Lin H, Yin L, Reid J, Wilkinson K D, Wing S S
Polypeptide Laboratory, Department of Medicine and Department of Biochemistry, McGill University, Montreal, Quebec, H3A 2B2, Canada.
J Biol Chem. 2001 Jun 8;276(23):20357-63. doi: 10.1074/jbc.M008761200. Epub 2001 Mar 13.
Ubiquitin-specific processing proteases (UBPs) are characterized by a conserved core domain with surrounding divergent sequences, particularly at the N-terminal end. We previously cloned two isoforms of a testis UBP, UBP-t1 and UBP-t2, which contain identical core regions but distinct N termini that target the two isoforms to different subcellular locations (Lin, H., Keriel, A., Morales, C. R., Bedard, N., Zhao, Q., Hingamp, P., Lefrancois, S., Combaret, L., and Wing, S. S. (2000) Mol. Cell. Biol. 20, 6568-6578). To determine whether the N termini also influence the biochemical functions of the UBP, we expressed UBP-t1, UBP-t2, and the common core domain, UBP core, in Escherichia coli. The three isoforms cleaved branched triubiquitin at >20-fold faster rates than linear diubiquitin, suggesting that UBP-testis functions as an isopeptidase. Both N-terminal extensions inhibited the ability of UBP-core to generate free ubiquitin when linked in a peptide bond with itself, another peptide, or to small adducts. The N-terminal extension of UBP-t2 increased the ability of UBP-core to cleave branched triubiquitin. UBP-core removed ubiquitin from testis ubiquitinated proteins more rapidly than UBP-t2 and UBP-t1. Thus, UBP enzymes appear to contain a catalytic core domain, the activities and specificities of which can be modulated by N-terminal extensions. These divergent N termini can alter localization and confer multiple functions to the various members of the large UBP family.
泛素特异性加工蛋白酶(UBP)的特征是具有一个保守的核心结构域,其周围序列存在差异,尤其是在N端。我们之前克隆了一种睾丸UBP的两种同工型,UBP-t1和UBP-t2,它们包含相同的核心区域,但N端不同,这使得这两种同工型定位于不同的亚细胞位置(林,H.,凯里埃尔,A.,莫拉莱斯,C.R.,贝达德,N.,赵,Q.,欣甘普,P.,勒弗朗索瓦,S.,孔巴雷,L.,和温,S.S.(2000年)《分子与细胞生物学》20,6568 - 6578)。为了确定N端是否也影响UBP的生化功能,我们在大肠杆菌中表达了UBP-t1、UBP-t2和共同的核心结构域UBP核心。这三种同工型切割分支三泛素的速度比线性二泛素快20倍以上,这表明睾丸UBP作为一种异肽酶发挥作用。当与自身、另一种肽或小加合物以肽键相连时,两个N端延伸都抑制了UBP核心产生游离泛素的能力。UBP-t2的N端延伸增加了UBP核心切割分支三泛素的能力。UBP核心比UBP-t2和UBP-t1更快地从睾丸泛素化蛋白中去除泛素。因此,UBP酶似乎包含一个催化核心结构域,其活性和特异性可被N端延伸调节。这些不同的N端可以改变定位,并赋予大型UBP家族的各个成员多种功能。