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Altered mRNA binding activity and decreased translational initiation in a nuclear mutant lacking translation of the chloroplast psbA mRNA.

机译:在缺少叶绿体psbA mRNA翻译的核突变体中mRNA结合活性改变翻译起始减少。

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摘要

Translational regulation has been identified as one of the key steps in chloroplast-encoded gene expression. Genetic and biochemical analysis with Chlamydomonas reinhardtii has implicated nucleus-encoded factors that interact specifically with the 5' untranslated region of chloroplast mRNAs to mediate light-activated translation. F35 is a nuclear mutation in C. reinhardtii that specifically affects translation of the psbA mRNA (encoding D1, a core polypeptide of photosystem II), causing a photosynthetic deficiency in the mutant strain. The F35 mutant has reduced ribosome association of the psbA mRNA as a result of decreased translation initiation. This reduction in ribosome association correlates with a decrease in the stability of the mRNA. Binding activity of the psbA specific protein complex to the 5' untranslated region of the mRNA is diminished in F35 cells, and two members of this binding complex (RB47 and RB55) are reduced compared with the wild type. These data suggest that alteration of members of the psbA mRNA binding complex in F35 cells results in a reduction in psbA mRNA-protein complex formation, thereby causing a decrease in translation initiation of this mRNA.
机译:翻译调控已被确定为叶绿体编码基因表达的关键步骤之一。莱茵衣藻的遗传和生化分析表明,核编码因子与叶绿体mRNA的5'非翻译区特异性相互作用,以介导光激活的翻译。 F35是莱茵衣藻中的一个核突变,它特异性地影响psbA mRNA的翻译(编码D1,是光系统II的核心多肽),导致突变菌株中的光合缺陷。由于翻译起始减少,F35突变体降低了psbA mRNA的核糖体缔合。核糖体缔合的这种降低与mRNA稳定性的降低相关。在F35细胞中,psbA特异性蛋白复合物与mRNA的5'非翻译区的结合活性减弱,与野生型相比,该结合复合物的两个成员(RB47和RB55)减少了。这些数据表明F35细胞中psbA mRNA结合复合物成员的改变导致psbA mRNA-蛋白质复合物形成的减少,从而导致该mRNA翻译起始的减少。

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