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Conserved endoplasmic reticulum-associated degradation system to eliminate mutated receptor-like kinases in Arabidopsis

机译:保守的内质网相关降解系统,消除拟南芥中突变的受体样激酶

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Endoplasmic reticulum (ER)-associated degradation (ERAD) is an integral part of the ER quality-control system that removes toxic misfolded proteins via ubiquitin/proteasome-mediated degradation. Most of our knowledge on ERAO comes from biochemical and genetic studies in yeast and mammalian cells. Although ERAD is known to operate in plant cells, little is known about its molecular components and its biochemical mechanism. A genetic screen for suppressors of the Arabidopsis bri1-9, a weak dwarf mutant caused by ER retention of a structurally defective yet biochemically competent brassinosteroid (BR) receptor BRI1, resulted in identification of the EMS-mutagenized bri1 suppressor 5 (EBS5) gene that encodes an Arabidopsis homolog of the yeast Hrd3/mammlian Sel1L protein known to be involved in ERAD. Loss-of-functioh ebs5 mutations block the ERAD of bri1-9 and bri1-5, another ER-retained BR receptor. We showed that EBS5 complemented the ERAD defect of the yeast Δhrd3 mutant and interacted with the two mutated BR receptors in plant cells. Using a reverse genetic approach, we discovered that two Arabidopsis homologs of the yeast/mammalian Hrd1, an ER membrane-localized ubiquitin ligase, function redundantly in the ERAD of bri1-9. Together, our results revealed functional roles of two conserved ERAD components in degrading mutated/misfolded receptor-like kinases in Arabidopsis.
机译:内质网(ER)相关降解(ERAD)是ER质量控制系统不可或缺的一部分,可通过泛素/蛋白酶体介导的降解去除有毒的错误折叠蛋白。我们对ERAO的大多数了解来自酵母和哺乳动物细胞的生化和遗传研究。尽管已知ERAD可在植物细胞中运行,但对其分子组成及其生化机制知之甚少。拟南芥bri1-9抑制基因的筛选,这是一种弱的矮化突变体,由结构缺陷但具有生化能力的油菜素类固醇(BR)受体BRI1的ER保留引起,导致鉴定了EMS诱变的bri1抑制基因5(EBS5),编码已知参与ERAD的酵母Hrd3 /哺乳动物Sel1L蛋白的拟南芥同源物。功能丧失的ebs5突变会阻断另一种ER保留的BR受体bri1-9和bri1-5的ERAD。我们表明,EBS5补充了酵母Δhrd3突变体的ERAD缺陷,并与植物细胞中的两个突变的BR受体相互作用。使用逆向遗传方法,我们发现酵母/哺乳动物Hrd1的两个拟南芥同源物,一个ER膜定位的泛素连接酶,在bri1-9的ERAD中有多余的功能。在一起,我们的结果揭示了两个保守的ERAD组分在降解拟南芥中突变/错折叠的受体样激酶中的功能作用。

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