Os01g0233500
The rice Os01g0233500 was reported as Orysa;CycA1;1 in 2006 [1] by researchers from China.
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Annotated Information
Function
- Cyclins, the known activators for activity of CDKs, play crucial roles for cell cycle progression in eukaryotes.
- In plants, cyclin binding not only activates CDKs by inducing a configuration alteration at the catalytic sites, but also contributes to the subcellular localization and substrate specificity of the complex as well as regulation of protein stability.
Evolution
- Phylogenetic analysis indicated that both Arabidopsis and rice shared eight types of cyclins, A-, B-, D-, H-, L-, SDS-, T- and P-type, whereas C- and J18-type cyclins were specific to Arabidopsis, and F-type cyclins, lacking clear homologues in Arabidopsis, were unique to rice.
Knowledge extension
- Similar to animals and yeasts, cell proliferation in plants is mainly controlled by a family of cyclin-dependent kinases (CDKs). The activity of CDKs is directly regulated by binding and activation of cyclins as well as other mechanisms that consist of protein phosphorylation/ dephosphorylation by specific kinases/phosphatases, proteolysis, CDK inhibitor protein (CKI) binding, etc.
- Cyclins were initially discovered in marine inverte-brates as proteins that accumulated at specific time points of the cell cycle and were subsequently degraded quickly.
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Labs working on this gene
- Rice Functional Genomics, Joint Laboratory of Temasek Life Sciences Laboratory of Singapore and Institute of Genetics and Developmental Biology
- Institute of Genetics and Developmental Biology, The Chinese Academy of Sciences, 100101 Beijing, China
- Rice Functional Genomics Group, Temasek Life Science Laboratory, 1 Research Link, The National University of Singapore, 117604 Singapore, Singapore
References
- ↑ La H, Li J, Ji Z, Cheng Y, Li X, Jiang S, Venkatesh PN, Ramachandran S. Genome-wide analysis of cyclin family in rice (Oryza Sativa L.). Mol Genet Genomics. 2006 Apr;275(4):374-86. Epub 2006 Jan 25. PubMed PMID: 16435118.
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