植物特有的线粒体裂变机制将线粒体动力学和线粒体自噬体的形成联系起来,以实现碎片式的线粒体自噬。

IF 9.1 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
Juncai Ma, Chaorui Li, Kaike Ren, Kaiyan Zhang, Lanlan Feng, Kai Ching Law, Ka Kit Chung, Yizhou Bing, Caiji Gao, Byung-Ho Kang, Xiaohong Zhuang
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引用次数: 0

摘要

线粒体作为细胞的能量中心,为满足细胞对植物生长发育的需要而表现出巨大的代谢可塑性,这与其结构可塑性和动态可塑性密切相关。线粒体的数量和形态是通过线粒体分裂和融合的作用来协调的。同时,受损的线粒体内容物被去除,以避免对植物细胞产生过多的毒性。线粒体自噬是线粒体通过双膜囊自噬体(autophagosome,亦称mitophagosome)进行选择性降解的途径,在维持线粒体稳态中起着至关重要的作用。一般来说,大规模的线粒体自噬需要沿整个线粒体延伸一个杯状的吞噬体,最终作为一个自噬体密封和关闭。植物自噬体的形成和线粒体的隔离是如何协调的还不完全清楚。在这项工作中,我们报道了植物特异性线粒体裂变调节因子ELM1、动力蛋白相关蛋白家族DRP3和自噬调节因子SH3P2在热胁迫条件下协调线粒体分离以进行碎片性线粒体自噬的作用。线粒体分裂活动的功能障碍会损害热诱导的线粒体自噬,导致相互连接的线粒体的积累,这些线粒体部分被atg8阳性吞噬体隔离。此外,我们发现elm1介导的片段自噬也涉及植物原型选择性自噬受体NBR1。利用三维断层扫描分析,我们说明了线粒体和吞噬体中间体的形态特征和空间关系与线粒体裂变位点的联系。总的来说,我们的研究为植物独特的线粒体裂变机制介导的碎片性线粒体自噬提供了一个更新的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Plant-specific mitochondrial fission machinery connects mitochondrial dynamics and mitophagosome formation for piecemeal mitophagy.

As the energy center of the cell, mitochondria display enormous metabolic plasticity to meet the cellular demand for plant growth and development, which is tightly linked to their structural and dynamic plasticity. Mitochondrial number and morphology are coordinated through the actions of the mitochondrial division and fusion. Meanwhile, damaged mitochondrial contents are removed to avoid excess toxicity to the plant cells. Mitophagy, a selective degradation pathway of mitochondria through a double-membrane sac named autophagosome (also known as mitophagosome), plays a crucial role in maintaining mitochondrial homeostasis. Typically, wholesale mitophagy requires the elongation of a cup-shaped phagophore along the entire mitochondrion, which finally seals and closes as a mitophagosome. How plant mitophagosome formation and mitochondria sequestration are coordinated remains incompletely understood. In this work, we report an unappreciated role of the plant-specific mitochondrial fission regulator ELM1, together with the dynamin-related protein family DRP3 and the autophagic regulator SH3P2, to coordinate mitochondria segregation for piecemeal mitophagy under heat stress conditions. Dysfunction in mitochondrial fission activity impairs heat-induced mitophagy, leading to an accumulation of interconnected megamitochondria which are partially sequestered by the ATG8-positive phagophore. Furthermore, we show that the ELM1-mediated piecemeal mitophagy also engages the plant archetypal selective autophagic receptor NBR1. Using 3D tomography analysis, we illustrate the morphological features and spatial relationship of the megamitochondria and phagophore intermediates in connection with the mitochondrial fission sites. Collectively, our study provides an updated model of mitophagosome formation for piecemeal mitophagy mediated by the plant-unique mitochondrial fission machinery.

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来源期刊
CiteScore
19.00
自引率
0.90%
发文量
3575
审稿时长
2.5 months
期刊介绍: The Proceedings of the National Academy of Sciences (PNAS), a peer-reviewed journal of the National Academy of Sciences (NAS), serves as an authoritative source for high-impact, original research across the biological, physical, and social sciences. With a global scope, the journal welcomes submissions from researchers worldwide, making it an inclusive platform for advancing scientific knowledge.
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