Banerjee A, Gregori L, Xu Y, Chau V
Department of Pharmacology, Wayne State University School of Medicine, Detroit, Michigan 48201.
J Biol Chem. 1993 Mar 15;268(8):5668-75.
The CDC34 gene of Saccharomyces cerevisiae encodes a 295-residue ubiquitin-conjugating enzyme (E2). The function of this ubiquitin-conjugating activity remains to be defined as its in vivo substrates are presently unknown. The bacterially expressed and purified Cdc34 protein is shown here to catalyze its own ubiquitination via an intramolecular transfer of its thiol ester-linked ubiquitin to a lysine. In this process, multiple ubiquitin groups are added to Cdc34, and these ubiquitin groups were shown to be arranged predominantly in the form of a single Lys48-specific multiubiquitin chain. Analysis of the hydroxylamine-dependent cleavage of ubiquitin-Cdc34 conjugates at the single Asn-Gly sequence in Cdc34 placed the major ubiquitin linkage site within the C-terminal 215-295 residues of Cdc34. The 4 Lys residues (Lys273, Lys277, Lys293, and Lys294) in this region of CDC34 were substituted by arginine either singly or in combination to produce a set of Cdc34 mutants. Analysis of these Cdc34 mutants for autoubiquitination revealed that the multiubiquitin chain can be formed on any one of these 4 lysines although most Cdc34 conjugates contain a single multiubiquitin chain. Since the presence of a Lys48-specific multiubiquitin chain in protein conjugates is known to target acceptor proteins for degradation in the ubiquitin-mediated proteolytic pathway, the present result raises the possibility that one function of the ubiquitin-conjugating activity in CDC34 may be used to target its own degradation.
酿酒酵母的CDC34基因编码一种由295个氨基酸残基组成的泛素结合酶(E2)。这种泛素结合活性的功能仍有待确定,因为其体内底物目前尚不清楚。本文显示,细菌表达并纯化的Cdc34蛋白通过其硫酯连接的泛素分子内转移至赖氨酸来催化自身的泛素化。在此过程中,多个泛素基团被添加到Cdc34上,并且这些泛素基团主要以单一的Lys48特异性多聚泛素链的形式排列。通过对Cdc34中单个Asn-Gly序列处的泛素-Cdc34缀合物进行羟胺依赖性切割分析,确定了Cdc34 C末端215-295个残基内的主要泛素连接位点。将CDC34该区域中的4个赖氨酸残基(Lys273、Lys277、Lys293和Lys294)单独或组合替换为精氨酸,以产生一组Cdc34突变体。对这些Cdc34突变体的自身泛素化分析表明,多聚泛素链可以在这4个赖氨酸中的任何一个上形成,尽管大多数Cdc34缀合物都含有一条单一的多聚泛素链。由于已知蛋白质缀合物中存在Lys48特异性多聚泛素链会将受体蛋白靶向泛素介导的蛋白水解途径进行降解,因此目前的结果增加了CDC34中泛素结合活性的一个功能可能用于靶向其自身降解的可能性。