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拟南芥线粒体导入复合物中进化上保守的 J 域蛋白网络的扩展。

Expansion of the evolutionarily conserved network of J-domain proteins in the Arabidopsis mitochondrial import complex.

机构信息

Department of Biological Sciences, Indian Institute of Science Education and Research Bhopal, Room Number 117 AB3, IISER Bhopal, Bhopal Bypass Road, Bhopal, MP, 462066, India.

National Center for Biological Sciences, Rajiv Gandhi Nagar, Kodigehalli, Bengaluru, Karnataka, India.

出版信息

Plant Mol Biol. 2021 Mar;105(4-5):385-403. doi: 10.1007/s11103-020-01095-8. Epub 2020 Nov 18.

DOI:10.1007/s11103-020-01095-8
PMID:33206359
Abstract

We report that discriminate interaction between the expanded mitochondrial chaperone network and variability in their expression might determine their functional specificities and impart robustness to mitochondrial import processes in plants. Mitochondrial Hsp70 (mtHsp70), the central component of the pre-sequence associated motor (PAM) complex, is crucial for the import of proteins to the mitochondrial matrix. Activity of mtHsp70 is regulated by a heterodimeric complex of two J-domain proteins (JDPs), Pam18 and Pam16. Compared to other eukaryotes, plants harbor multiple copies of these JDPs, which posit that plants have an increasingly complex mtHsp70: JDP network in their mitochondrial matrix. Here, we show that although highly similar in sequence, some of the plant JDPs are functionally different. Protein: protein interaction studies including yeast two-hybrid and Bimolecular Fluorescence Complementation revealed that while all the AtPam18s interacted with AtPam16s, the strengths of these promiscuous interactions are variable. Further, down-regulation of AtPAM16L affected seed germination, even in the presence of its seemingly identical paralog, AtPAM16. Knockdown of AtPAM16L caused reduction in mitochondrial number and deregulation of several mitochondrial genes, suggesting towards a specific role of AtPam16L in maintaining mitochondrial homeostasis, especially under stress conditions. Our findings suggest that variations in the spatio-temporal expression, accompanied by discriminate interactions between the JDPs, might be defining the functional specificity of the mtHsp70 co-chaperone machinery and providing resilience to mitochondrial import processes in plants, especially under stress conditions.

摘要

我们报告说,扩展的线粒体伴侣网络与它们表达的变异性之间的有区别的相互作用可能决定了它们的功能特异性,并赋予植物线粒体输入过程的稳健性。线粒体热休克蛋白 70(mtHsp70)是前导序列相关马达(PAM)复合物的核心组成部分,对于蛋白质向线粒体基质的输入至关重要。mtHsp70 的活性受两个 J 结构域蛋白(JDPs)、Pam18 和 Pam16 的异二聚体复合物调节。与其他真核生物相比,植物拥有这些 JDP 的多个副本,这表明植物在其线粒体基质中具有越来越复杂的 mtHsp70:JDP 网络。在这里,我们表明,尽管在序列上高度相似,但一些植物 JDPs 在功能上是不同的。包括酵母双杂交和双分子荧光互补在内的蛋白:蛋白相互作用研究表明,虽然所有的 AtPam18s 都与 AtPam16s 相互作用,但这些混杂相互作用的强度是可变的。此外,AtPAM16L 的下调会影响种子萌发,即使存在其看似相同的同源物 AtPAM16 也是如此。AtPAM16L 的敲低导致线粒体数量减少和几个线粒体基因的失调,这表明 AtPam16L 在维持线粒体稳态方面具有特定作用,尤其是在应激条件下。我们的研究结果表明,时空表达的变化,伴随着 JDP 之间有区别的相互作用,可能决定了 mtHsp70 共伴侣机器的功能特异性,并为植物特别是在应激条件下的线粒体输入过程提供了弹性。

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本文引用的文献

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