Difference between revisions of "Os12g0102400"
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===Expression=== | ===Expression=== | ||
Please input expression information here. | Please input expression information here. | ||
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| + | Some modified types of RINGs including RING-v, RING-D, RINGS/T, RING-G, and RING-C2 exist in various plant genomes. Interestingly, only two RING-C2 types exist in the rice genome, whereas 10 occur in Arabidopsis and 10 in apple, respectively. | ||
===Evolution=== | ===Evolution=== | ||
Revision as of 08:01, 1 June 2014
Please input one-sentence summary here.
Contents
Annotated Information
Function
It is a gene encoding RING-C2 type protein in rice, called OsRINGC2-2 located on chromosome 12. RING (Really Interesting New Gene) finger proteins are believed to play a critical role in mediating the transfer of ubiquitin to heterogeneous substrate(s). While the two canonical types, RING-H2 and RING-HC, have been well-characterized, the molecular functions of the modified types, particularly the RING-C2 types, remain elusive. We isolated two rice genes harboring the RING-C2 domain on the distal parts of rice chromosomes 11 and 12, termed OsRINGC2-1 and OsRINGC2-2, respectively. A comparison of sequence divergences between 10 duplicate pairs on the distal parts of rice chromosomes 11 and 12 and randomly selected duplicate pairs suggested that OsRINGC2-1 and OsRINGC2-2 have evolved in concert via gene conversion. An in vitro ubiquitination assay revealed that both proteins possess E3 ligase activity, suggesting that the innate functions of these RING domains have not been affected by their modifications during evolution. Subcellular localizations were strikingly different; OsRINGC2-1 was found only in the cytoplasm with many punctate complexes, whereas OsRINGC2-2 was observed in both the nucleus and cytoplasm. The expression patterns of both genes showed striking differences in response to salt stress, whereas plants heterogeneous for both genes mediated salt tolerance in Arabidopsis, supporting the notion of concerted evolution. These results shed light on the molecular functions of OsRINGC2-1 and OsRINGC2-2 and provide insight into their molecular evolution.
Expression
Please input expression information here.
Some modified types of RINGs including RING-v, RING-D, RINGS/T, RING-G, and RING-C2 exist in various plant genomes. Interestingly, only two RING-C2 types exist in the rice genome, whereas 10 occur in Arabidopsis and 10 in apple, respectively.
Evolution
Please input evolution information here.
You can also add sub-section(s) at will.
Labs working on this gene
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Jung, Chang Gyo, Lim, Sung Don, Hwang, Sun-Goo, & Jang, Cheol Seong. (2012). Molecular characterization and concerted evolution of two genes encoding RING-C2 type proteins in rice. Gene, 505(1), 9-18. doi: http://dx.doi.org/10.1016/j.gene.2012.05.060
Structured Information
| Gene Name |
Os12g0102400 |
|---|---|
| Description |
Zinc finger, RING-type domain containing protein |
| Version |
NM_001071769.1 GI:115486859 GeneID:4351244 |
| Length |
6708 bp |
| Definition |
Oryza sativa Japonica Group Os12g0102400, complete gene. |
| Source |
Oryza sativa Japonica Group ORGANISM Oryza sativa Japonica Group
Eukaryota; Viridiplantae; Streptophyta; Embryophyta; Tracheophyta;
Spermatophyta; Magnoliophyta; Liliopsida; Poales; Poaceae; BEP
clade; Ehrhartoideae; Oryzeae; Oryza.
|
| Chromosome | |
| Location |
Chromosome 12:104922..111629 |
| Sequence Coding Region |
105119..105120,105421..105520,105598..105725,105939..106101,106198..106310 |
| Expression | |
| Genome Context |
<gbrowseImage1> name=NC_008405:104922..111629 source=RiceChromosome12 preset=GeneLocation </gbrowseImage1> |
| Gene Structure |
<gbrowseImage2> name=NC_008405:104922..111629 source=RiceChromosome12 preset=GeneLocation </gbrowseImage2> |
| Coding Sequence |
<cdnaseq>atgatgaccatgagcgacgatggagaccgcacctgcccgctctgtgctgaggacatggacatcactgaccagcagctcaagccctgcaaatgcggctatgagatttgtgtctggtgctggcaccacatcattgatatggctgagaaagaggacactgagggccgctgccccgcatgccgcactcgctatgacaaagataggattgtcaagatggctgccacttgtgacaggacggtagtggagaaaaatgtggacaagaaacagaagacccaaaaggtcaagtcaaaggccgcggtaactgtggaagctaagaaacatcttgctagcgtcagggttatccagagaaacctcgtgtacataattggactacctgcaaatttatgcaacgaaagcatacttgagcgcagggaatactttggtcagtatggcaaggttctgaaagtttcagtttctcggccgactggggctccttcccagcaggcaccaacaaacaacagtatcagcgtatatattacatatgccaaagaagaagaggccatcaggtgtattcaagctgtacacaattttgttttggaagggaaagtgttaagagcgtgctttggtactacaaagtattgccatgcatggctgcggaacatgacctgtggaaatccagattgtctctatttacatgatgtaggaagccaggaagatagtttcactaaagatgagataatctcagcatatacaaggagtagggttccccaaatggcgtctaatgtttctcaaagacgcgcagggactgtattacctcctccagcagaagatttctcatatagtgcagtggttgcagctaaacatccaatcaagaatggaataactaatactgcaaatcaatccaggctttcgcctccaaacagtagttctgggagatccacacttccaccagctgcttcatgggggcatcgcgatttgaataccaggacaacagcaactggggtggcatcgtcacaatctcttactaaatcaaaagcagatcctcaaagtaattcattctcgagttcttcgactgtttcaagtacaaaactaccttcttcatggaatgatgacacaagcacagttccgaaaatgacggaaggacgagatagtttgtctaaaaccttgaagccatataagcctggtattgcaaaggaaacccaagctgtaacatcactggagtcatcgcttgacatagacttctctaccataccttcagcttggaacgatgatgatgtcacatcagatggcatgtcaaaaggaagtgacgagaagcaggttgtaaatgacaatggaaagtttgaatgttcagtttcttcaaagccagctgaatcagggcatcttacatcgaagtcaacgacatcaccaaagaaagacatcgcagtaaacagtaccaggcaaagtcctctaaattgtgtatcaagtccatcggtttctaaatcagaagtaaaggatggtgatggtgattaccaagtaaccaacatggcttctaaaacatctactttggtaattagaaaggaccaatctaatcaagcagctattgacacagcaaccgaagatactagatctgagagcacggatattgataggctttctgttggagtatcttcagtaacattaagcagaaaagatggggttcaaagtattgccgaaaaccaacaaccggatgcaatcctaagtacttcagttgtggtgccctttagtcagaatttgaaacttgctgagtgtaatgattctacatgtcagcctagttcagataagcatcgtgattggtgttcagatatccagagtagtgtgtctcctcagttaaatgacatagaaagttatgcagtagccactgataaatctcatggtagagtgctggatgctgctgatcaagcttcgtcttcaccatatgtccatttccctaacactgctcctatttcactgtggaatggtaaagagattaaccatacatcaacaagtgatagaacttccacaatgatgcaacctgggctgttatcttcagttgacagcacttctaccatgttaaatggacatcaagaagggctagggactatatatgcacctggtaaggtttctgaacatcctagaatgaaaaaccatcagcctggagcagttggtgcagtgagaattgataacataggcagttttgacaaggctgtaagtgtaaataaggatgagagcagcataattgctgatattttgtctttggagtttgatccatgggatgagtcgtattcaacggctaacaattttgctaagatgcttagtgcatctgaaaagaacgatgtgctttttgatgcacgttcatggaaaacaaaaaccagcaatagtgagtctagattttcatttgctagacaagataatcaaggaagcctcctagattcatctatgagaaattataaaagtgagcagaatttcagtttgccatcccagaattctcatggaaacatttatcagagtggcattgcatttcaatctcctgaggaaggtttctcaaagagcaactctcttactatgttggatatgctagctaccggcacatcaaagcctaaagtatccgcgcctcctggattttcagcaccagcaagagttcctactgggttttcttctggattttcatcccatgaggggttgaatccacctccaggattttcatctcataatgggcctaatccccctcctggattttcttctcagggtgggtctaatcagatctatggttcggcatactcagaaactcgcccatttgatgatcttttgggtataaatactagccattatcaaccacagttagctagacaaacaagtgatatagaatttgttgatcctgctatattggctgtgggtaaagggcggatgcctggaataagtgattcagggttggagatgaaaacttcccatacttttccttcgcagttgcaaacatcaaatgatccaaggtttcaattacttatgcagcagaacatgccttcccatcaaaatgttggatttgcagaacatgttcaagatgcattcaaccctatgaatgataattatcttgcatcccgacttatacctcagaaccatggttctctatcctcttacacacagatgtcactccaacaacctagaagctcacatcttacaaatggtcattgggatggctggggtgatttgagacaagggaataatgtttccatgcctgacatgtcaaggatgttatatccaactgaagcaaacaacttccacatgctgggttcaaatgatctgtataacagagcttttggactgtga</cdnaseq> |
| Protein Sequence |
<aaseq>MMTMSDDGDRTCPLCAEDMDITDQQLKPCKCGYEICVWCWHHII DMAEKEDTEGRCPACRTRYDKDRIVKMAATCDRTVVEKNVDKKQKTQKVKSKAAVTVE AKKHLASVRVIQRNLVYIIGLPANLCNESILERREYFGQYGKVLKVSVSRPTGAPSQQ APTNNSISVYITYAKEEEAIRCIQAVHNFVLEGKVLRACFGTTKYCHAWLRNMTCGNP DCLYLHDVGSQEDSFTKDEIISAYTRSRVPQMASNVSQRRAGTVLPPPAEDFSYSAVV AAKHPIKNGITNTANQSRLSPPNSSSGRSTLPPAASWGHRDLNTRTTATGVASSQSLT KSKADPQSNSFSSSSTVSSTKLPSSWNDDTSTVPKMTEGRDSLSKTLKPYKPGIAKET QAVTSLESSLDIDFSTIPSAWNDDDVTSDGMSKGSDEKQVVNDNGKFECSVSSKPAES GHLTSKSTTSPKKDIAVNSTRQSPLNCVSSPSVSKSEVKDGDGDYQVTNMASKTSTLV IRKDQSNQAAIDTATEDTRSESTDIDRLSVGVSSVTLSRKDGVQSIAENQQPDAILST SVVVPFSQNLKLAECNDSTCQPSSDKHRDWCSDIQSSVSPQLNDIESYAVATDKSHGR VLDAADQASSSPYVHFPNTAPISLWNGKEINHTSTSDRTSTMMQPGLLSSVDSTSTML NGHQEGLGTIYAPGKVSEHPRMKNHQPGAVGAVRIDNIGSFDKAVSVNKDESSIIADI LSLEFDPWDESYSTANNFAKMLSASEKNDVLFDARSWKTKTSNSESRFSFARQDNQGS LLDSSMRNYKSEQNFSLPSQNSHGNIYQSGIAFQSPEEGFSKSNSLTMLDMLATGTSK PKVSAPPGFSAPARVPTGFSSGFSSHEGLNPPPGFSSHNGPNPPPGFSSQGGSNQIYG SAYSETRPFDDLLGINTSHYQPQLARQTSDIEFVDPAILAVGKGRMPGISDSGLEMKT SHTFPSQLQTSNDPRFQLLMQQNMPSHQNVGFAEHVQDAFNPMNDNYLASRLIPQNHG SLSSYTQMSLQQPRSSHLTNGHWDGWGDLRQGNNVSMPDMSRMLYPTEANNFHMLGSN DLYNRAFGL</aaseq> |
| Gene Sequence |
<dnaseqindica>198..199#500..599#677..804#1018..1180#1277..1389#2105..2188#2272..2320#2410..2501#2759..2888#2985..3061#3137..4755#5103..5300#5366..5904#acgcgaacacgacgacaccagccagcaagcagcggaggagagagagagagagagagagactccatagacggccatcgatcgtacgcgactccccccatccatccatccacccgccggcgccccctccctctcatcgatcgatcgattcccaccgccgcccccgttttgaccacctacctagggtttcccccatcggaatgtgagtacttcaccctctctgatcccccccttttcttttctgattgttgctccaatccacttgggagcataatagactctttggattggatcctcgatttgaaggatcagcccctgcgcttgcccccccacccctcactttctcgtttattcgatttgatgataggaagcttctctctcttattagggattgattgattacaccgtgttactacagattgttattcccacaaacaaacaatctcatgtactactaataatattatctttcatgtctcctgccgctgaattgctcccgaaggatgaccatgagcgacgatggagaccgcacctgcccgctctgtgctgaggacatggacatcactgaccagcagctcaagccctgcaaatgcggctatgaggtttcttcccttccctccccaccactctactctccacaccccccttccattcacctcccttttgcatctcactgcagatttgtgtctggtgctggcaccacatcattgatatggctgagaaagaggacactgagggccgctgccccgcatgccgcactcgctatgacaaagataggattgtcaagatggctgccacttgtgacaggtccctccatctcaaaccgtcttttttcctttcacctcactaactgcactgacatgcgaagatggccgcacaagagcttagggtcttcagttcaacaaaacgaaacatcacccagttgtcgtgaattgtggtttgcaaagcgccataagcaacttcttttacctgtctatcgcatcggaaattttgtacttatgcttcttttaatggaaacaggacggtagtggagaaaaatgtggacaagaaacagaagacccaaaaggtcaagtcaaaggccgcggtaactgtggaagctaagaaacatcttgctagcgtcagggttatccagagaaacctcgtgtacataattggactacctgcaaatttatgcaacgaaagcgtgagtaccatattgtgcacagacagattcttttcaactgagtaatgtgtatattttgtttctcaccttggcaacacaattcattttttatttcagatacttgagcgcagggaatactttggtcagtatggcaaggttctgaaagtttcagtttctcggccgactggggctccttcccagcaggcaccaacaaacaacagtatcagcgtgtatgtttatgtgaatctcatgccacatgtttatgatgtttctctcatggataaacatgacctattatttcaagtgattagatatatcttaccgtatgtacaagtggtgttttcaagttatgctctcctgtactttccaagcctagagcatttaagcataggtgatttattgttgagaaattatatgcttaaatatagatgaaaatgatggctaattcaaatatgatatgtccatgttcttgcaattaatttcagatttatattacctacttaacagtatgatttgactaaggatcatgaatttccatatccatttgtgaatcagtgaatgccacacctagcagcctagtagccaaagcaaaagatgtagatttctagtgttgaataatcagataaatgcaaacgtgactgcttcagtcatatcatgatcattatattaactatggtatgtactaattgtatgtttacatcataagtctgattgagctcagaacctttgcatatgcagatgtcaggtatttcatagaatttacctcaaggattatcaaaattttcctgtctgagcactttgtagttctttgaatgcagctccatctttctcttaggaatcctcagcatcgactggatccatgtagattccaaaatgtgaaacttagattgtatatagaatgcactgtgtgtgttgaaaatgggctcattattgtgatgttttcagatatattacatatgccaaagaagaagaggccatcaggtgtattcaagctgtacacaattttgttttggaagggaaagtgttaaggtcaccctctatgctttgtagccttattgcagcagttttttttacataacgcagttagcctaatcgttaatggtttgttgcagagcgtgctttggtactacaaagtattgccatgcatggctgcggaacatggtatactcgttgcttcatcctggcagctttatttaccattactctacctactgccatccttctgagggcttttatcttctcttttttagacctgtggaaatccagattgtctctatttacatgatgtaggaagccaggaagatagtttcactaaagatgagataatctcagcatatacaaggtaagctgagctcgttgaacatatgtgtggaaagttccactgttccttattatggcactgtgccagtcctagccatatgtactttttcccctgccaagcctactgctactgttactatataatgctcttctgttctgagaatttgtagtctatcaacttttccctatactatgcatgaattattatgctttgctaaatgctaagattttcagtagttctgattggtgctttcgactcatcatctctcgttcctacaggagtagggttccccaaatggcgtctaatgtttctcaaagacgcgcagggactgtattacctcctccagcagaagatttctcatatagtgcagtggttgcagctaaacatccaatcaagaatggaataactgtatgttttttatactgaaaaatccattgggacactggacatgttcatttctgtttgatttcatgctgctacattaactggtcttattttgtacagaatactgcaaatcaatccaggctttcgcctccaaacagtagttctgggagatccacacttccaccagctgcttcatggtatgatgctgcttagggtctcatgatatgttttaaaatgtgaatttgttgctaaaatttttttggtatgagcagggggcatcgcgatttgaataccaggacaacagcaactggggtggcatcgtcacaatctcttactaaatcaaaagcagatcctcaaagtaattcattctcgagttcttcgactgtttcaagtacaaaactaccttcttcatggaatgatgacacaagcacagttccgaaaatgacggaaggacgagatagtttgtctaaaaccttgaagccatataagcctggtattgcaaaggaaacccaagctgtaacatcactggagtcatcgcttgacatagacttctctaccataccttcagcttggaacgatgatgatgtcacatcagatggcatgtcaaaaggaagtgacgagaagcaggttgtaaatgacaatggaaagtttgaatgttcagtttcttcaaagccagctgaatcagggcatcttacatcgaagtcaacgacatcaccaaagaaagacatcgcagtaaacagtaccaggcaaagtcctctaaattgtgtatcaagtccatcggtttctaaatcagaagtaaaggatggtgatggtgattaccaagtaaccaacatggcttctaaaacatctactttggtaattagaaaggaccaatctaatcaagcagctattgacacagcaaccgaagatactagatctgagagcacggatattgataggctttctgttggagtatcttcagtaacattaagcagaaaagatggggttcaaagtattgccgaaaaccaacaaccggatgcaatcctaagtacttcagttgtggtgccctttagtcagaatttgaaacttgctgagtgtaatgattctacatgtcagcctagttcagataagcatcgtgattggtgttcagatatccagagtagtgtgtctcctcagttaaatgacatagaaagttatgcagtagccactgataaatctcatggtagagtgctggatgctgctgatcaagcttcgtcttcaccatatgtccatttccctaacactgctcctatttcactgtggaatggtaaagagattaaccatacatcaacaagtgatagaacttccacaatgatgcaacctgggctgttatcttcagttgacagcacttctaccatgttaaatggacatcaagaagggctagggactatatatgcacctggtaaggtttctgaacatcctagaatgaaaaaccatcagcctggagcagttggtgcagtgagaattgataacataggcagttttgacaaggctgtaagtgtaaataaggatgagagcagcataattgctgatattttgtctttggagtttgatccatgggatgagtcgtattcaacggctaacaattttgctaagatgcttagtgcatctgaaaagaacgatgtgctttttgatgcacgttcatggaaaacaaaaaccagcaatagtgagtctagattttcatttgctagacaagataatcaaggaagcctcctagattcatctatgagaaattataaaagtgagcagaatttcagtttgccatcccagaattctcatggaaacatttatcagagtggcattgcatttcaatctcctgaggaaggtttctcaaagagcaactctcttactatgttggatatgctagctaccggtgagtagtatgaagttatattacgctgcttgtttattaaattcttaatgaacagtgagatgcagtactgcagttaatgtttttattttaatatttattttatatatttgaggtaatattaatgtgtcacaaaacaaatagatatattcgctaggatacagaagggatccaatgtttgtgcacccattcccctcttttaattcaatgttggcaatcttgtaacatatgtgattgggttgtggagctattaagtataaaatgcactgtgtttttatgttgaagcattttagtaactgatgttttcaccatggtacttctatgtacttacaaaaaaaatgctttttcaggcacatcaaagcctaaagtatccgcgcctcctggattttcagcaccagcaagagttcctactgggttttcttctggattttcatcccatgaggggttgaatccacctccaggattttcatctcataatgggcctaatccccctcctggattttcttctcagggtgggtctaatcagatctatggttcggcatactcaggttctctctctctctgcttctcctaaaacaatttcagtttctaataagtttgcaatgttttgcagaaactcgcccatttgatgatcttttgggtataaatactagccattatcaaccacagttagctagacaaacaagtgatatagaatttgttgatcctgctatattggctgtgggtaaagggcggatgcctggaataagtgattcagggttggagatgaaaacttcccatacttttccttcgcagttgcaaacatcaaatgatccaaggtttcaattacttatgcagcagaacatgccttcccatcaaaatgttggatttgcagaacatgttcaagatgcattcaaccctatgaatgataattatcttgcatcccgacttatacctcagaaccatggttctctatcctcttacacacagatgtcactccaacaacctagaagctcacatcttacaaatggtcattgggatggctggggtgatttgagacaagggaataatgtttccatgcctgacatgtcaaggatgttatatccaactgaagcaaacaacttccacatgctgggttcaaatgatctgtataacagagcttttggactgtgattatctttgggagatgcgacttgacctatcacccagctaacttgcacatttctcagttcttgaaattgattggttgcacaggctcaacttggtgattgttgagcttgtggattggcgcatgagtgtttattgaaaggcattggattcaagtggaccagcatgaaactgggtgtgtaaccagacgtttcaagcaccaggtttgtgtttcaccattctattcacatctttttttactatattatatgcatggcttgctaccccttgtcctggataggtggtgtgagttatcttcttattgcattggttagtactgtttgtgcttggtctcttccattttattctggaatttgttgctgtgtttgttctggaatttgctggcaagttactcaccatttgcctcgtttggtcatcaggttctgttttgggcgaaaggatatatatatcaaagatgcatccatgaggttgtccttcaagtttatatatacttgtggtggaagcagactcgagaatatataaaccgtttagcatttgcttctttcttctttttttgccgtcatgtggaaatattttcttggttttggcatagtaaaagcgtcattttgtacatgatacgttactcgttgctagtagcttttgtggtgcacatgagattattttgttgatgggtttgctgaaccaaacgtaaatggctatatggtaccaggccagccagcttatgctgaattgggtgttgtttggtgttgaatcaaaaacaaggtcgaggagtacttcggtgtgctgttgttaataatatcaattcatgac</dnaseqindica> 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