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Chloroplast RNA-binding proteins: repair and regulation of chloroplast transcripts.

机译:叶绿体RNA结合蛋白:叶绿体转录本的修复和调控。

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摘要

Chloroplast RNA metabolism has greatly diverged from the cyanobacterial ancestral state. The number of processing sites per transcript has increased and novel processing steps not found in bacteria have been acquired. Whereas many of the processing steps are essential for chloroplast development, it is unclear why such steps evolved at all. In this article, two hypotheses seeking to explain the complexity of chloroplast RNA metabolism are explored: the genomic debugging hypothesis and the nuclear regulation hypothesis. The nuclear-encoded RNA processing factors underlying these two alternative, but not mutually exclusive, hypotheses have very different characteristics. We propose that pentatricopeptide repeat (PPR) proteins, with high sequence specificity and essential roles in various RNA-processing steps, act largely as genomic debuggers. By contrast, the chloroplast ribonucleoproteins (cpRNPs), which are strongly modulated by external and internal stimuli, are suggested to be major players in transducing signals to the chloroplast transcript pool.
机译:叶绿体RNA的代谢与蓝细菌的祖先状态大相径庭。每个转录本的加工位点数量已经增加,并且已经获得了细菌中未发现的新加工步骤。尽管许多加工步骤对于叶绿体的发育至关重要,但尚不清楚为什么这些步骤会逐步发展。在本文中,探索了两个假设以解释叶绿体RNA代谢的复杂性:基因组调试假设和核调控假设。这两个但不是互相排斥的假说所依据的核编码的RNA加工因子具有非常不同的特征。我们建议具有高序列特异性和在各种RNA处理步骤中的重要作用的五肽重复(PPR)蛋白在很大程度上充当基因组调试器。相反,被外部和内部刺激强烈调节的叶绿体核糖核蛋白(cpRNPs)被认为是将信号转导至叶绿体转录本池的主要参与者。

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