首页> 美国卫生研究院文献>Plant Physiology >Inactivation of the clpC1 Gene Encoding a Chloroplast Hsp100 Molecular Chaperone Causes Growth Retardation Leaf Chlorosis Lower Photosynthetic Activity and a Specific Reduction in Photosystem Content
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Inactivation of the clpC1 Gene Encoding a Chloroplast Hsp100 Molecular Chaperone Causes Growth Retardation Leaf Chlorosis Lower Photosynthetic Activity and a Specific Reduction in Photosystem Content

机译:编码叶绿体Hsp100分子伴侣的clpC1基因失活导致生长迟缓叶片绿化光合活性降低以及光系统含量的特定降低

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摘要

ClpC is a molecular chaperone of the Hsp100 family. In higher plants there are two chloroplast-localized paralogs (ClpC1 and ClpC2) that are approximately 93% similar in primary sequence. In this study, we have characterized two independent Arabidopsis (Arabidopsis thaliana) clpC1 T-DNA insertion mutants lacking on average 65% of total ClpC content. Both mutants display a retarded-growth phenotype, leaves with a homogenous chlorotic appearance throughout all developmental stages, and more perpendicular secondary influorescences. Photosynthetic performance was also impaired in both knockout lines, with relatively fewer photosystem I and photosystem II complexes, but no changes in ATPase and Rubisco content. However, despite the specific drop in photosystem I and photosystem II content, no changes in leaf cell anatomy or chloroplast ultrastructure were observed in the mutants compared to the wild type. Previously proposed functions for envelope-associated ClpC in chloroplast protein import and degradation of mistargeted precursors were examined and shown not to be significantly impaired in the clpC1 mutants. In the stroma, where the majority of ClpC protein is localized, marked increases of all ClpP paralogs were observed in the clpC1 mutants but less variation for the ClpR paralogs and a corresponding decrease in the other chloroplast-localized Hsp100 protein, ClpD. Increased amounts of other stromal molecular chaperones (Cpn60, Hsp70, and Hsp90) and several RNA-binding proteins were also observed. Our data suggest that overall ClpC as a stromal molecular chaperone plays a vital role in chloroplast function and leaf development and is likely involved in photosystem biogenesis.
机译:ClpC是Hsp100家族的分子伴侣。在高等植物中,有两个叶绿体定位的旁系同源物(ClpC1和ClpC2),它们的一级序列相似度约为93%。在这项研究中,我们已经表征了两个独立的拟南芥(Arabidopsis thaliana)clpC1 T-DNA插入突变体,它们平均缺乏总ClpC含量的65%。两种突变体均表现出生长迟缓的表型,在所有发育阶段叶片均具有均一的褪绿外观,并且具有更多垂直的次级荧光。在两个敲除品系中,光合性能也受到损害,光系统I和光系统II的复合物相对较少,但ATPase和Rubisco含量没有变化。然而,尽管光系统I和光系统II含量有所下降,但与野生型相比,突变体中未观察到叶细胞解剖结构或叶绿体超微结构的变化。检查了先前提出的在叶绿体蛋白导入和错误定位的前体降解中与包膜相关的ClpC的功能,并显示在clpC1突变体中没有明显受损。在大部分ClpC蛋白定位的间质中,在clpC1突变体中观察到所有ClpP旁系同源物的显着增加,但ClpR旁系同源物的变异较小,而其他叶绿体定位的Hsp100蛋白ClpD相应减少。还观察到其他基质分子伴侣(Cpn60,Hsp70和Hsp90)和几种RNA结合蛋白的数量增加。我们的数据表明,总体ClpC作为基质分子伴侣在叶绿体功能和叶片发育中起着至关重要的作用,并且可能参与了光系统的生物发生。

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