May M J, Leaver C J
Department of Plant Sciences, University of Oxford, United Kingdom.
Proc Natl Acad Sci U S A. 1994 Oct 11;91(21):10059-63. doi: 10.1073/pnas.91.21.10059.
A mutant of Escherichia coli, JTG10, deficient in gamma-glutamylcysteine synthetase (gamma-ECS; EC 6.3.2.2) is unable to synthesize glutathione (GSH) and is sensitive to 8-hydroxyquinoline. This phenotype was exploited for the isolation of Arabidopsis thaliana gamma-ECS cDNAs by expression cloning, and clones were selected through functional complementation by growth on 8-hydroxyquinoline. High levels of gamma-ECS activity were detectable in extracts derived from cultures of JTG10 expressing the Arabidopsis gamma-ECS open reading frame, although these complemented mutants accumulated GSH to only 10% of the wild-type level. The derived amino acid sequence constitutes a polypeptide of 59.9 kDa and shows only 44-48% similarity with previously published sequences of rat kidney, human liver, yeast, and E. coli gamma-ECS. When the gamma-ECS cDNA was used as a probe, Southern blot analysis of Arabidopsis genomic DNA revealed that it is present as a low copy number gene. Furthermore, the Arabidopsis gamma-ECS cDNA probe failed to hybridize to maize and tobacco genomic DNA at low stringency, suggesting that heterogeneity in gamma-ECS structure exists between plant species. The activity of recombinant Arabidopsis gamma-ECS was inhibited by buthionine sulfoximine and GSH, indicating that, while differences in the primary and secondary structure of gamma-ECS from different sources exist, the enzymes may have similar active site structures.
大肠杆菌的一个突变体JTG10缺乏γ-谷氨酰半胱氨酸合成酶(γ-ECS;EC 6.3.2.2),无法合成谷胱甘肽(GSH),并且对8-羟基喹啉敏感。利用这一表型通过表达克隆来分离拟南芥γ-ECS cDNA,并通过在8-羟基喹啉上生长进行功能互补来选择克隆。在表达拟南芥γ-ECS开放阅读框的JTG10培养物提取物中可检测到高水平的γ-ECS活性,尽管这些互补突变体积累的GSH仅为野生型水平的10%。推导的氨基酸序列构成一个59.9 kDa的多肽,与先前发表的大鼠肾脏、人肝脏、酵母和大肠杆菌γ-ECS序列仅显示44 - 48%的相似性。当γ-ECS cDNA用作探针时,对拟南芥基因组DNA的Southern印迹分析表明它以低拷贝数基因形式存在。此外,拟南芥γ-ECS cDNA探针在低严谨度下未能与玉米和烟草基因组DNA杂交,表明植物物种之间γ-ECS结构存在异质性。丁硫氨酸亚砜胺和GSH抑制重组拟南芥γ-ECS的活性,这表明虽然不同来源的γ-ECS在一级和二级结构上存在差异,但这些酶可能具有相似的活性位点结构。