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多泛素化缺陷酵母突变体中蛋白水解和细胞周期进程的抑制

Inhibition of proteolysis and cell cycle progression in a multiubiquitination-deficient yeast mutant.

作者信息

Finley D, Sadis S, Monia B P, Boucher P, Ecker D J, Crooke S T, Chau V

机构信息

Department of Cell Biology, Harvard Medical School, Boston, Massachusetts 02115.

出版信息

Mol Cell Biol. 1994 Aug;14(8):5501-9. doi: 10.1128/mcb.14.8.5501-5509.1994.

Abstract

The degradation of many proteins requires their prior attachment to ubiquitin. Proteolytic substrates are characteristically multiubiquitinated through the formation of ubiquitin-ubiquitin linkages. Lys-48 of ubiquitin can serve as a linkage site in the formation of such chains and is required for the degradation of some substrates of this pathway in vitro. We have characterized the recessive and dominant effects of a Lys-48-to-Arg mutant of ubiquitin (UbK48R) in Saccharomyces cerevisiae. Although UbK48R is expected to terminate the growth of Lys-48 multiubiquitin chains and thus to exert a dominant negative effect on protein turnover, overproduction of UbK48R in wild-type cells results in only a weak inhibition of protein turnover, apparently because the mutant ubiquitin can be removed from multiubiquitin chains. Surprisingly, expression of UbK48R complements several phenotypes of polyubiquitin gene (UB14) deletion mutants. However, UbK48R cannot serve as a sole source of ubiquitin in S. cerevisiae, as evidenced by its inability to rescue the growth of ubi1 ubi2 ubi3 ubi4 quadruple mutants. When provided solely with UbK48R, cells undergo cell cycle arrest with a terminal phenotype characterized by replicated DNA, mitotic spindles, and two-lobed nuclei. Under these conditions, degradation of amino acid analog-containing proteins is severely inhibited. Thus, multiubiquitin chains containing Lys-48 linkages play a critical role in protein degradation in vivo.

摘要

许多蛋白质的降解需要它们预先与泛素结合。蛋白水解底物的特征是通过泛素-泛素连接的形成而被多泛素化。泛素的赖氨酸-48可以作为此类链形成中的连接位点,并且在体外该途径的一些底物的降解中是必需的。我们已经表征了酿酒酵母中泛素赖氨酸-48到精氨酸突变体(UbK48R)的隐性和显性效应。尽管预期UbK48R会终止赖氨酸-48多泛素链的生长,从而对蛋白质周转产生显性负效应,但在野生型细胞中过量表达UbK48R仅导致对蛋白质周转的微弱抑制,显然是因为突变泛素可以从多泛素链中去除。令人惊讶的是,UbK48R的表达补充了多泛素基因(UB14)缺失突变体的几种表型。然而,UbK48R不能作为酿酒酵母中泛素的唯一来源,这一点可由其无法挽救ubi1 ubi2 ubi3 ubi4四重突变体的生长得到证明。当仅提供UbK48R时,细胞会经历细胞周期停滞,其终末表型的特征是DNA复制、有丝分裂纺锤体和两叶核。在这些条件下,含氨基酸类似物的蛋白质的降解受到严重抑制。因此,含有赖氨酸-48连接的多泛素链在体内蛋白质降解中起关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fa5/359070/38fa6a604d87/molcellb00008-0495-a.jpg

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