首页> 外文期刊>Molecular and Cellular Biology >Intragenic suppression among CDC34 (UBC3) mutations defines a class of ubiquitin-conjugating catalytic domains.
【24h】

Intragenic suppression among CDC34 (UBC3) mutations defines a class of ubiquitin-conjugating catalytic domains.

机译:CDC34(UBC3)突变中的基因内抑制定义了一类泛素结合的催化域。

获取原文
           

摘要

Ubiquitin-conjugating (E2) enzymes contain several regions within their catalytic domains that are highly conserved. However, within some of these conserved regions are several residues that may be used to define different classes of catalytic domains for the E2 enzymes. One class can be defined by the Ubc1 protein, which contains K-65, D-90, and D-120, while the corresponding positions within the Cdc34 (Ubc3) protein, which defines a second class of enzymes, contain S-73, S-97, and S-139, respectively. The presence of these differences within otherwise highly conserved regions of this family suggests that these residues may be critical for the specificity of Cdc34 function or regulation. Therefore, we have constructed a series of cdc34 alleles encoding mutant proteins in which these serine residues have been changed to other amino acid residues, including alanine and aspartic acid. In vivo complementation studies showed that S-97, which lies near the active site C-95, is essential for Cdc34 function. The addition of a second mutation in CDC34, which now encoded both the S97D and S73K changes, restored partial function to the Cdc34 enzyme. Moreover, the deletion of residues 103 to 114 within Cdc34, which are not present in the Ubc1-like E2s, allowed the S73K/S97D mutant to function as efficiently as wild-type Cdc34 protein. Finally, the cloning and sequencing of the temperature-sensitive alleles of CDC34 indicated that A-62 is also unique to the Cdc34 class of E2 enzymes and that mutations at this position can be detrimental to Cdc34 function. Our results suggest that several key residues within conserved regions of the E2 enzyme family genetically interact with each other and define a class of E2 catalytic domains.
机译:泛素结合(E2)酶在其催化域内包含多个高度保守的区域。然而,在这些保守区中的一些中,有几个残基可用于定义E2酶的不同类别的催化结构域。一类可以由包含K-65,D-90和D-120的Ubc1蛋白定义,而定义第二类酶的Cdc34(Ubc3)蛋白中的相应位置包含S-73, S-97和S-139。这些差异在该家族其他高度保守的区域内的存在表明,这些残基可能对Cdc34功能或调控的特异性至关重要。因此,我们构建了一系列编码突变蛋白的cdc34等位基因,其中这些丝氨酸残基已变为其他氨基酸残基,包括丙氨酸和天冬氨酸。体内互补研究表明,位于活性位点C-95附近的S-97对Cdc34功能至关重要。 CDC34中的第二个突变(现在编码S97D和S73K的变化)的添加使Cdc34酶恢复了部分功能。此外,Cdc34中残基103至114的缺失(不存在于Ubc1样E2中)使S73K / S97D突变体的功能与野生型Cdc34蛋白一样有效。最后,对CDC34的温度敏感等位基因的克隆和测序表明,A-62对Cdc34类E2酶也是独特的,并且该位置的突变可能对Cdc34功能有害。我们的结果表明,E2酶家族保守区内的几个关键残基彼此之间发生遗传相互作用,并定义了一类E2催化域。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号