Girod P A, Carpenter T B, van Nocker S, Sullivan M L, Vierstra R D
Department of Horticulture, University of Wisconsin-Madison 53706.
Plant J. 1993 Apr;3(4):545-52. doi: 10.1046/j.1365-313x.1993.03040545.x.
The covalent attachment of the 76 amino acid protein ubiquitin is an important prerequisite for the degradation of many eukaryotic proteins. The specificity of this ligation is accomplished in part by a family of distinct ubiquitin conjugating enzymes (E2s) working in concert with specific ubiquitin-protein ligases (E3s). Three essential E2s in yeast encoded by ScUBC1, -4, and -5 comprise a functionally overlapping E2 subfamily that appears responsible for degrading most abnormal and short-lived proteins. A 15 kDa E2 protein homologous to this family has been identified previously in wheat germ, designated TaE2(15kDa) (Girod and Vierstra (1993) J. Biol. Chem. 268, 955-960). This E2 is responsible for much of the ubiquitin conjugating activity observed in wheat germ extracts and works together with a unique E3 (designated E3 gamma) for substrate recognition. In this paper, the cloning of five genes encoding E2(15kDa) from Arabidiopsis thaliana is described (designated AtUBC8-12). They encode 149 amino acid basic proteins 94-98% similar to each other and 88-92% similar to ScUBC4 at the amino acid sequence level. In contrast, AtUBC8-12 are only 55-65% similar to the Arabidopsis E2s encoded by AtUBC1, -4, and -7. The AtUBC8-12 proteins do not contain N- or C-terminal extensions and have the active site at residue Cys-86, based on their homology with other E2s. Analyses of genomic Southern blots are consistent with the existence of multiple members encoding this E2 subfamily. AtUBC8-12 are transcribed to yield about 800 nucleotide mRNAs that, unlike ScUBC4 and -5, are not strongly induced by heat shock.(ABSTRACT TRUNCATED AT 250 WORDS)
76个氨基酸的泛素蛋白的共价连接是许多真核生物蛋白质降解的重要前提。这种连接的特异性部分是由一组不同的泛素结合酶(E2s)与特定的泛素 - 蛋白质连接酶(E3s)协同作用来实现的。酵母中由ScUBC1、-4和-5编码的三种必需E2s组成了一个功能上重叠的E2亚家族,似乎负责降解大多数异常和短命的蛋白质。之前在小麦胚芽中已鉴定出一种与该家族同源的15 kDa E2蛋白,命名为TaE2(15kDa) (吉罗德和维斯特拉(1993年)《生物化学杂志》268卷,955 - 960页)。这种E2负责小麦胚芽提取物中观察到的大部分泛素结合活性,并与一种独特的E3(命名为E3γ)共同作用以识别底物。本文描述了从拟南芥中克隆五个编码E2(15kDa)的基因(命名为AtUBC8 - 12)。它们编码149个氨基酸的碱性蛋白,彼此之间氨基酸序列相似度为94 - 98%,与ScUBC4在氨基酸序列水平上的相似度为88 - 92%。相比之下,AtUBC8 - 12与由AtUBC1、-4和-7编码的拟南芥E2s的相似度仅为55 - 65%。基于与其他E2s的同源性,AtUBC8 - 12蛋白不含N端或C端延伸,其活性位点位于半胱氨酸-86残基处。基因组Southern杂交分析结果与存在多个编码该E2亚家族成员的情况一致。AtUBC8 - 12转录产生约800个核苷酸的mRNA,与ScUBC4和-5不同,它们不会被热休克强烈诱导。(摘要截于250字)