Nathan James A, Sengupta Soma, Wood Stephen A, Admon Arie, Markson Gabriel, Sanderson Chris, Lehner Paul J
Department of Medicine, Cambridge Institute for Medical Research, University of Cambridge, Cambridge, CB2 0XY, UK.
Traffic. 2008 Jul;9(7):1130-45. doi: 10.1111/j.1600-0854.2008.00747.x. Epub 2008 Apr 11.
Protein modification by one or more ubiquitin chains serves a critical signalling function across a wide range of cellular processes. Specificity within this system is conferred by ubiquitin E3 ligases, which target the substrates. Their activity is balanced by deubiquitylating enzymes (DUBs), which remove ubiquitin from both substrates and ligases. The RING-CH ligases were initially identified as viral immunoevasins involved in the downregulation of immunoreceptors. Their cellular orthologues, the Membrane-Associated RING-CH (MARCH) family represent a subgroup of the classical RING genes. Unlike their viral counterparts, the cellular RING-CH proteins appear highly regulated, and one of these in particular, MARCH7, was of interest because of a potential role in neuronal development and lymphocyte proliferation. Difficulties in detection and expression of this orphan ligase lead us to search for cellular cofactors involved in MARCH7 stability. In this study, we show that MARCH7 readily undergoes autoubiquitylation and associates with two deubiquitylating enzymes - ubiquitin-specific protease (USP)9X in the cytosol and USP7 in the nucleus. Exogenous expression and short interfering RNA depletion experiments demonstrate that MARCH7 can be stabilized by both USP9X and USP7, which deubiquitylate MARCH7 in the cytosol and nucleus, respectively. We therefore demonstrate compartment-specific regulation of this E3 ligase through recruitment of site-specific DUBs.
一个或多个泛素链介导的蛋白质修饰在广泛的细胞过程中发挥着关键的信号传导功能。该系统的特异性由靶向底物的泛素E3连接酶赋予。它们的活性由去泛素化酶(DUB)平衡,后者可从底物和连接酶上去除泛素。RING-CH连接酶最初被鉴定为参与免疫受体下调的病毒免疫逃避蛋白。它们在细胞中的同源物,即膜相关RING-CH(MARCH)家族,是经典RING基因的一个亚组。与它们的病毒对应物不同,细胞RING-CH蛋白似乎受到高度调控,其中一种,特别是MARCH7,因其在神经元发育和淋巴细胞增殖中的潜在作用而备受关注。检测和表达这种孤儿连接酶的困难促使我们寻找参与MARCH7稳定性的细胞辅因子。在这项研究中,我们表明MARCH7很容易发生自身泛素化,并与两种去泛素化酶相关联——胞质中的泛素特异性蛋白酶(USP)9X和细胞核中的USP7。外源表达和短发夹RNA消耗实验表明,MARCH7可以分别通过在胞质和细胞核中使MARCH7去泛素化的USP9X和USP7而稳定。因此,我们证明了通过招募位点特异性DUB对这种E3连接酶进行区室特异性调控。