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细胞周期泛素结合酶CDC34(UBC3)的功能与物理特性。鉴定促进CDC34自身缔合的尾部功能决定因素。

Functional and physical characterization of the cell cycle ubiquitin-conjugating enzyme CDC34 (UBC3). Identification of a functional determinant within the tail that facilitates CDC34 self-association.

作者信息

Ptak C, Prendergast J A, Hodgins R, Kay C M, Chau V, Ellison M J

机构信息

Department of Biochemistry, University of Alberta, Edmonton, Canada.

出版信息

J Biol Chem. 1994 Oct 21;269(42):26539-45.

PMID:7929378
Abstract

Like several other ubiquitin-conjugating enzymes, the yeast cell cycle enzyme CDC34 (UBC3) has a carboxyl-terminal extension or tail. These tails appear to carry out unique functions that can vary from one ubiquitin-conjugating enzyme to the next. Using biophysical techniques we have determined that the tail of CDC34 constitutes a highly structured and extended domain. Although the tail of CDC34 is the largest tail identified to date (125 residues), we have found that only 39 residues lying adjacent to the catalytic domain are necessary and sufficient for full cell cycle function and that this region fulfills a novel function that may be common to the tails of other ubiquitin-conjugating enzymes. Cross-linking studies demonstrate that this region facilitates a physical interaction between CDC34 monomers in vitro. Furthermore, phenotypic analysis of various CDC34 derivatives expressed in different cdc34 mutant strains indicates that this region facilitates the same interaction in vivo. Based on these findings, it appears that the cell cycle function of CDC34 is dependent upon the ability of CDC34 monomers to interact with one another and that this interaction is mediated by a small region of the CDC34 tail. The similarity of this region with sequences contained within the tails of the UBC1 and UBC6 enzymes suggests that these tails may function in a similar manner.

摘要

与其他几种泛素结合酶一样,酵母细胞周期酶CDC34(UBC3)具有羧基末端延伸或尾巴。这些尾巴似乎执行着独特的功能,不同的泛素结合酶之间功能有所差异。我们运用生物物理技术确定,CDC34的尾巴构成了一个高度结构化且延伸的结构域。尽管CDC34的尾巴是迄今为止发现的最大尾巴(125个残基),但我们发现只有与催化结构域相邻的39个残基对于完整的细胞周期功能是必需且足够的,并且该区域履行了一种可能为其他泛素结合酶的尾巴所共有的新功能。交联研究表明,该区域在体外促进了CDC34单体之间的物理相互作用。此外,对在不同的cdc34突变菌株中表达的各种CDC34衍生物的表型分析表明,该区域在体内促进了相同的相互作用。基于这些发现,似乎CDC34的细胞周期功能取决于CDC34单体相互作用的能力,并且这种相互作用由CDC34尾巴的一个小区域介导。该区域与UBC1和UBC6酶尾巴中所含序列的相似性表明,这些尾巴可能以类似的方式发挥作用。

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