Difference between revisions of "Os11g0104300"
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==Annotated Information== | ==Annotated Information== | ||
| − | === | + | ===Name=== |
''DWARF53''(''D53'') | ''DWARF53''(''D53'') | ||
| − | === | + | ===Function=== |
''DWARF53''(''D53'') encodes a substrate of the SCF-D3 ubiquitination complex and functions as a repressor of SL signalling, whose hormone-induced degradation represents a key molecular link between SL perception and responses. D53 can interact with transcriptional co-repressors known as TOPLESS-RELATED PROTEINS. | ''DWARF53''(''D53'') encodes a substrate of the SCF-D3 ubiquitination complex and functions as a repressor of SL signalling, whose hormone-induced degradation represents a key molecular link between SL perception and responses. D53 can interact with transcriptional co-repressors known as TOPLESS-RELATED PROTEINS. | ||
| − | === | + | ===Phenotype=== |
The rice (Oryza sativa) d53 mutant, which produces an exaggerated number of tillers compared to wild-type plants, is caused by a gain-of-function mutation and is insensitive to exogenous SL treatment. | The rice (Oryza sativa) d53 mutant, which produces an exaggerated number of tillers compared to wild-type plants, is caused by a gain-of-function mutation and is insensitive to exogenous SL treatment. | ||
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===Expression=== | ===Expression=== | ||
| − | + | The ''D53'' gene product shares predicted features with the class I Clp ATPase proteins and can form a complex with thea/bhydrolase protein DWARF 14 (D14) and the F-box protein DWARF 3 (D3), two previously identified signalling components potentially responsible for SL perception. In a D14- and D3-dependent manner, SLs induce D53 degradation by the proteasome and abrogate its activity in promoting axillary bud outgrowth. | |
===Evolution=== | ===Evolution=== | ||
Revision as of 05:50, 28 May 2014
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Contents
Annotated Information
Name
DWARF53(D53)
Function
DWARF53(D53) encodes a substrate of the SCF-D3 ubiquitination complex and functions as a repressor of SL signalling, whose hormone-induced degradation represents a key molecular link between SL perception and responses. D53 can interact with transcriptional co-repressors known as TOPLESS-RELATED PROTEINS.
Phenotype
The rice (Oryza sativa) d53 mutant, which produces an exaggerated number of tillers compared to wild-type plants, is caused by a gain-of-function mutation and is insensitive to exogenous SL treatment.
Expression
The D53 gene product shares predicted features with the class I Clp ATPase proteins and can form a complex with thea/bhydrolase protein DWARF 14 (D14) and the F-box protein DWARF 3 (D3), two previously identified signalling components potentially responsible for SL perception. In a D14- and D3-dependent manner, SLs induce D53 degradation by the proteasome and abrogate its activity in promoting axillary bud outgrowth.
Evolution
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Labs working on this gene
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References
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Structured Information
| Gene Name |
Os11g0104300 |
|---|---|
| Description |
Clp, N terminal domain containing protein |
| Version |
NM_001072059.2 GI:297611030 GeneID:4349543 |
| Length |
5140 bp |
| Definition |
Oryza sativa Japonica Group Os11g0104300, 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 11:193178..198317 |
| Sequence Coding Region |
193383..194690 |
| Expression | |
| Genome Context |
