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CTLA4的快速周转与可逆泛素化的复杂结构相关。

Rapid turnover of CTLA4 is associated with a complex architecture of reversible ubiquitylation.

作者信息

Tey Pei Yee, Dufner Almut, Knobeloch Klaus-Peter, Pruneda Jonathan N, Clague Michael J, Urbé Sylvie

机构信息

Biochemistry, Cell and Systems Biology, Institute of Systems, Molecular and Integrative Biology, University of Liverpool, Crown St., Liverpool, L69 3BX, UK.

Institute of Neuropathology, Medical Faculty, University of Freiburg, 79106 Freiburg, Germany; Signalling Research Centres BIOSS and CIBSS, University of Freiburg, 79104 Freiburg, Germany.

出版信息

bioRxiv. 2024 Jan 1:2023.12.31.573735. doi: 10.1101/2023.12.31.573735.

Abstract

The immune checkpoint regulator CTLA4 is an unusually short-lived membrane protein. Here we show that its lysosomal degradation is dependent on ubiquitylation at Lysine residues 203 and 213. Inhibition of the v-ATPase partially restores CTLA4 levels following cycloheximide treatment, but also reveals a fraction that is secreted in exosomes. The endosomal deubiquitylase, USP8, interacts with CTLA4 and its loss enhances CTLA4 ubiquitylation in cancer cells, mouse CD4 T cells and in cancer cell-derived exosomes. Depletion of the USP8 adapter protein, HD-PTP, but not ESCRT-0 recapitulates this cellular phenotype, but shows distinct properties exosome incorporation. Re-expression of wild-type USP8, but neither a catalytically inactive, nor a localization-compromised ΔMIT domain mutant can rescue delayed degradation of CTLA4, or counteract its accumulation in clustered endosomes. UbiCRest analysis of CTLA4-associated ubiquitin chain linkages identifies a complex mixture of conventional Lys63- and more unusual Lys27- and Lys29-linked polyubiquitin chains that may underly the rapidity of protein turnover.

摘要

免疫检查点调节因子CTLA4是一种寿命异常短暂的膜蛋白。在此我们表明,其溶酶体降解依赖于赖氨酸残基203和213处的泛素化。在环己酰亚胺处理后,抑制v-ATP酶可部分恢复CTLA4水平,但也揭示出一部分CTLA4分泌于外泌体中。内体去泛素化酶USP8与CTLA4相互作用,其缺失会增强癌细胞、小鼠CD4 T细胞以及癌细胞衍生外泌体中CTLA4的泛素化。USP8衔接蛋白HD-PTP的缺失(而非ESCRT-0)重现了这种细胞表型,但显示出在外泌体掺入方面的不同特性。野生型USP8的重新表达,而非催化失活或定位受损的ΔMIT结构域突变体,能够挽救CTLA4的延迟降解,或抵消其在聚集内体中的积累。对与CTLA4相关的泛素链连接的UbiCRest分析确定了常规的Lys63连接以及更不寻常的Lys27和Lys29连接的多聚泛素链的复杂混合物,这可能是蛋白质周转快速的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f650/10802369/bd09cdea5f4a/nihpp-2023.12.31.573735v1-f0001.jpg

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