTATACGTTACGATTAGAAGTTAACTTTCACCATAAAAAGTAGAGTTTTTAATCAGATATTTCGAGTTTAAATTTTAAAATTAAAAATTCTTTTTGTAAAATTAATTTTCGTTTAATGAATCTTACCTAATACGAATCTCGATTATCGTAGGGGGGAGTGAGCCTCGTCTTATTGAAGCTGCAAATAAACAACTCAATAAATTGGCATTTTACCACTCATTTTGGAATCGTACCACAAAGCCTTCTTTGGTATAATACTTCTAAATTTAACTATTAATTTATTAATATTACTCCATCAATCCTAAATATATTTATTTTATTTCTCGAGAATTAAATTATATCAATTTCAATATACAATTTAATTACAAAAGTTGATTAATTTGATTCTCGAGAAATAAAATGTAATAAGTATTTTAGGACAGAAGGAGTAGATTTAACCGATTAATTTATTTTATTTTAAAAATAAATACAGGATCTTGCAAAGGAGCTCATAAATATGTTTACTGCAAATAAGATGGGAAAAGTTTTTTTCACAAGTAGTGGATCAGAAGCTAATGACACTCAGGTTTTATTATTTATTTTTTTTAGCTTATTATATAAATTTAATTTAATTTTTTATAACATGTTATTTATTATTTATTTTAAATTATTATTAGTTCCAGTGTAATTTAAGTCACTTCTGAAATTTGAAAACTTACATATTTATGTTAAGAAAATTCAAACCATTATATTACAATATAATATAATTTTTTTAATAAAGTGAATTTATTATTTACATTGTTTGGTTGTGTAAATATTTTTATGGAGAAGTTTTGAAGGATATTTAATTATTAATCTTTGACTTTTACATGTCAATTATTTATAGGTGAAGTTGGTGTGGTATTACAACAATGCCATTGGGAGGCCAAACAAAAAGAAAATTATTTCTCGAAAAAATGCGTAATCTTTTTTTATTATTTTTTCTAAAAAAATTATTTTTTATATTTTTATTATTTTATTTTTTTTCTACTTTGGCTAATACAATATTCTTTATATATATCACCTTCAAACAGATACCATGGCTCCACTTATATGACTGCCGGTCTCTCCGGGTAATATATTGTTCGTTTTATTTTATATGACGATATTTAATTAAGTCTAATTAAATTTTATGTATATTCATTTTTTAATTTATAGTTTTAAGTAGGTTATGATCATTTTAATAATTTACAAAAGATGAAATTAAATAAGTTATCACTATAAATAATAATAAAAAACTCCAATACGTCATAGGAACTGAAAATTCATTTATATCATGTTTGATAAAAAATTATATTATTTATATATGATTAATTGTTTTTTAAATGTATATATGCCATTGTGCTGAGCATTATATTTCATATTTCTATTTTTCAAATCCCATTTAAATATATTAAATTTCAGTATTTATTTTAATCCGTTTAAATTTAATCCAATTCAGGCTTCCATCACTACATCTAAAATTTGATTTACCACCTCCATATATTCTTCACACTGATTGCCCTCATTATTGGAACTATCACTTGCCAGGTATATTATTATTATTATTGTTGTTGTTGTTATTATTTAATGTCTCTTATATTATATTGAGCTTATATTATATTTTTTTTATATTAATAACTATACATTTTACTAAAAAAAGAAATATGTATGGCAGGTGAGACAGAAGAGGAGTACTCAACTAGGTTGGCAAATAATTTGGAAAATCTTATACTCAAAGAGGGTCCTGAAACAGTAATTTTCTATATACTTTTGTCACTTATTATCAATTTTTTTCGATATTTCGCGTGATGAAGAAACTTTTTATGATAGATATTCAATTCTTTTTTAAAAAATATTTTTTTAGAAAATAATTTAGAAAAGAAATGTAAGAGTGAAAAGTTATACGTAAAAAATATTATCAATCGATATAAATATTAAAAATAATAATAAAAAATCGAAGCATGAGAAAATATTAACATATATTTGTGTAGGTTGCTGCTTTCATTGCGGAACCAGTCATGGGAGGAGCAGGTGTTATAATTCCTCCAGCTACTTATTTCGAAAAGGTCTGGTTTATTATTTTATTCGTCTCAATTTATATTAATAATATTTGATTAGACATAATTTATATTAATAATATTTTATTAGATATAAATTTTGATGAAAAATAAGTTATAGATACATATGGCTACTATACATTTCATTAATGATAAATAGACATTTAAATGTTATAATATTATTAAACATAAGAAAAAAGGATAATTTTTTTTTGAAAATAATTAATACAAAAAGTATTATATAAATTAAGACGGAAAGAGTAATTCGCTGCACCCAATTTATTGTTATTCACCTTGAAAGTTCATTTGATTTGATGCTTTCAAATATTATTGTCCCTAAAATTTATAGTATTTTTTAAAATTATATACACTTCCCATCTCATTTTTTTTTCAATTGTTTTTTTCTAGCAAAATACTTCTTACGTTTTATTTTTCGTAAATAATTATAAGAACATTTTTAGTCATTTAATATTTCATTTTTTTAATTTAAAAAAATAATAACTCATGTCTACTTTTTTATTTTTTATTTTTTTTTAGATTCAAGCTGTTTTAAAGAAATATGACATTCTTTTCATCGCGGACGAGGTGATATGTGGATTTGGAAGACTTGGGACAATGTTTGGCTGTGATAAGTACAACATTAAGCCTGATCTTGTCTCTATAGCAAAGGTAATAAAAATTATAGCGAAATGATTTGACGATCGCTTATTCTTTATATTTACTTATATTCTAAATTCTTCTATTTATCTTTCTATCAATCGAATTAATAAATTTAAACTCTAATTAGAATTAAAATAAGTGTGCTATATAGATATATATATATAATATTTACATAATCAGATCACTTCAAATTCGTAATTCTTAATTTGACTATTTTTAACATTGTTTTAAGGCTCTTTCTGGTGGATATATACCAATTGGTGCTGTGCTTGTAAGTGAAGAAATTTCTAAGGTCATAATGTCTCAAAGCAATCAACTTGGTGAGCATATAATATAAATGTGATTGAATATTTACTTAATATATATAGTATTCATCTATTTATATTTTAATAATATTTTTTTCTACAATTAGGTGTTTTTTGCCATGGATTTACTTATTCTGGACATCCTGTTGCGTGTGCGGTTGCATTGGAAGCACTAAAAATCTATAAGTACGTATCTAATTAGTTAAATATTTTTTTTATATCGTCAATATACTAAAAATATTTATATTTAATTTTTTTTCAGGGAAAAAAATATTACTGAGGTAGTGAATAAATTATCACCAAAGTTTCAAGAAGGTTTGAAAGCATTTATAGACAGTCCAATAATTGGAGAGGTACATATTTTTCTTATATACATTTAAGTGTTTTTTTTAGTATAAATTTATTTATATTATTAATGTAAAAAATTTTAAACTCAAAATTTTATTCACTCTTTTTCCTTTTTCTTTTTCTTTTTAAAAAAAAGATAAGGGGAACTGGTTTAGTACTTTCTACAGAGTTTGTAGATAACAAATCTCCTAATGATCCTTTTCCACCAGAATGGGGTACATTTCTTCCTTTTATTTTTAATCTTCAAATTAAATTAAATTAAATTCTTATTTCTATTTTGTAAATAAATTAATAATTTTTTGTTTAATCAAGGTGTTGGTACATATTTTGGATCACAATGTCAAAAGCATGGTATGTTGGTGAGTTTTTCTGGTGATCATGTAAATATGGCCCCTCCATTCACCTTGAGTCTTGAAGAACTTGATGAGGTAATAAATATCACTTTTCATTTGATAGAAATAATTTAATATGATTTTTTTTGAGTTGAAATATGCCTAAGAGTCAAGAGTCTTGTCGGAAAATAACAAGTTTTAAGGATAAAGTATGCGTTCACTCTATTTATTCGACTCGATATTTTGTTATGATACATTAGTTTCATAAAAGTACAACCATATCTTTTGAATTATAAAAGGTAATATATTAAGGACTTGTTAACATTTTTTTGTGTTTTTATTTTTTATTTTTTTTTGTAGATGATAAGCATATATGGGAAAGCATTGAAGGATACTGAAAAAAGAGTGGAAGAATTGAAGTCTCAGAAGAAGTAA
