Division of Cell Biology, The Netherlands Cancer Institute, Plesmanlaan 121, 1066 CX, Amsterdam, Netherlands.
Oncode Institute, Department of Cell and Chemical Biology, Leiden University Medical Center, Einthovenweg 20, 2333 ZC, Leiden, Netherlands.
Nat Commun. 2019 Mar 29;10(1):1454. doi: 10.1038/s41467-019-09437-x.
The endosomal system is a highly dynamic multifunctional organelle, whose complexity is regulated in part by reversible ubiquitylation. Despite the wide-ranging influence of ubiquitin in endosomal processes, relatively few enzymes utilizing ubiquitin have been described to control endosome integrity and function. Here we reveal the deubiquitylating enzyme (DUB) ubiquitin-specific protease 32 (USP32) as a powerful player in this context. Loss of USP32 inhibits late endosome (LE) transport and recycling of LE cargos, resulting in dispersion and swelling of the late compartment. Using SILAC-based ubiquitome profiling we identify the small GTPase Rab7-the logistical centerpiece of LE biology-as a substrate of USP32. Mechanistic studies reveal that LE transport effector RILP prefers ubiquitylation-deficient Rab7, while retromer-mediated LE recycling benefits from an intact cycle of Rab7 ubiquitylation. Collectively, our observations suggest that reversible ubiquitylation helps switch Rab7 between its various functions, thereby maintaining global spatiotemporal order in the endosomal system.
内体系统是一个高度动态的多功能细胞器,其复杂性部分受到可逆泛素化的调节。尽管泛素在内涵体过程中具有广泛的影响,但很少有利用泛素的酶被描述来控制内涵体的完整性和功能。在这里,我们揭示去泛素化酶 (DUB) 泛素特异性蛋白酶 32 (USP32) 是这种情况下的强大参与者。USP32 的缺失会抑制晚期内涵体 (LE) 的运输和 LE 货物的回收,导致晚期隔室的分散和肿胀。使用 SILAC 基于泛素组学的分析,我们确定了小 GTPase Rab7——LE 生物学的物流中心——是 USP32 的底物。机制研究表明,LE 运输效应因子 RILP 更喜欢缺乏泛素化的 Rab7,而 retromer 介导的 LE 回收则受益于 Rab7 泛素化的完整循环。总的来说,我们的观察表明,可逆泛素化有助于 Rab7 在其各种功能之间切换,从而维持内涵体系统中的全局时空秩序。