首页> 外文期刊>Plant and cell physiology >Red Light and Calmodulin Regulate the Expression of the psbA Binding Protein Genes in Chlamydomonas reinhardtii.
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Red Light and Calmodulin Regulate the Expression of the psbA Binding Protein Genes in Chlamydomonas reinhardtii.

机译:红光和钙调蛋白调节莱茵衣藻中psbA结合蛋白基因的表达。

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摘要

In the unicellular green alga Chlamydomonas reinhardtii, translation of the chloroplast-encoded psbA mRNA is regulated by the light-dependent binding of a nuclear-encoded protein complex (RB38, RB47, RB55 and RB60) to the 5'-untranslated region of the RNA. Despite the absence of any report identifying a red light photoreceptor within this alga, we show that the expression of the rb38, rb47 and rb60 genes, as well as the nuclear-encoded psbO gene that directs the synthesis of OEE1 (oxygen evolving enhancer 1), is differentially regulated by red light. Further elucidation of the signal transduction pathway shows that calmodulin is an important messenger in the signaling cascade that leads to the expression of rb38, rb60 and psbO, and that a chloroplast signal affects rb47 at the translational level. While there may be several factors involved in the cascade of events from the perception of red light to the expression of the rb and psbO genes, our data suggest the involvement of a red light photoreceptor. Future studies will elucidate this receptor and the additional components of this red light signaling expression pathway in C. reinhardtii.
机译:在单细胞绿藻莱茵衣藻中,叶绿体编码的psbA mRNA的翻译受核编码蛋白复合物(RB38,RB47,RB55和RB60)与RNA的5'-非翻译区的光依赖性结合而调节。 。尽管没有任何报道可鉴定该藻内的红光感光体,但我们显示了rb38,rb47和rb60基因的表达以及指导OEE1(氧气释放增强剂1)合成的核编码psbO基因的表达。 ,由红光差分调节。信号转导途径的进一步阐明表明钙调蛋白是信号传导级联中的重要信使,其导致rb38,rb60和psbO的表达,并且叶绿体信号在翻译水平上影响rb47。尽管从感知红光到rb和psbO基因的表达,事件的级联过程可能涉及多个因素,但我们的数据表明红光感光体的参与。未来的研究将阐明莱茵衣藻中的该受体和该红光信号表达途径的其他成分。

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