首页> 美国卫生研究院文献>The EMBO Journal >Identification of a portable determinant of cell cycle function within the carboxyl-terminal domain of the yeast CDC34 (UBC3) ubiquitin conjugating (E2) enzyme.
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Identification of a portable determinant of cell cycle function within the carboxyl-terminal domain of the yeast CDC34 (UBC3) ubiquitin conjugating (E2) enzyme.

机译:在酵母CDC34(UBC3)泛素结合(E2)酶的羧基末端结构域内确定细胞周期功能的便携式决定因素。

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摘要

The ubiquitin conjugating (E2) enzyme encoded by CDC34 (UBC3) in Saccharomyces cerevisiae is required for the G1 to S transition of the cell cycle. CDC34 consists of a 170 residue amino-terminal domain that is homologous to that found in other E2s, followed by a 125 residue carboxyl-terminal domain that is specific to CDC34. We found that a truncation mutant of CDC34 which lacked the CDC34 carboxyl-terminal domain could not support the essential function of CDC34 in the cell cycle in vivo. To explore further the role of the carboxyl-terminal domain in determining the cell cycle function of CDC34, we constructed and characterized genes encoding chimeric E2s incorporating sequences from CDC34 and the related but functionally distinct E2 RAD6 (UBC2). We found that a construct encoding a chimeric RAD6-CDC34 ubiquitin conjugating enzyme, in which the 21 residue acidic carboxyl-terminal domain of RAD6 has been replaced with the 125 residue carboxyl-terminal domain of CDC34, performed the essential functions of CDC34 in vivo. This chimeric E2 also complemented the growth deficiency, UV sensitivity and sporulation deficiency of rad6 mutant strains. Deletion analysis of the CDC34 carboxyl-terminal domain in both CDC34 and the RAD6-CDC34 chimeric E2 identified a region comprising residues 171-244 of CDC34 that was sufficient to confer CDC34 function on the amino-terminal domains of CDC34 and RAD6. We suggest that this region interacts with substrates of CDC34 or with trans-acting factors (such as CDC34-specific ubiquitin protein ligases) that govern the substrate selectivity of CDC34. Congruent results demonstrating a positive role for the carboxyl-terminal domain of CDC34 in the essential function of CDC34 have also been obtained by Silver et al. (1992) and are reported in the accompanying paper.
机译:酿酒酵母中CDC34(UBC3)编码的泛素结合(E2)酶是细胞周期从G1到S转变所必需的。 CDC34由与其他E2s同源的170个残基氨基末端结构域组成,随后是对CDC34特异的125个残基羧基末端结构域。我们发现,缺少CDC34羧基末端结构域的CDC34截短突变体不能支持CDC34在体内细胞周期中的基本功能。为了进一步探索羧基末端结构域在确定CDC34的细胞周期功能中的作用,我们构建并鉴定了编码嵌合E2的基因,这些基因结合了CDC34和相关但功能不同的E2 RAD6(UBC2)的序列。我们发现,编码嵌合的RAD6-CDC34泛素缀合酶的构建体在体内发挥了CDC34的基本功能,其中RAD6的21个残基的酸性羧基末端结构域已被CDC34的125个残基的羧基末端结构域取代。该嵌合E2还补充了rad6突变株的生长缺陷,UV敏感性和孢子形成缺陷。对CDC34和RAD6-CDC34嵌合E2中的CDC34羧基末端结构域的缺失分析鉴定了包含CDC34的残基171-244的区域,该区域足以赋予CDC34在CDC34和RAD6的氨基末端结构域上的功能。我们建议该区域与CDC34的底物或与控制CDC34的底物选择性的反式作用因子(例如CDC34特异性泛素蛋白连接酶)相互作用。 Silver等人也获得了证明CDC34的羧基末端结构域在CDC34的基本功能中具有积极作用的一致结果。 (1992年),并在随附的论文中进行了报道。

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