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旨在理解作为蛋白质质量控制主要成分之一的 CDC48 在植物免疫中的作用。

Toward the understanding of the role of CDC48, a major component of the protein quality control, in plant immunity.

机构信息

Agroécologie, AgroSup Dijon, CNRS, INRA, Univ. Bourgogne, Univ. Bourgogne Franche-Comté, F-21000, Dijon, France.

Agroécologie, AgroSup Dijon, CNRS, INRA, Univ. Bourgogne, Univ. Bourgogne Franche-Comté, F-21000, Dijon, France.

出版信息

Plant Sci. 2019 Feb;279:34-44. doi: 10.1016/j.plantsci.2018.10.029. Epub 2018 Nov 3.

Abstract

The evolutionally conserved chaperone-like protein CDC48 (cell division cycle 48) is a major component of ubiquitin-dependent protein degradation pathways in animal and yeast and, more generally, of the protein quality control machinery. In plants, CDC48 plays essential regulatory functions in development and the possibly that it contributes to protein degradation through the ubiquitin-proteasome system (UPS) and the endoplasmic reticulum-associated protein degradation (ERAD) system has been reported. In this review we described recent findings highlighting a role for CDC48 in plant immunity. First data indicated that CDC48 is S-nitrosylated in plant cells undergoing an immune response, regulates the turnover of immune receptors and mediates the degradation of viral proteins. Furthermore its overexpression was associated to an exacerbated hypersensitive-like cell death. We also designed and reported here the first CDC48 interactome. The corresponding data confirm the closed interaction of CDC48 with components of the UPS and shed light on its putative regulatory function of S-adenosyl-methionine synthesis and metabolism. More generally, these investigations further support the concept that plant cells facing pathogen attack finely regulate the protein quality control machinery.

摘要

进化上保守的伴侣样蛋白 CDC48(细胞分裂周期 48)是动物和酵母中泛素依赖性蛋白降解途径的主要组成部分,更广泛地说,是蛋白质量控制机制的主要组成部分。在植物中,CDC48 在发育中发挥重要的调节功能,并且已经报道它可能通过泛素-蛋白酶体系统(UPS)和内质网相关蛋白降解(ERAD)系统促进蛋白降解。在这篇综述中,我们描述了最近的发现,强调了 CDC48 在植物免疫中的作用。首先的数据表明,在经历免疫反应的植物细胞中,CDC48 被 S-亚硝基化,调节免疫受体的周转,并介导病毒蛋白的降解。此外,其过表达与加剧的类过敏细胞死亡有关。我们还在这里设计并报告了第一个 CDC48 相互作用组。相应的数据证实了 CDC48 与 UPS 成分的紧密相互作用,并揭示了其对 S-腺苷甲硫氨酸合成和代谢的潜在调节功能。更广泛地说,这些研究进一步支持了这样的概念,即植物细胞在面对病原体攻击时会精细地调节蛋白质量控制机制。

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