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导肽中的脯氨酸对于前体蛋白高效转入叶绿体是至关重要的。

Prolines in Transit Peptides Are Crucial for Efficient Preprotein Translocation into Chloroplasts.

机构信息

Division of Integrative Biosciences and Biotechnology, and Department of Life Sciences, Pohang University of Science and Technology, Pohang, 37673, Korea.

Division of Integrative Biosciences and Biotechnology, and Department of Life Sciences, Pohang University of Science and Technology, Pohang, 37673, Korea

出版信息

Plant Physiol. 2018 Jan;176(1):663-677. doi: 10.1104/pp.17.01553. Epub 2017 Nov 20.

DOI:10.1104/pp.17.01553
PMID:29158328
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5761803/
Abstract

Chloroplasts import many preproteins that can be classified based on their physicochemical properties. The cleavable N-terminal transit peptide (TP) of chloroplast preproteins contains all the information required for import into chloroplasts through Toc/Tic translocons. The question of whether and how the physicochemical properties of preproteins affect TP-mediated import into chloroplasts has not been elucidated. Here, we present evidence that Pro residues in TP mediate efficient translocation through the chloroplast envelope membranes for proteins containing transmembrane domains (TMDs) or proteins prone to aggregation. By contrast, the translocation of soluble proteins through the chloroplast envelope membranes is less dependent on TP prolines. Proless TPs failed to mediate protein translocation into chloroplasts; instead, these mutant TPs led to protein mistargeting to the chloroplast envelope membranes or nonspecific protein aggregation during import into chloroplasts. The mistargeting of TMD-containing proteins caused by Pro-less TPs in wild-type protoplasts was mimicked by wild-type TPs in protoplasts, in which preprotein translocation is compromised. We propose that the physicochemical properties of chloroplast proteins affect protein translocation through the chloroplast envelope, and prolines in TP have a crucial role in the efficient translocation of TMD-containing proteins.

摘要

叶绿体导入许多前体蛋白,这些蛋白可以根据其理化性质进行分类。叶绿体前体蛋白的可切割 N 端转运肽 (TP) 包含了通过Toc/Tic 转运体导入叶绿体所需的所有信息。前体蛋白的理化性质是否以及如何影响 TP 介导的导入叶绿体的问题尚未阐明。在这里,我们提供的证据表明,TP 中的脯氨酸残基对于含有跨膜结构域 (TMD) 的蛋白质或易于聚集的蛋白质的叶绿体包膜的有效转运具有重要作用。相比之下,可溶性蛋白通过叶绿体包膜的转运不太依赖于 TP 脯氨酸。无脯氨酸的 TP 无法介导蛋白质导入叶绿体;相反,这些突变的 TP 在导入叶绿体时导致蛋白质错误靶向叶绿体包膜或非特异性蛋白质聚集。无脯氨酸的 TP 导致含有 TMD 的蛋白质的错误靶向,这在野生型原生质体中被野生型 TP 模拟,在野生型 TP 中,前体蛋白的易位受到损害。我们提出,叶绿体蛋白的理化性质影响蛋白通过叶绿体包膜的转运,而 TP 中的脯氨酸在含有 TMD 的蛋白的有效转运中起着关键作用。

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本文引用的文献

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Evolution of rubisco complex small subunit transit peptides from algae to plants.从藻类到植物的 Rubisco 复合物小亚基转运肽的进化。
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Targeting of a polytopic membrane protein to the inner envelope membrane of chloroplasts in vivo involves multiple transmembrane segments.在体内将一种多跨膜段膜蛋白靶向到叶绿体的内膜涉及多个跨膜片段。
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