ATGGCCAAGACTAATGGGTAAAGTACTCTAAGTCATTCTAAATTGAGGAAAAAATATATTTATTATGATAAAAATATATTTATTATGATAAAGTTCAATTACTTTACTATGATTTTTATTTTTATTTATATAATTTTACAGATTTATGGGACATGATATGTTGGCACCATTTACTGCGGCATGGATGATTGATATGGGACCTTTAGTTATAGATAAAGCGGAGGTTAGATTTTGAGTTTATTTTTGTTACGAATTTTAAGTTATATGTATCGTTAGTATAATTTTAATTTTAATTATTTGAGGTATAATTAACTTTTGAATTATGATCGAAATTTAAATAATGCACTTTAATTGACTAAATTAAGGTGATTTGCTGAGTTTCGATCATAATTTAGGAATATTTATGCCTCATCACTTAATTATTTTGTCATTATGAAAATAAAAATATTTTTTAACTTATATTTTGTTGGTTATTTTTAATATTTAAGATATTTATGTTTTTAATATTTGTGTAATTTGTTATAGGGTTCTTATGTCTATGACGTAAATGGAAAGAAGTACCTTGATTCTTTATCTGGTTTATGGTGCTCAGTATTAGGTATTTAATTAATTACAATCCTTAATTATTGCATTATTTGATTTTATTGGCTAATTTTGTCATTCATTTGATTTAATTAATTCCACTAGTTTTCTTTTTTGTTGTTTGTCATGATTTCTATATTTAGAGTCAAATTATAAAAACTTTGATTAATATGTTATTTTTATCATATTAATATGTAAAAAATTACAATTTATGTACTTTTCATGTAATTTAAAAATATCTAGTTTTTTTTTTAAATTTTGAATTAATGTGATCTAATTTAACTTTAAATTATTCAAATTGAGTTTCGAAAAGCACAACATGACAAATAATTTTAAACGAAAGATGTATCAATCAAAATAACAATAATATGAAATTAATTCTTGAAATTTGTAAGGACGATAAATTGGATTTAATTTGGGATTTTTGTTGTTTAGCTACTGAATTTTGTATGGTTTGGCAGTTTCTTATTTTCTAATAATGATTACTGAAAAGAATTAATGTCATTGCATCAATAATCGCGAAATTTTTTAATGATATTTATATAAAGTGTTGATTATAATTATATTTATTATTATTGTTAAATATAATAAAAGGACAATTATATTATTATCACTAAATAATTTTTGCTAAATCTTTTATTTATTGTGTTGCAGGTAAAGTAAACTTAGTTAATTAGGAGATTTATTACTAATTTCTCCTTTAATTAGGACCCCATCATGGATGGACCAACCTAATAATTATTTTTTGATAGTTACGTTTGTGGTGTGTTTGATGGAAAGAAACTTTACTTCAATATCCAATATTTTATTAAATTTTAAAATTTATTTTAATTAGAGTAAGAGAAATATATAAGCAAATAAATTCATTTTTCTCTCTTTTATTAATGTTTATAATTTGATTGCTAAAAATGATTTATTTATTTTTAACAAGGATTTTCCTTCATGCCAAATATTTTACTTTGATTGCAACATGTTGAAAGCTATCTTTGATTATTATAGAAAATTACTTTGGCATTTTGTGAAATTCTTGATTGGATTAATAAGTTATATATTGATATTTGTAGATATTATTTTTTATATTATTAAAATATATATTTATACGTTACGATTAGAAGTTAACTTTCACCATAAAAAGTAGAGTTTTTAATCAGATATTTCGAGTTTAAATTTTAAAATTAAAAATTCTTTTTGTAAAATTAATTTTCGTTTAATGAATCTTACCTAATACGAATCTCGATTATCGTAGGGGGGAGTGAGCCTCGTCTTATTGAAGCTGCAAATAAACAACTCAATAAATTGGCATTTTACCACTCATTTTGGAATCGTACCACAAAGCCTTCTTTGGTATAATACTTCTAAATTTAACTATTAATTTATTAATATTACTCCATCAATCCTAAATATATTTATTTTATTTCTCGAGAATTAAATTATATCAATTTCAATATACAATTTAATTACAAAAGTTGATTAATTTGATTCTCGAGAAATAAAATGTAATAAGTATTTTAGGACAGAAGGAGTAGATTTAACCGATTAATTTATTTTATTTTAAAAATAAATACAGGATCTTGCAAAGGAGCTCATAAATATGTTTACTGCAAATAAGATGGGAAAAGTTTTTTTCACAAGTAGTGGATCAGAAGCTAATGACACTCAGGTTTTATTATTTATTTTTTTTAGCTTATTATATAAATTTAATTTAATTTTTTATAACATGTTATTTATTATTTATTTTAAATTATTATTAGTTCCAGTGTAATTTAAGTCACTTCTGAAATTTGAAAACTTACATATTTATGTTAAGAAAATTCAAACCATTATATTACAATATAATATAATTTTTTTAATAAAGTGAATTTATTATTTACATTGTTTGGTTGTGTAAATATTTTTATGGAGAAGTTTTGAAGGATATTTAATTATTAATCTTTGACTTTTACATGTCAATTATTTATAGGTGAAGTTGGTGTGGTATTACAACAATGCCATTGGGAGGCCAAACAAAAAGAAAATTATTTCTCGAAAAAATGCGTAATCTTTTTTTATTATTTTTTCTAAAAAAATTATTTTTTATATTTTTATTATTTTATTTTTTTTCTACTTTGGCTAATACAATATTCTTTATATATATCACCTTCAAACAGATACCATGGCTCCACTTATATGACTGCCGGTCTCTCCGGGTAATATATTGTTCGTTTTATTTTATATGACGATATTTAATTAAGTCTAATTAAATTTTATGTATATTCATTTTTTAATTTATAGTTTTAAGTAGGTTATGATCATTTTAATAATTTACAAAAGATGAAATTAAATAAGTTATCACTATAAATAATAATAAAAAACTCCAATACGTCATAGGAACTGAAAATTCATTTATATCATGTTTGATAAAAAATTATATTATTTATATATGATTAATTGTTTTTTAAATGTATATATGCCATTGTGCTGAGCATTATATTTCATATTTCTATTTTTCAAATCCCATTTAAATATATTAAATTTCAGTATTTATTTTAATCCGTTTAAATTTAATCCAATTCAGGCTTCCATCACTACATCTAAAATTTGATTTACCACCTCCATATATTCTTCACACTGATTGCCCTCATTATTGGAACTATCACTTGCCAGGTATATTATTATTATTATTGTTGTTGTTGTTATTATTTAATGTCTCTTATATTATATTGAGCTTATATTATATTTTTTTTATATTAATAACTATACATTTTACTAAAAAAAGAAATATGTATGGCAGGTGAGACAGAAGAGGAGTACTCAACTAGGTTGGCAAATAATTTGGAAAATCTTATACTCAAAGAGGGTCCTGAAACAGTAATTTTCTATATACTTTTGTCACTTATTATCAATTTTTTTCGATATTTCGCGTGATGAAGAAACTTTTTATGATAGATATTCAATTCTTTTTTAAAAAATATTTTTTTAGAAAATAATTTAGAAAAGAAATGTAAGAGTGAAAAGTTATACGTAAAAAATATTATCAATCGATATAAATATTAAAAATAATAATAAAAAATCGAAGCATGAGAAAATATTAACATATATTTGTGTAGGTTGCTGCTTTCATTGCGGAACCAGTCATGGGAGGAGCAGGTGTTATAATTCCTCCAGCTACTTATTTCGAAAAGGTCTGGTTTATTATTTTATTCGTCTCAATTTATATTAATAATATTTGATTAGACATAATTTATATTAATAATATTTTATTAGATATAAATTTTGATGAAAAATAAGTTATAGATACATATGGCTACTATACATTTCATTAATGATAAATAGACATTTAAATGTTATAATATTATTAAACATAAGAAAAAAGGATAATTTTTTTTTGAAAATAATTAATACAAAAAGTATTATATAAATTAAGACGGAAAGAGTAATTCGCTGCACCCAATTTATTGTTATTCACCTTGAAAGTTCATTTGATTTGATGCTTTCAAATATTATTGTCCCTAAAATTTATAGTATTTTTTAAAATTATATACACTTCCCATCTCATTTTTTTTTCAATTGTTTTTTTCTAGCAAAATACTTCTTACGTTTTATTTTTCGTAAATAATTATAAGAACATTTTTAGTCATTTAATATTTCATTTTTTTAATTTAAAAAAATAATAACTCATGTCTACTTTTTTATTTTTTATTTTTTTTTAGATTCAAGCTGTTTTAAAGAAATATGACATTCTTTTCATCGCGGACGAGGTGATATGTGGATTTGGAAGACTTGGGACAATGTTTGGCTGTGATAAGTACAACATTAAGCCTGATCTTGTCTCTATAGCAAAGGTAATAAAAATTATAGCGAAATGATTTGACGATCGCTTATTCTTTATATTTACTTATATTCTAAATTCTTCTATTTATCTTTCTATCAATCGAATTAATAAATTTAAACTCTAATTAGAATTAAAATAAGTGTGCTATATAGATATATATATATAATATTTACATAATCAGATCACTTCAAATTCGTAATTCTTAATTTGACTATTTTTAACATTGTTTTAAGGCTCTTTCTGGTGGATATATACCAATTGGTGCTGTGCTTGTAAGTGAAGAAATTTCTAAGGTCATAATGTCTCAAAGCAATCAACTTGGTGAGCATATAATATAAATGTGATTGAATATTTACTTAATATATATAGTATTCATCTATTTATATTTTAATAATATTTTTTTCTACAATTAGGTGTTTTTTGCCATGGATTTACTTATTCTGGACATCCTGTTGCGTGTGCGGTTGCATTGGAAGCACTAAAAATCTATAAGTACGTATCTAATTAGTTAAATATTTTTTTTATATCGTCAATATACTAAAAATATTTATATTTAATTTTTTTTCAGGGAAAAAAATATTACTGAGGTAGTGAATAAATTATCACCAAAGTTTCAAGAAGGTTTGAAAGCATTTATAGACAGTCCAATAATTGGAGAGGTACATATTTTTCTTATATACATTTAAGTGTTTTTTTTAGTATAAATTTATTTATATTATTAATGTAAAAAATTTTAAACTCAAAATTTTATTCACTCTTTTTCCTTTTTCTTTTTCTTTTTAAAAAAAAGATAAGGGGAACTGGTTTAGTACTTTCTACAGAGTTTGTAGATAACAAATCTCCTAATGATCCTTTTCCACCAGAATGGGGTACATTTCTTCCTTTTATTTTTAATCTTCAAATTAAATTAAATTAAATTCTTATTTCTATTTTGTAAATAAATTAATAATTTTTTGTTTAATCAAGGTGTTGGTACATATTTTGGATCACAATGTCAAAAGCATGGTATGTTGGTGAGTTTTTCTGGTGATCATGTAAATATGGCCCCTCCATTCACCTTGAGTCTTGAAGAACTTGATGAGGTAATAAATATCACTTTTCATTTGATAGAAATAATTTAATATGATTTTTTTTGAGTTGAAATATGCCTAAGAGTCAAGAGTCTTGTCGGAAAATAACAAGTTTTAAGGATAAAGTATGCGTTCACTCTATTTATTCGACTCGATATTTTGTTATGATACATTAGTTTCATAAAAGTACAACCATATCTTTTGAATTATAAAAGGTAATATATTAAGGACTTGTTAACATTTTTTTGTGTTTTTATTTTTTATTTTTTTTTGTAGATGATAAGCATATATGGGAAAGCATTGAAGGATACTGAAAAAAGAGTGGAAGAATTGAAGTCTCAGAAGAAGTAA
| Download sequence region |
Get flanking sequences on SL2.50ch12
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mRNA Solyc12g006470.1.1
mRNA Solyc12g006470.1.1
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Ontology terms
Ontology terms
| terms associated with this mRNA |
cDNA sequence
cDNA sequence
| spliced cDNA sequence, including UTRs |
