Section of Molecular Plant Biology, Department of Biology, University of Oxford, Oxford, UK.
Nat Plants. 2024 Sep;10(9):1400-1417. doi: 10.1038/s41477-024-01769-x. Epub 2024 Aug 19.
The translocon at the outer chloroplast membrane (TOC) is the gateway for chloroplast protein import and so is vital for photosynthetic establishment and plant growth. Chloroplast-associated protein degradation (CHLORAD) is a ubiquitin-dependent proteolytic system that regulates TOC. In CHLORAD, cytosolic Cdc48 provides motive force for the retrotranslocation of ubiquitinated TOC proteins to the cytosol but how Cdc48 is recruited is unknown. Here, we identify plant UBX-domain protein PUX10 as a component of the CHLORAD machinery. We show that PUX10 is an integral chloroplast outer membrane protein that projects UBX and ubiquitin-associated domains into the cytosol. It interacts with Cdc48 via its UBX domain, bringing it to the chloroplast surface, and with ubiquitinated TOC proteins via its ubiquitin-associated domain. Genetic analyses in Arabidopsis revealed a requirement for PUX10 during CHLORAD-mediated regulation of TOC function and plant development. Thus, PUX10 coordinates ubiquitination and retrotranslocation activities of CHLORAD to enable efficient TOC turnover.
位于叶绿体外部膜(TOC)的转位通道是叶绿体蛋白输入的门户,因此对光合作用的建立和植物生长至关重要。叶绿体相关蛋白降解(CHLORAD)是一种依赖泛素的蛋白水解系统,可调节 TOC。在 CHLORAD 中,胞质 Cdc48 为泛素化 TOC 蛋白的逆行转运到细胞质提供动力,但 Cdc48 如何被招募尚不清楚。在这里,我们鉴定了植物 UBX 结构域蛋白 PUX10 作为 CHLORAD 机制的一个组成部分。我们表明 PUX10 是叶绿体外膜的一个完整蛋白,其 UBX 和泛素相关结构域突入细胞质。它通过其 UBX 结构域与 Cdc48 相互作用,将其带到叶绿体表面,并通过其泛素相关结构域与泛素化的 TOC 蛋白相互作用。在拟南芥中的遗传分析表明,PUX10 在 CHLORAD 介导的 TOC 功能和植物发育调节中是必需的。因此,PUX10 协调 CHLORAD 的泛素化和逆行转运活性,以实现有效的 TOC 周转。