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理解蛋白质跨叶绿体膜的转运:转运体和驱动蛋白。

Understanding protein translocation across chloroplast membranes: Translocons and motor proteins.

作者信息

Kim Da Been, Na Changhee, Hwang Inhwan, Lee Dong Wook

机构信息

Department of Integrative Food, Bioscience and Biotechnology, Chonnam National University, Gwangju, 61186, Korea.

Department of Life Sciences, Pohang University of Science and Technology, Pohang, 37673, Korea.

出版信息

J Integr Plant Biol. 2023 Feb;65(2):408-416. doi: 10.1111/jipb.13385. Epub 2022 Dec 31.

DOI:10.1111/jipb.13385
PMID:36223071
Abstract

Subcellular organelles in eukaryotes are surrounded by lipid membranes. In an endomembrane system, vesicle trafficking is the primary mechanism for the delivery of organellar proteins to specific organelles. However, organellar proteins for chloroplasts, mitochondria, the nucleus, and peroxisomes that are translated in the cytosol are directly imported into their target organelles. Chloroplasts are a plant-specific organelle with outer and inner envelope membranes, a dual-membrane structure that is similar to mitochondria. Interior chloroplast proteins translated by cytosolic ribosomes are thus translocated through TOC and TIC complexes (translocons in the outer and inner envelope of chloroplasts, respectively), with stromal ATPase motor proteins playing a critical role in pulling pre-proteins through these import channels. Over the last three decades, the identity and function of TOC/TIC components and stromal motor proteins have been actively investigated, which has shed light on the action mechanisms at a molecular level. However, there remains some disagreement over the exact composition of TIC complexes and genuine stromal motor proteins. In this review, we discuss recent findings on the mechanisms by which proteins are translocated through TOC/TIC complexes and discuss future prospects for this field of research.

摘要

真核生物中的亚细胞器被脂质膜包围。在内膜系统中,囊泡运输是将细胞器蛋白递送至特定细胞器的主要机制。然而,在细胞质中翻译的叶绿体、线粒体、细胞核和过氧化物酶体的细胞器蛋白会直接导入其目标细胞器。叶绿体是植物特有的细胞器,具有外膜和内膜,这种双膜结构类似于线粒体。因此,由细胞质核糖体翻译的叶绿体内层蛋白通过TOC和TIC复合体(分别为叶绿体包膜外层和内层的转运体)转运,基质ATP酶运动蛋白在将前体蛋白拉过这些导入通道中起关键作用。在过去三十年中,人们积极研究了TOC/TIC组分和基质运动蛋白的特性与功能,这为分子水平的作用机制提供了线索。然而,关于TIC复合体和真正的基质运动蛋白的确切组成仍存在一些分歧。在这篇综述中,我们讨论了蛋白质通过TOC/TIC复合体转运机制的最新发现,并探讨了该研究领域的未来前景。

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Understanding protein translocation across chloroplast membranes: Translocons and motor proteins.理解蛋白质跨叶绿体膜的转运:转运体和驱动蛋白。
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Protein import into bacterial endosymbionts and evolving organelles.蛋白质导入细菌内共生体和进化中的细胞器。
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Does the polyubiquitination pathway operate inside intact chloroplasts to remove proteins?多聚泛素化途径是否在完整的叶绿体内部发挥作用以去除蛋白质?
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