>Solyc12g006470.1.1 Aminotransferase-like protein (AHRD V1 ***- Q9LIE2_ARATH); contains Interpro domain(s) IPR005814 Aminotransferase class-III
ATGGCCAAGACTAATGGATTTATGGGACATGATATGTTGGCACCATTTACTGCGGCATGGATGATTGATATGGGACCTTTAGTTATAGATAAAGCGGAGGGTTCTTATGTCTATGACGTAAATGGAAAGAAGTACCTTGATTCTTTATCTGGTTTATGGTGCTCAGTATTAGGGGGGAGTGAGCCTCGTCTTATTGAAGCTGCAAATAAACAACTCAATAAATTGGCATTTTACCACTCATTTTGGAATCGTACCACAAAGCCTTCTTTGGATCTTGCAAAGGAGCTCATAAATATGTTTACTGCAAATAAGATGGGAAAAGTTTTTTTCACAAGTAGTGGATCAGAAGCTAATGACACTCAGGTGAAGTTGGTGTGGTATTACAACAATGCCATTGGGAGGCCAAACAAAAAGAAAATTATTTCTCGAAAAAATGCATACCATGGCTCCACTTATATGACTGCCGGTCTCTCCGGGCTTCCATCACTACATCTAAAATTTGATTTACCACCTCCATATATTCTTCACACTGATTGCCCTCATTATTGGAACTATCACTTGCCAGGTGAGACAGAAGAGGAGTACTCAACTAGGTTGGCAAATAATTTGGAAAATCTTATACTCAAAGAGGGTCCTGAAACAGTTGCTGCTTTCATTGCGGAACCAGTCATGGGAGGAGCAGGTGTTATAATTCCTCCAGCTACTTATTTCGAAAAGATTCAAGCTGTTTTAAAGAAATATGACATTCTTTTCATCGCGGACGAGGTGATATGTGGATTTGGAAGACTTGGGACAATGTTTGGCTGTGATAAGTACAACATTAAGCCTGATCTTGTCTCTATAGCAAAGGCTCTTTCTGGTGGATATATACCAATTGGTGCTGTGCTTGTAAGTGAAGAAATTTCTAAGGTCATAATGTCTCAAAGCAATCAACTTGGTGTTTTTTGCCATGGATTTACTTATTCTGGACATCCTGTTGCGTGTGCGGTTGCATTGGAAGCACTAAAAATCTATAAGGAAAAAAATATTACTGAGGTAGTGAATAAATTATCACCAAAGTTTCAAGAAGGTTTGAAAGCATTTATAGACAGTCCAATAATTGGAGAGATAAGGGGAACTGGTTTAGTACTTTCTACAGAGTTTGTAGATAACAAATCTCCTAATGATCCTTTTCCACCAGAATGGGGTGTTGGTACATATTTTGGATCACAATGTCAAAAGCATGGTATGTTGGTGAGTTTTTCTGGTGATCATGTAAATATGGCCCCTCCATTCACCTTGAGTCTTGAAGAACTTGATGAGATGATAAGCATATATGGGAAAGCATTGAAGGATACTGAAAAAAGAGTGGAAGAATTGAAGTCTCAGAAGAAGTAA
ATGGCCAAGACTAATGGATTTATGGGACATGATATGTTGGCACCATTTACTGCGGCATGGATGATTGATATGGGACCTTTAGTTATAGATAAAGCGGAGGGTTCTTATGTCTATGACGTAAATGGAAAGAAGTACCTTGATTCTTTATCTGGTTTATGGTGCTCAGTATTAGGGGGGAGTGAGCCTCGTCTTATTGAAGCTGCAAATAAACAACTCAATAAATTGGCATTTTACCACTCATTTTGGAATCGTACCACAAAGCCTTCTTTGGATCTTGCAAAGGAGCTCATAAATATGTTTACTGCAAATAAGATGGGAAAAGTTTTTTTCACAAGTAGTGGATCAGAAGCTAATGACACTCAGGTGAAGTTGGTGTGGTATTACAACAATGCCATTGGGAGGCCAAACAAAAAGAAAATTATTTCTCGAAAAAATGCATACCATGGCTCCACTTATATGACTGCCGGTCTCTCCGGGCTTCCATCACTACATCTAAAATTTGATTTACCACCTCCATATATTCTTCACACTGATTGCCCTCATTATTGGAACTATCACTTGCCAGGTGAGACAGAAGAGGAGTACTCAACTAGGTTGGCAAATAATTTGGAAAATCTTATACTCAAAGAGGGTCCTGAAACAGTTGCTGCTTTCATTGCGGAACCAGTCATGGGAGGAGCAGGTGTTATAATTCCTCCAGCTACTTATTTCGAAAAGATTCAAGCTGTTTTAAAGAAATATGACATTCTTTTCATCGCGGACGAGGTGATATGTGGATTTGGAAGACTTGGGACAATGTTTGGCTGTGATAAGTACAACATTAAGCCTGATCTTGTCTCTATAGCAAAGGCTCTTTCTGGTGGATATATACCAATTGGTGCTGTGCTTGTAAGTGAAGAAATTTCTAAGGTCATAATGTCTCAAAGCAATCAACTTGGTGTTTTTTGCCATGGATTTACTTATTCTGGACATCCTGTTGCGTGTGCGGTTGCATTGGAAGCACTAAAAATCTATAAGGAAAAAAATATTACTGAGGTAGTGAATAAATTATCACCAAAGTTTCAAGAAGGTTTGAAAGCATTTATAGACAGTCCAATAATTGGAGAGATAAGGGGAACTGGTTTAGTACTTTCTACAGAGTTTGTAGATAACAAATCTCCTAATGATCCTTTTCCACCAGAATGGGGTGTTGGTACATATTTTGGATCACAATGTCAAAAGCATGGTATGTTGGTGAGTTTTTCTGGTGATCATGTAAATATGGCCCCTCCATTCACCTTGAGTCTTGAAGAACTTGATGAGATGATAAGCATATATGGGAAAGCATTGAAGGATACTGAAAAAAGAGTGGAAGAATTGAAGTCTCAGAAGAAGTAA
Protein sequence
Protein sequence
| translated polypeptide sequence |
>Solyc12g006470.1.1 Aminotransferase-like protein (AHRD V1 ***- Q9LIE2_ARATH); contains Interpro domain(s) IPR005814 Aminotransferase class-III
MAKTNGFMGHDMLAPFTAAWMIDMGPLVIDKAEGSYVYDVNGKKYLDSLSGLWCSVLGGSEPRLIEAANKQLNKLAFYHSFWNRTTKPSLDLAKELINMFTANKMGKVFFTSSGSEANDTQVKLVWYYNNAIGRPNKKKIISRKNAYHGSTYMTAGLSGLPSLHLKFDLPPPYILHTDCPHYWNYHLPGETEEEYSTRLANNLENLILKEGPETVAAFIAEPVMGGAGVIIPPATYFEKIQAVLKKYDILFIADEVICGFGRLGTMFGCDKYNIKPDLVSIAKALSGGYIPIGAVLVSEEISKVIMSQSNQLGVFCHGFTYSGHPVACAVALEALKIYKEKNITEVVNKLSPKFQEGLKAFIDSPIIGEIRGTGLVLSTEFVDNKSPNDPFPPEWGVGTYFGSQCQKHGMLVSFSGDHVNMAPPFTLSLEELDEMISIYGKALKDTEKRVEELKSQKK*
MAKTNGFMGHDMLAPFTAAWMIDMGPLVIDKAEGSYVYDVNGKKYLDSLSGLWCSVLGGSEPRLIEAANKQLNKLAFYHSFWNRTTKPSLDLAKELINMFTANKMGKVFFTSSGSEANDTQVKLVWYYNNAIGRPNKKKIISRKNAYHGSTYMTAGLSGLPSLHLKFDLPPPYILHTDCPHYWNYHLPGETEEEYSTRLANNLENLILKEGPETVAAFIAEPVMGGAGVIIPPATYFEKIQAVLKKYDILFIADEVICGFGRLGTMFGCDKYNIKPDLVSIAKALSGGYIPIGAVLVSEEISKVIMSQSNQLGVFCHGFTYSGHPVACAVALEALKIYKEKNITEVVNKLSPKFQEGLKAFIDSPIIGEIRGTGLVLSTEFVDNKSPNDPFPPEWGVGTYFGSQCQKHGMLVSFSGDHVNMAPPFTLSLEELDEMISIYGKALKDTEKRVEELKSQKK*
Gene model matches
Gene model matches
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SGN Unigenes
