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Protein import into chloroplasts: the Tic complex and its regulation.

机译:蛋白质输入叶绿体:Tic复合物及其调控。

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摘要

Chloroplasts like mitochondria were derived from an endosymbiontic event. Due to the massive gene transfer to the nucleus during endosymbiosis, only a limited number of chloroplastic proteins are still encoded for in the plastid genome. Most of the nuclear-encoded plastidic proteins are post-translationally translocated back to the chloroplast via the general import pathway through distinct outer and inner envelope membrane protein complexes, the Toc and Tic translocons (Translocon at the outer/inner envelope membrane of chloroplasts). Eight Tic subunits have been described so far, including two potential channel proteins (Tic110 and Tic20), the "motor complex" (Tic40 associated with the stromal chaperone Hsp93) and the "redox regulon" (Tic62, Tic55, and Tic32) involved in regulation of protein import via the metabolic redox status of the chloroplast. Regulation can additionally occur via thioredoxins (Tic110 and Tic55) or via the calcium/calmodulin network (Tic110 and Tic32). In this review we present the current knowledge about the Tic complex focusing on its regulation and addressing some still open questions.
机译:叶绿体(如线粒体)源自共生事件。由于在共生过程中大量基因转移到细胞核,所以在质体基因组中仍然只编码有限数量的叶绿体蛋白。大多数核编码的质体蛋白通过一般的导入途径,通过不同的外部和内部包膜膜复合物,Toc和Tic translocons(叶绿体的外部/内部包膜膜上的Translocon),经翻译后转位回叶绿体。到目前为止,已经描述了八个Tic亚基,包括两个潜在的通道蛋白(Tic110和Tic20),“运动复合物”(与基质伴侣Hsp93相关的Tic40)和“氧化还原调节剂”(Tic62,Tic55和Tic32)。通过叶绿体的代谢氧化还原状态调节蛋白质的进口。调节还可以通过硫氧还蛋白(Tic110和Tic55)或通过钙/钙调蛋白网络(Tic110和Tic32)进行。在这篇综述中,我们介绍了有关Tic复合物的最新知识,重点在于其监管并解决了一些尚待解决的问题。

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