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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >The plastid transcription machinery and its coordination with the expression of nuclear genome: Plastid-Encoded Polymerase, Nuclear-Encoded Polymerase and the Genomes Uncoupled 1-mediated retrograde communication
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The plastid transcription machinery and its coordination with the expression of nuclear genome: Plastid-Encoded Polymerase, Nuclear-Encoded Polymerase and the Genomes Uncoupled 1-mediated retrograde communication

机译:塑体转录机械及其与核基因组表达的协调:体积编码聚合酶,核编码聚合酶和基因组未耦合的1介导的逆行通信

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摘要

Plastid genes in higher plants are transcribed by at least two different RNA polymerases, the plastid-encoded RNA polymerase (PEP), a bacteria-like core enzyme whose subunits are encoded by plastid genes (rpoA, rpoB, rpoC1 and rpoC2), and the nuclear-encoded plastid RNA polymerase (NEP), a monomeric bacteriophage-type RNA polymerase. Both PEP and NEP enzymes are active in non-green plastids and in chloroplasts at all developmental stages. Their transcriptional activity is affected by endogenous and exogenous factors and requires a strict coordination within the plastid and with the nuclear gene expression machinery. This review focuses on the different molecular mechanisms underlying chloroplast transcription regulation and its coordination with the photosynthesis-associated nuclear genes (PhANGs) expression. Particular attention is given to the link between NEP and PEP activity and the GUN1- (Genomes Uncoupled 1) mediated chloroplast-to-nucleus retrograde communication with respect to the Delta rpo adaptive response, i.e. the increased accumulation of NEP-dependent transcripts upon depletion of PEP activity, and the editing-level changes observed in NEP-dependent transcripts, including rpoB and rpoC1, in gun1 cotyledons after norflurazon or lincomycin treatment. The role of cytosolic preproteins and HSP90 chaperone as components of the GUN1-retrograde signalling pathway, when chloroplast biogenesis is inhibited in Arabidopsis cotyledons, is also discussed.
机译:高等植物中的塑性基因由至少两种不同的RNA聚合酶,体积编码的RNA聚合酶(PEP),一种亚基由塑体基因(RPOA,RPOB,RPOC1和RPOC2)编码的细菌样核心酶。和核编码的体积RNA聚合酶(NEP),单体噬菌体型RNA聚合酶。 PEP和NEP酶在所有发育阶段的非绿色塑体和叶绿体中都活跃。它们的转录活动受内源性和外源性因素的影响,需要在塑性体内和核基因表达机制中严格地协调。该综述侧重于叶绿体转录调节的不同分子机制及其与光合作用相关核基因(PHANG)表达的协调。特别注意NEP和PEP活动之间的链接,枪1-(基因组未替换1)介导的叶绿体 - 核逆行与ΔRPO自适应响应的逆行通信,即在耗尽时增加了NEP依赖性转录物的累积PEP活动,在NORFLURAZON或LINCONCORCIN治疗后,在NEP依赖性转录物中观察到在NEP依赖性转录物中观察到的编辑水平变化,包括RPOB和RPOC1。还讨论了Cytosolic Prepliceins和HSP90伴侣作为枪逆行信号传导途径的组分作为枪体的成分的作用。

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