Pitluk Z W, McDonough M, Sangan P, Gonda D K
Department of Molecular Biophysics and Biochemistry, Yale University School of Medicine, New Haven, Connecticut 06520-8024.
Mol Cell Biol. 1995 Mar;15(3):1210-9. doi: 10.1128/MCB.15.3.1210.
CDC34 (UBC3) encodes a ubiquitin-conjugating (E2) enzyme required for transition from the G1 phase to the S phase of the budding yeast cell cycle. CDC34 consists of a 170-residue catalytic N-terminal domain onto which is appended an acidic C-terminal domain. A portable determinant of cell cycle function resides in the C-terminal domain, but determinants for specific function must reside in the N-terminal domain as well. We have explored the utility of "charge-to-alanine" scanning mutagenesis to identify novel N-terminal domain mutants of CDC34 that are enzymatically competent with respect to unfacilitated (E3-independent) ubiquitination but that nevertheless are defective with respect to its cell cycle function. Such mutants may reveal determinants of specific in vivo function, such as those required for interaction with substrates or trans-acting regulators of activity and substrate selectivity. Three of 18 "single-scan" mutants (in which small clusters of charged residues were mutated to alanine) were compromised with respect to in vivo function. One mutant (cdc34-109, 111, 113A) targeted a 12-residue segment of the Cdc34 protein not found in most other E2s and was unable to complement a cdc34 null mutant at low copy numbers but could complement a null mutant when overexpressed from an induced GAL1 promoter. Combining adjacent pairs of single-scan mutants to produce "double-scan" mutants yielded four additional mutants, two of which showed heat and cold sensitivity conditional defects. Most of the mutant proteins expressed in Escheria coli displayed unfacilitated (E3-independent) ubiquitin-conjugating activity, but two mutants differed from wild-type and other mutant Cdc34 proteins in the extent of multiubiquitination they catalyzed during an autoubiquitination reation-conjugating enzyme function and have identified additional mutant alleles of CDC34 that will be valuable in further genetic and biochemical studies of Cdc34-dependent ubiquitination.
CDC34(UBC3)编码一种泛素结合(E2)酶,它是芽殖酵母细胞周期从G1期过渡到S期所必需的。CDC34由一个170个残基的催化性N端结构域组成,其后面附加了一个酸性C端结构域。细胞周期功能的一个可移植决定因素存在于C端结构域中,但特定功能的决定因素也必须存在于N端结构域中。我们探索了“电荷到丙氨酸”扫描诱变的效用,以鉴定CDC34的新型N端结构域突变体,这些突变体在无辅助(不依赖E3)的泛素化方面具有酶活性,但在细胞周期功能方面存在缺陷。此类突变体可能揭示特定体内功能的决定因素,例如与底物相互作用或活性及底物选择性的反式作用调节因子所需的决定因素。18个“单扫描”突变体(其中小簇带电残基被突变为丙氨酸)中有3个在体内功能方面受损。一个突变体(cdc34 - 109、111、113A)靶向Cdc34蛋白中在大多数其他E2中未发现的一个12个残基的片段,并在低拷贝数时无法互补cdc34缺失突变体,但当从诱导型GAL1启动子过表达时可以互补缺失突变体。将相邻的单扫描突变体对组合以产生“双扫描”突变体又产生了另外4个突变体,其中两个表现出热敏感和冷敏感的条件性缺陷。在大肠杆菌中表达的大多数突变蛋白显示出无辅助(不依赖E3)的泛素结合活性,但有两个突变体在自泛素化反应 - 结合酶功能期间催化的多泛素化程度上与野生型和其他突变Cdc34蛋白不同,并已鉴定出CDC34的其他突变等位基因,这些等位基因在进一步的Cdc34依赖性泛素化的遗传和生化研究中将是有价值的。