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植物中泛素依赖的叶绿体相关蛋白降解。

Ubiquitin-dependent chloroplast-associated protein degradation in plants.

机构信息

Department of Plant Sciences, University of Oxford, Oxford OX1 3RB, UK.

Department of Biology, University of Leicester, Leicester LE1 7RH, UK.

出版信息

Science. 2019 Feb 22;363(6429). doi: 10.1126/science.aav4467.

Abstract

Chloroplasts contain thousands of nucleus-encoded proteins that are imported from the cytosol by translocases in the chloroplast envelope membranes. Proteolytic regulation of the translocases is critically important, but little is known about the underlying mechanisms. We applied forward genetics and proteomics in to identify factors required for chloroplast outer envelope membrane (OEM) protein degradation. We identified SP2, an Omp85-type β-barrel channel of the OEM, and CDC48, a cytosolic AAA+ (ATPase associated with diverse cellular activities) chaperone. Both proteins acted in the same pathway as the ubiquitin E3 ligase SP1, which regulates OEM translocase components. SP2 and CDC48 cooperated to bring about retrotranslocation of ubiquitinated substrates from the OEM (fulfilling conductance and motor functions, respectively), enabling degradation of the substrates by the 26S proteasome in the cytosol. Such chloroplast-associated protein degradation (CHLORAD) is vital for organellar functions and plant development.

摘要

叶绿体含有数千种由核编码的蛋白质,这些蛋白质通过叶绿体被膜中的转运体从细胞质中输入。转运体的蛋白水解调节至关重要,但对其潜在机制知之甚少。我们在 中应用正向遗传学和蛋白质组学来鉴定叶绿体外被膜(OEM)蛋白降解所需的因素。我们鉴定了 SP2,一种 OEM 的 Omp85 型β桶通道,和 CDC48,一种细胞质 AAA+(与多种细胞活动相关的 ATP 酶)伴侣。这两种蛋白都与调节 OEM 转运体组件的泛素 E3 连接酶 SP1 作用于相同的途径。SP2 和 CDC48 合作,使泛素化底物从 OEM 中反向转运(分别发挥导通和马达功能),使底物在细胞质中被 26S 蛋白酶体降解。这种与叶绿体相关的蛋白降解(CHLORAD)对于细胞器功能和植物发育至关重要。

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