<gbrowseImage1> name=NC_008404:193178..198317 source=RiceChromosome11 preset=GeneLocation </gbrowseImage1> |
| Gene Structure |
<gbrowseImage2> name=NC_008404:193178..198317 source=RiceChromosome11 preset=GeneLocation </gbrowseImage2> |
| Coding Sequence |
<cdnaseq>atgcccactccggtggccgccgcgaggcagtgcctctcgccggccgccgtccccgccctcgacgccgccgtcgcctcctctcgccgccgcgcccacgcccagactacctccctccacctcatctcctccctcctcgccccgcccgcacctcccctcctccgcgacgccctcgcccgcgcccgcagcgccgcctactcaccccgcgtccagctcaaggccctcgacctctgcttcgccgtctccctcgacaggctcccctccgtctccgcatcctcctcctcctctggcgccgccgacgagccccccgtctccaactccctcatggccgccatcaagcgctcccaggccaaccagcgccgcaacccggacaccttccacttctatcaccaggccgccaccgcccagactcccgccgccgtcaaggtcgagctctcccacctcgtcctcgccatcctcgatgaccccgtcgtcagccgcgtcttcgccgaggccggattccgcagcggggacatcaagctcgccatcctccgcccggctccgcccatgccgctcctcggccgcctccccacgcgcacccgtccgccgcctctcttcctctgcagcttcgccgccgcggacgacgccgacgtcccttcgccggccgggaatctcgccggcgcgggggaggagaactgccgccgcatcgcggagatcctctcccgcggccgcaaccccatgctcgtcggcgtcggggccgcctccgccgccgacgacttcgcggccgcctccccgtatcgtatcatccatgtcgaccccaacaccatcgaccgctcagacctcggcgtggcggcggcaatggccagtgccacctccggcctcatcataagcatcggagacctcaagcagctggtccccgatgaggacgcggaggcgcaggagaaggggcggcgggtggtggcggaggtgacgcgagtgctggagacgcacagcaaggtcggccgcgtctgggtgatggggtggtcggcaacgtacgagacctacctcgccttcctctccaaattccccttggtcgacaaggattgggacctccagctgctgccaatcaccgcggtgcatgccgccgccaccgctggccctgctgctgctgctgctggactcatgcctccggcaaccactgttgctgccttctccaagccagctgcaaggtcaagccttttctcttctcttctcttcacttttgtatccatgaattctttatgcataagattttattaccatccatttgctgactgccgtgctttctttattgtcagaatgtttcttggatag</cdnaseq> |
| Protein Sequence |
<aaseq>MPTPVAAARQCLSPAAVPALDAAVASSRRRAHAQTTSLHLISSL LAPPAPPLLRDALARARSAAYSPRVQLKALDLCFAVSLDRLPSVSASSSSSGAADEPP VSNSLMAAIKRSQANQRRNPDTFHFYHQAATAQTPAAVKVELSHLVLAILDDPVVSRV FAEAGFRSGDIKLAILRPAPPMPLLGRLPTRTRPPPLFLCSFAAADDADVPSPAGNLA GAGEENCRRIAEILSRGRNPMLVGVGAASAADDFAAASPYRIIHVDPNTIDRSDLGVA AAMASATSGLIISIGDLKQLVPDEDAEAQEKGRRVVAEVTRVLETHSKVGRVWVMGWS ATYETYLAFLSKFPLVDKDWDLQLLPITAVHAAATAGPAAAAAGLMPPATTVAAFSKP AARSSLFSSLLFTFVSMNSLCIRFYYHPFADCRAFFIVRMFLG</aaseq> |
| Gene Sequence |
<dnaseqindica>206..1513#tcaattccttccttctttccatttattttcttttattttcccaagagaaagagggtgaggaggctccatccgcgaaaagctactcgaccaacccacctgccaccctgcactttccgttattctcatttcaaccctcgcattttttacactccgctccccatgccctgtgaaaactaattacaatccagtccttcaccggtcagcgatgcccactccggtggccgccgcgaggcagtgcctctcgccggccgccgtccccgccctcgacgccgccgtcgcctcctctcgccgccgcgcccacgcccagactacctccctccacctcatctcctccctcctcgccccgcccgcacctcccctcctccgcgacgccctcgcccgcgcccgcagcgccgcctactcaccccgcgtccagctcaaggccctcgacctctgcttcgccgtctccctcgacaggctcccctccgtctccgcatcctcctcctcctctggcgccgccgacgagccccccgtctccaactccctcatggccgccatcaagcgctcccaggccaaccagcgccgcaacccggacaccttccacttctatcaccaggccgccaccgcccagactcccgccgccgtcaaggtcgagctctcccacctcgtcctcgccatcctcgatgaccccgtcgtcagccgcgtcttcgccgaggccggattccgcagcggggacatcaagctcgccatcctccgcccggctccgcccatgccgctcctcggccgcctccccacgcgcacccgtccgccgcctctcttcctctgcagcttcgccgccgcggacgacgccgacgtcccttcgccggccgggaatctcgccggcgcgggggaggagaactgccgccgcatcgcggagatcctctcccgcggccgcaaccccatgctcgtcggcgtcggggccgcctccgccgccgacgacttcgcggccgcctccccgtatcgtatcatccatgtcgaccccaacaccatcgaccgctcagacctcggcgtggcggcggcaatggccagtgccacctccggcctcatcataagcatcggagacctcaagcagctggtccccgatgaggacgcggaggcgcaggagaaggggcggcgggtggtggcggaggtgacgcgagtgctggagacgcacagcaaggtcggccgcgtctgggtgatggggtggtcggcaacgtacgagacctacctcgccttcctctccaaattccccttggtcgacaaggattgggacctccagctgctgccaatcaccgcggtgcatgccgccgccaccgctggccctgctgctgctgctgctggactcatgcctccggcaaccactgttgctgccttctccaagccagctgcaaggtcaagccttttctcttctcttctcttcacttttgtatccatgaattctttatgcataagattttattaccatccatttgctgactgccgtgctttctttattgtcagaatgtttcttggatagtagtgtatctgattaggtgtgctagtacgatttgcttatgttctttactaatttcattttttttaagtgttgatttgtgtgctttgcccattgtatggatatttttttcaacttgtgcaattgatttagtgtactactgtaattagaagcagcataggttgttaaaaaggcataaatctagaaaggtttgttttcttccactgcattttttttaaaaatgtttttacacggtcaatgatgtacaaccgtttttgtttaatgcgatggttgagttatgttctaagtgccatgttactcctgttatgttcttgttgagttatgaccgattcagttctgttaagtacgacaggagttgctggaaattttctcttctcagaagtgggttcctaatgtgttgtcatcagaaccttccagaccaacttccttctagatgctctgctgttagtcactacctgtgttatttactgatttctcagctcttttttcttttttgcctttaggatatttaatgggattttcttcttataagccttttctctgtagtcctattcttgtaatatttttggattttattactacatatgtgtggccatgaaggagaggttctattgccggtgcagaatccatatgcatacacattttgaactgcttgataaagagagactaaagtgtaaaagtaaaataatacagcttgtgtactaagagatgcaatttcatggtaaaagagtggtgcttctgctgcagcacatctgttctttactgctgtaatgctcaaattgctgatagtttgggtcatatatgtgggcagagattatttgtcattaatatgtagtatcacctatagtgaattaccttgatgcatagggctagtgatttctgtcacaacatagtattgtatggcattttattcagctgtagaaatgttaatgcttaagcgttgctggtattaatgacaaagtgacatatacataactccaatataaagcaacgatatgcttgtgtcttgacctcatagtttcaaacttgttattgcagcttgatggactcctttgttccttttggaggctttctctgtgataactacgaagagaacagcctgacagcaaattcatgcccacaggccctgcggtgccagcagtgcaatgataaatatgagcaagaagttgcaactatcattagcgcaagtggcattacagctgaagaccatcaccagggaggtcttccttccctgctgcagaatggcagcatgatgggtcctaacaatggatttgatccagtcaaggtgtgaagctacctatgtcttttggaacatttatgttaagtactgaacgcagcaagcactgcttgttgatagatgaataatttttggtcgttggtataaaagatgcacagttttttttcagtgcaggctagagatgatcggatggtattgaattcaaaaatattgaatctacggaagaagtggaatgagtactgcctgcggctccaccaagaccaccagaggatcaacagagatccttacaaaccatttccgcgctatattggtgttcccactgacaaagaaagatcagcaaattcaagcaaaggttctgagtcagttggggttcaaaaggatgttattaaaccttgtgcggtgtctgctgtacattccagctcaactgcaaggcctatttcatctccatctgtcaccaacaaaagaaatgaagatcttgtattgaaccttcaagccaggcattccaagagtgatgaaaaccttcaagaaaggggcatgcaatcccaacatggcaccctgtcgaatgttgacaatccggatgatcatgtctcaccatcatctgctgcacctgtggaaactgacttggttttgggcacccctcgagagtgtagttcgaaaggttcaagttccacctgcagtaaacgtgtagaggattcagagaggtctgtccatctggtacccaagaaggtggatgatttaaatctgaagcatccacaactctctgttcaacctaattcctgctcctggagttccataaatgttgggaaaacatcacacagtacactacactcagtagcttcaggaggcttctctgcctttggccaatggcagaaacggtcacctcttgctgcacaaaattctgatctgagcaattacaagctacttgttgaacgcctgttcaaggtagttggaaggcaggaggaagccttgagtgctatttgtgaatccattgtgcggtgccggtcaacagagtcgcgccgtggtcctaacaggaatgacatctggttgtgttttcatggttctgacagcatggccaagaagagaatcgccgtggcacttgcagagctcatgcacggcagcaaagataacttgatttatctggacctaaaccttcaggattgggatgactccagtttcagagggaagactggcatagactgcattgtggagcagttgagcaagaaacggcaatctgttctcttccttgacaacattgatagagctgactgccttgttcaggatagtctatctgatgctattaagtctggcaggttccaagacatgcgaggcaaggtggttgacattaatgactcgattgtggttttgtcaagaagcatgatacagggcagcaaaaatgggttggaagagggcctttcattttctgaagaaaagattctggcaactcgcggacatcgactgaagatcctggttgaaccgggtagggcaatcaccagtggatgccctagtggtaaggtggtagtttccccaaggcattttctcaccaaaattcaagcatctttgtgctctggttccatcagcaagagaaagctcagtatttctgatgatcaggaaaagctacaagagtcgccaagcagttcaaagcgactgcacagaacatcgagtgtaccattcgacctgaacctccctgttgatgaagatgaaccccttgatgctgatgacgacagtagtagccatgaaaattcatatggcaacacagaaaaatccattgatgcccttttgcattcggttgatggatcaatcaactttaagccgtttgactttgataaacttgctgatgacatgctgcaggagttcagcaacatactcaggaaaaatctgggttctgagtgcatgttggagattgatgttggtgcaatggaacaaatacttgccgcagcatggaaatcagaggaggataggaaacctgtgccgacctggctggagcaggtttttgccaggagccttgacgagctgaagctcaagcgtaagcatgtgagtagctctacccttagactagtggcctgtgaggacacagtaccagcagtgaaaggagacggtttaggagttttgctcccgccaagaataattctagattgttgatgatattatctgtatagggatcgctgtaattatctgtagtccacaatagtatagcattatttgttggctaaataagctctagtctagctgatgcattgccttgggttctctaattagctactgccattactgtcatatcattttctacctcagggccttttccagatatatgggcatccgaatgtatattggttgtaactactatggattgtcaatatttgattgttctatatatacatggacacatggtgctc</dnaseqindica> 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