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核和细胞质 WDR-23 异构体对 GEN-1 和 SKN-1 底物介导不同的影响。

Nuclear and cytoplasmic WDR-23 isoforms mediate differential effects on GEN-1 and SKN-1 substrates.

机构信息

University of Southern California, Leonard Davis School of Gerontology, Los Angeles, CA, USA.

University of Southern California, Molecular and Computational Biology, Los Angeles, CA, USA.

出版信息

Sci Rep. 2019 Aug 13;9(1):11783. doi: 10.1038/s41598-019-48286-y.

Abstract

Maintaining a healthy cellular environment requires the constant control of proteostasis. E3 ubiquitin ligase complexes facilitate the post-translational addition of ubiquitin, which based on the quantity and specific lysine linkages, results in different outcomes. Our studies reveal the CUL4-DDB1 substrate receptor, WDR23, as both a positive and a negative regulator in cellular stress responses. These opposing roles are mediated by two distinct isoforms: WDR-23A in the cytoplasm and WDR-23B in the nucleus. C. elegans expressing only WDR-23A display activation of SKN-1 and enhanced survival to oxidative stress, whereas animals with restricted WDR-23B expression do not. Additionally, we identify GEN-1, a Holliday junction resolvase, as an evolutionarily conserved WDR-23 substrate and find that the nuclear and cytoplasmic isoforms of WDR-23 differentially affect double-strand break repair. Our results suggest that through differential ubiquitination, nuclear WDR-23B inhibits the activity of substrates, most likely by promoting protein turnover, while cytoplasmic WDR-23A performs a proteasome-independent role. Together, our results establish a cooperative role between two spatially distinct isoforms of WDR-23 in ensuring proper regulation of WDR-23 substrates.

摘要

维持健康的细胞环境需要对蛋白质稳态的持续控制。E3 泛素连接酶复合物促进泛素的翻译后添加,根据数量和特定赖氨酸连接,会产生不同的结果。我们的研究揭示了 CUL4-DDB1 底物受体 WDR23 作为细胞应激反应中的正向和负向调节剂。这些相反的作用是由两种不同的异构体介导的:细胞质中的 WDR-23A 和核中的 WDR-23B。仅表达 WDR-23A 的 C. elegans 显示 SKN-1 的激活和对氧化应激的增强存活,而限制 WDR-23B 表达的动物则没有。此外,我们鉴定了 GEN-1,一种 Holliday 连接体解旋酶,作为进化保守的 WDR-23 底物,并发现 WDR-23 的核质和细胞质异构体对双链断裂修复有不同的影响。我们的结果表明,通过差异泛素化,核质 WDR-23B 通过促进蛋白质周转抑制底物的活性,而细胞质 WDR-23A 则发挥与蛋白酶体无关的作用。总之,我们的结果确立了两种空间上不同的 WDR-23 异构体在确保 WDR-23 底物的适当调节中的合作作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0ad/6692315/6e39fcd9a774/41598_2019_48286_Fig1_HTML.jpg

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