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A novel family of ubiquitin-specific proteases in chick skeletal muscle with distinct N- and C-terminal extensions.

机译:新型的泛素特异性蛋白酶家族在鸡骨骼肌中具有独特的N和C端延伸。

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摘要

We have recently identified a cDNA for a ubiquitin-specific protease (UBP), UBP41, that encodes the smallest functional UBP identified to date, using an Escherichia coli-based in vivo screening method. In the present study we isolated highly related cDNAs encoding a new family of UBP enzymes, named UBP46, UBP52 and UBP66. These UBPs have virtually identical catalytic domains spanning the sequence of UBP41 between the active-site Cys and the His box (95% identity). However, they possess distinct N- and/or C-terminal extensions. Moreover, they are more closely related to each other than to any other members of the UBP family. Thus these chick UBPs must define a novel family of de-ubiquitinating enzymes and should represent the first example among the UBP family enzymes, whose multiplicity is achieved by variation in their N- and C-terminal extensions. The chick UBPs were expressed in E. coli, and purified from the cells to apparent homogeneity using 125I-labelled ubiquitin-alphaNH-MHISPPEPESEEEEEHYC as a substrate. Each of the purified UBP46, UBP52 and UBP66 enzymes behaved as proteins of similar sizes under both denaturing and non-denaturing conditions, suggesting that all of them consist of a single polypeptide chain. The UBP enzymes cleaved the C-terminus of the ubiquitin moiety in natural and engineered fusions irrespective of their sizes and thus are active against ubiquitin-beta-galactosidase as well as a ubiquitin C-terminal extension protein of 80 amino acids. All UBPs except UBP66 released free ubiquitin from poly-His-tagged di-ubiquitin. However, the isopeptidase activity for hydrolysing polyubiquitinated lysozyme conjugates was not detected from these UBPs, which makes these UBPs distinct from UBP41. These results suggest that the chick UBPs may play an important role in production of free ubiquitin from linear polyubiquitin chains and of certain ribosomal proteins from ubiquitin fusion proteins.
机译:我们最近使用基于大肠杆菌的体内筛选方法,为遍在蛋白特异性蛋白酶(UBP)UBP41鉴定了cDNA,该cDNA编码迄今鉴定出的最小的功能性UBP。在本研究中,我们分离了高度相关的cDNA,它们编码一个新的UBP酶家族,称为UBP46,UBP52和UBP66。这些UBP具有几乎相同的催化结构域,跨越了活性位点Cys和His盒之间的UBP41序列(95%相同)。但是,它们具有不同的N和/或C端延伸。而且,它们彼此之间的联系比与UBP家族的其他成员之间的联系更为紧密。因此,这些雏鸡UBP必须定义一个新的去泛素化酶家族,并且应代表UBP家族酶中的第一个实例,其多样性是通过改变其N端和C端延伸来实现的。雏鸡UBPs在大肠杆菌中表达,并使用125I标记的泛素-αNH-MHISPPEPESEEEEEHYC作为底物从细胞中纯化至明显的同质性。每种纯化的UBP46,UBP52和UBP66酶在变性和非变性条件下均具有相似大小的蛋白质,这表明它们全部由一条多肽链组成。无论其大小如何,UBP酶均可在天然和工程融合物中切割泛素部分的C末端,因此对泛素β-半乳糖苷酶以及80个氨基酸的泛素C末端延伸蛋白具有活性。除UBP66外,所有UBP均从聚His标签的双泛素中释放出游离泛素。然而,未从这些UBP中检测到水解多泛素化溶菌酶缀合物的异肽酶活性,这使得这些UBP与UBP41不同。这些结果表明,雏鸡UBPs可能在线性多聚泛素链产生的游离泛素和泛素融合蛋白产生的某些核糖体蛋白的产生中起重要作用。

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