SGN Unigenes
| [Associate new unigene] |
Unigene ID:
[loading...]
GenBank accessions
GenBank accessions
| [Associate new genbank sequence] |
| Other genome matches | None |
Literature annotations [1]
Literature annotations [1]
| [Associate publication] [Matching publications] |
Detection and isolation of RNA-binding proteins by RNA-ligand screening of a cDNA expression library.
Nucleic acids research (1997)
Show / hide abstract
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A screening assay for the detection of RNA-binding proteins was developed. It allows the rapid isolation of cDNA clones coding for proteins with sequence-specific binding affinity to a target RNA. For developing the screening protocol, constituents of the human U1 snRNP were utilized as model system. The RNA partner consisted of the U1-RNA stem-loop II and the corresponding protein consisted of the 102 amino acid N-terminal recognition motif of the U1A protein, which was fused to beta-galactosidase and expressed by the recombinant lambda phage LU1A. Following binding of the fusion protein to nitrocellulose membranes, hybridization with a 32P-labeled U1-RNA ligand was carried out to detect specific RNA-protein interaction. Parameters influencing the specificity and the detection limit of binding were systematically investigated with the aid of the model system. Processing the nitrocellulose membranes in the presence of transition metals greatly increased the signal:background ratio. A simple screening protocol involving a single-buffer system was developed. Specific RNA-protein interaction could be detected in the presence of a large excess of recombinant phages from a cDNA library. Only moderate binding affinities (Kd = 10(-8) M) were required. The suitability of the RNA-ligand screening protocol was demonstrated by the identification of new viroid-RNA binding proteins from tomato.
Sägesser, R. Martinez, E. Tsagris, M. Tabler, M.
Nucleic acids research.
1997.
25(19).
3816-22.
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