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位于纤毛的 GID/CTLH 泛素连接酶复合物调节 sonic hedgehog 信号成分的蛋白质动态平衡。

Cilia-localized GID/CTLH ubiquitin ligase complex regulates protein homeostasis of sonic hedgehog signaling components.

机构信息

Institute of Physiological Chemistry, Martin-Luther University Halle-Wittenberg, 06114 Halle, Germany.

Renal Division, Department of Medicine, University Hospital Freiburg, Freiburg University Faculty of Medicine, 79106 Freiburg, Germany.

出版信息

J Cell Sci. 2022 May 1;135(9). doi: 10.1242/jcs.259209. Epub 2022 May 11.

Abstract

Cilia are evolutionarily conserved organelles that orchestrate a variety of signal transduction pathways, such as sonic hedgehog (SHH) signaling, during embryonic development. Our recent studies have shown that loss of GID ubiquitin ligase function results in aberrant AMP-activated protein kinase (AMPK) activation and elongated primary cilia, which suggests a functional connection to cilia. Here, we reveal that the GID complex is an integral part of the cilium required for primary cilia-dependent signal transduction and the maintenance of ciliary protein homeostasis. We show that GID complex subunits localize to cilia in both Xenopus laevis and NIH3T3 cells. Furthermore, we report SHH signaling pathway defects that are independent of AMPK and mechanistic target of rapamycin (MTOR) activation. Despite correct localization of SHH signaling components at the primary cilium and functional GLI3 processing, we find a prominent reduction of some SHH signaling components in the cilium and a significant decrease in SHH target gene expression. Since our data reveal a critical function of the GID complex at the primary cilium, and because suppression of GID function in X. laevis results in ciliopathy-like phenotypes, we suggest that GID subunits are candidate genes for human ciliopathies that coincide with defects in SHH signal transduction.

摘要

纤毛是进化上保守的细胞器,在胚胎发育过程中协调多种信号转导途径,如 sonic hedgehog(SHH)信号通路。我们最近的研究表明,GID 泛素连接酶功能的丧失会导致异常的 AMP 激活蛋白激酶(AMPK)激活和延长的初级纤毛,这表明与纤毛之间存在功能联系。在这里,我们揭示了 GID 复合物是初级纤毛依赖性信号转导和纤毛蛋白稳态维持所必需的纤毛的一个组成部分。我们表明 GID 复合物亚基在非洲爪蟾和 NIH3T3 细胞中定位于纤毛。此外,我们报告了与 AMPK 和 mechanistic target of rapamycin(MTOR)激活无关的 SHH 信号通路缺陷。尽管 SHH 信号成分在初级纤毛中的正确定位和功能性 GLI3 加工,但我们发现一些 SHH 信号成分在纤毛中的明显减少和 SHH 靶基因表达的显著降低。由于我们的数据揭示了 GID 复合物在初级纤毛中的关键功能,并且由于 X. laevis 中 GID 功能的抑制会导致类纤毛病表型,因此我们建议 GID 亚基是与 SHH 信号转导缺陷相吻合的人类纤毛病候选基因。

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