Proteostasis and Protein Quality Control in chloroplasts: mechanisms and novel insights related to protein mis-localization.

IF 5.6 2区 生物学 Q1 PLANT SCIENCES
Nicolaj Jeran, Maxime Mercier, Paolo Pesaresi, Luca Tadini
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Abstract

The dynamic rearrangement of the proteome and the maintenance of protein homeostasis (proteostasis) are crucial for the proper development and functionality of cellular compartments. Disruptions in proteostasis can severely compromise cellular health, leading to the accumulation of misfolded or mis-localized proteins prone to forming toxic aggregates. In chloroplasts, proteostasis presents unique challenges due to their endosymbiotic origin, complex sub-compartmentalization, and constant exposure to reactive oxygen species (ROS) generated during photosynthesis. To counteract these challenges, chloroplasts employ sophisticated quality control systems, including chaperones, proteases, and protein degradation pathways such as ubiquitination and autophagy-related mechanisms. Additionally, cytosolic systems play a crucial role in regulating nuclear-encoded, plastid-targeted proteins, ensuring their proper delivery or degradation when defective. Within chloroplasts, specialized proteases, chaperones, and the chloroplast unfolded protein response (cpUPR) oversee protein quality and resolve aggregates to maintain functional integrity. This review critically examines mechanisms governing intracellular trafficking of plastid-targeted proteins, emphasizing key pathways and regulatory bottlenecks that, when disrupted, lead to the accumulation of mis-localized or orphaned proteins. Particular focus is given to the signalling pathways that coordinate cytosolic and plastid effectors to sustain chloroplast function. Furthermore, we propose a novel role for PSBO, subunit of the Oxygen Evolving Complex associated with the Photosystem II, in linking proplastid-to-chloroplast differentiation with plastid quality control.

叶绿体中的蛋白质静止和蛋白质质量控制:与蛋白质错误定位相关的机制和新见解。
蛋白质组的动态重排和蛋白质稳态的维持对于细胞间室的正常发育和功能至关重要。蛋白质停滞的破坏会严重损害细胞健康,导致错误折叠或错误定位的蛋白质积累,容易形成有毒的聚集体。在叶绿体中,由于它们的内共生起源、复杂的亚区隔化和持续暴露于光合作用过程中产生的活性氧(ROS),蛋白质静止呈现出独特的挑战。为了应对这些挑战,叶绿体采用复杂的质量控制系统,包括伴侣、蛋白酶和蛋白质降解途径,如泛素化和自噬相关机制。此外,细胞质系统在调节核编码的质体靶向蛋白中起着至关重要的作用,确保它们在缺陷时的适当递送或降解。在叶绿体内,专门的蛋白酶、伴侣蛋白和叶绿体未折叠蛋白反应(cpUPR)监督蛋白质质量和分解聚集体以维持功能完整性。这篇综述批判性地研究了控制细胞内质体靶向蛋白运输的机制,强调了关键途径和调控瓶颈,当它们被破坏时,会导致错误定位或孤儿蛋白的积累。特别关注的是协调细胞质和质体效应物以维持叶绿体功能的信号通路。此外,我们提出了与光系统II相关的氧进化复合体的亚基PSBO在将前质体向叶绿体分化与质体质量控制联系起来的新作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Experimental Botany
Journal of Experimental Botany 生物-植物科学
CiteScore
12.30
自引率
4.30%
发文量
450
审稿时长
1.9 months
期刊介绍: The Journal of Experimental Botany publishes high-quality primary research and review papers in the plant sciences. These papers cover a range of disciplines from molecular and cellular physiology and biochemistry through whole plant physiology to community physiology. Full-length primary papers should contribute to our understanding of how plants develop and function, and should provide new insights into biological processes. The journal will not publish purely descriptive papers or papers that report a well-known process in a species in which the process has not been identified previously. Articles should be concise and generally limited to 10 printed pages.
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