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MTV 蛋白揭示了植物液泡运输途径中内质网和微管相关的隔室。

MTV proteins unveil ER- and microtubule-associated compartments in the plant vacuolar trafficking pathway.

机构信息

Centro Nacional de Biotecnología, Consejo Superior de Investigaciones Científicas, Cantoblanco, E-28049 Madrid, Spain.

Central European Institute of Technology, Mendel University in Brno, CZ-61300 Brno, Czech Republic.

出版信息

Proc Natl Acad Sci U S A. 2020 May 5;117(18):9884-9895. doi: 10.1073/pnas.1919820117. Epub 2020 Apr 22.

Abstract

The factors and mechanisms involved in vacuolar transport in plants, and in particular those directing vesicles to their target endomembrane compartment, remain largely unknown. To identify components of the vacuolar trafficking machinery, we searched for () mutants that abnormally secrete the synthetic vacuolar cargo VAC2. We report here on the identification of 17 mutations, corresponding to mutant alleles of , , , , , , , , , , , and Eight of the MTV proteins localize at the interface between the -Golgi network (TGN) and the multivesicular bodies (MVBs), supporting that the trafficking step between these compartments is essential for segregating vacuolar proteins from those destined for secretion. Importantly, the GARP tethering complex subunits MTV16/VPS51 and MTV17/VPS54 were found at endoplasmic reticulum (ER)- and microtubule-associated compartments (EMACs). Moreover, MTV16/VPS51 interacts with the motor domain of kinesins, suggesting that, in addition to tethering vesicles, the GARP complex may regulate the motors that transport them. Our findings unveil a previously uncharacterized compartment of the plant vacuolar trafficking pathway and support a role for microtubules and kinesins in GARP-dependent transport of soluble vacuolar cargo in plants.

摘要

植物液泡运输中涉及的因素和机制,特别是那些将囊泡引导至其目标内膜隔室的机制,在很大程度上仍然未知。为了鉴定液泡运输机制的组成部分,我们搜索了 () 突变体,这些突变体异常分泌合成的液泡货物 VAC2。我们在这里报告了 17 个 () 突变的鉴定,对应于 、 、 、 、 、 、 、 、 和 的突变等位基因。八种 MTV 蛋白定位于 -高尔基体网络 (TGN) 和多泡体 (MVBs) 之间的界面,支持这些隔室之间的运输步骤对于将液泡蛋白从那些注定要分泌的蛋白中分离出来是至关重要的。重要的是,GARP 系绳复合物亚基 MTV16/VPS51 和 MTV17/VPS54 位于内质网 (ER) 和微管相关区 (EMACs)。此外,MTV16/VPS51 与驱动蛋白的马达结构域相互作用,这表明,除了系绳囊泡外,GARP 复合物还可能调节运输它们的马达。我们的发现揭示了植物液泡运输途径中一个以前未被描述的隔室,并支持微管和驱动蛋白在植物中 GARP 依赖性可溶性液泡货物运输中的作用。

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