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ClpR2的下调导致拟南芥中ClpPRS蛋白酶复合体的积累减少以及叶绿体生物发生缺陷。

Downregulation of ClpR2 leads to reduced accumulation of the ClpPRS protease complex and defects in chloroplast biogenesis in Arabidopsis.

作者信息

Rudella Andrea, Friso Giulia, Alonso Jose M, Ecker Joseph R, van Wijk Klaas J

机构信息

Department of Plant Biology, Cornell University, Ithaca, New York 14853, USA.

出版信息

Plant Cell. 2006 Jul;18(7):1704-21. doi: 10.1105/tpc.106.042861. Epub 2006 Jun 9.

DOI:10.1105/tpc.106.042861
PMID:16766689
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1488914/
Abstract

Plastids contain tetradecameric Clp protease core complexes, with five ClpP Ser-type proteases, four nonproteolytic ClpR, and two associated ClpS proteins. Accumulation of total ClpPRS complex decreased twofold to threefold in an Arabidopsis thaliana T-DNA insertion mutant in CLPR2 designated clpr2-1. Differential stable isotope labeling of the ClpPRS complex with iTRAQ revealed a fivefold reduction in assembled ClpR2 accumulation and twofold to fivefold reductions in the other subunits. A ClpR2:(his)(6) fusion protein that incorporated into the chloroplast ClpPRS complex fully complemented clpr2-1. The reduced accumulation of the ClpPRS protease complex led to a pale-green phenotype with delayed shoot development, smaller chloroplasts, decreased thylakoid accumulation, and increased plastoglobule accumulation. Stromal ClpC1 and 2 were both recruited to the thylakoid surface in clpr2-1. The thylakoid membrane of clpr2-1 showed increased carotenoid content, partial inactivation of photosystem II, and upregulated thylakoid proteases and stromal chaperones, suggesting an imbalance in chloroplast protein homeostasis and a well-coordinated network of proteolysis and chaperone activities. Interestingly, a subpopulation of PsaF and several light-harvesting complex II proteins accumulated in the thylakoid with unprocessed chloroplast transit peptides. We conclude that ClpR2 cannot be functionally replaced by other ClpP/R homologues and that the ClpPRS complex is central to chloroplast biogenesis, thylakoid protein homeostasis, and plant development.

摘要

质体含有十四聚体的Clp蛋白酶核心复合物,其中包括五个ClpP丝氨酸型蛋白酶、四个非蛋白水解性的ClpR以及两个相关的ClpS蛋白。在拟南芥中一个名为clpr2 - 1的CLPR2基因T - DNA插入突变体中,ClpPRS复合物的总量积累下降了两倍至三倍。用iTRAQ对ClpPRS复合物进行差异稳定同位素标记显示,组装好的ClpR2积累量减少了五倍,其他亚基减少了两倍至五倍。一种整合到叶绿体ClpPRS复合物中的ClpR2:(his)(6)融合蛋白完全互补了clpr2 - 1突变体。ClpPRS蛋白酶复合物积累量的减少导致了浅绿色表型,伴有茎发育延迟、叶绿体较小、类囊体积累减少以及质体小球积累增加。在clpr2 - 1突变体中,基质中的ClpC1和ClpC2都被招募到类囊体表面。clpr2 - 1突变体的类囊体膜显示类胡萝卜素含量增加、光系统II部分失活、类囊体蛋白酶和基质伴侣蛋白上调,这表明叶绿体蛋白质稳态失衡以及蛋白水解和伴侣蛋白活性的协调网络。有趣的是,PsaF的一个亚群和几种光捕获复合物II蛋白在类囊体中积累,带有未加工的叶绿体转运肽。我们得出结论,ClpR2不能被其他ClpP/R同源物功能性替代,并且ClpPRS复合物对于叶绿体生物发生、类囊体蛋白稳态和植物发育至关重要。

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