首页> 美国卫生研究院文献>Journal of Bacteriology >Lesions in gshA (Encoding γ-l-Glutamyl-l-Cysteine Synthetase) Prevent Aerobic Synthesis of Thiamine in Salmonella enterica Serovar Typhimurium LT2
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Lesions in gshA (Encoding γ-l-Glutamyl-l-Cysteine Synthetase) Prevent Aerobic Synthesis of Thiamine in Salmonella enterica Serovar Typhimurium LT2

机译:gshA(编码γ-1-谷氨酰胺-1-半胱氨酸合成酶)中的病变阻止肠炎沙门氏菌鼠伤寒沙门氏菌LT2中硫胺的有氧合成。

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摘要

Thiamine pyrophosphate is an essential cofactor that is synthesized de novo in Salmonella enterica serovar Typhimurium and other bacteria. In addition to genes encoding enzymes in the biosynthetic pathway, mutations in other metabolic loci have been shown to prevent thiamine synthesis. The latter loci identify the integration of the thiamine biosynthetic pathway with other metabolic processes and can be uncovered when thiamine biosynthesis is challenged. Mutations in gshA, encoding γ-l-glutamyl-l-cysteine synthetase, prevent the synthesis of glutathione, the major free thiol in the cell, and are shown here to result in a thiamine auxotrophy in some of the strains tested, including S. enterica LT2. Phenotypic characterization of the gshA mutants indicated they were similar enough to apbC and apbE mutants to warrant the definition of a class of mutants unified by (i) a requirement for both the hydroxymethyl pyrimidine (HMP) and thiazole (THZ) moiety of thiamine, (ii) the ability of l-tryosine to satisfy the THZ requirement, (iii) suppression of the thiamine requirement by anaerobic growth, and (iv) suppression by a second-site mutation at a single locus. Genetic data indicated that a defective ThiH generates the THZ requirement in these strains, and we suggest this defect is due to a reduced ability to repair a critical [Fe-S] cluster.
机译:硫胺素焦磷酸是在鼠伤寒沙门氏菌鼠伤寒沙门氏菌和其他细菌中从头合成的重要辅因子。除了在生物合成途径中编码酶的基因外,其他代谢基因座中的突变也已显示出可阻止硫胺素合成。后一个基因座确定了硫胺素生物合成途径与其他代谢过程的整合,当硫胺素生物合成受到挑战时可以被发现。编码γ-1-谷氨酰胺-1-半胱氨酸合成酶的gshA中的突变阻止了细胞中主要的游离巯基谷胱甘肽的合成,并显示在某些受试菌株(包括S.)中导致硫胺素营养缺陷。 enterica LT2。 gshA突变体的表型特征表明,它们与apbC和apbE突变体足够相似,足以保证定义一类突变体,这些突变体由(i)硫胺素的羟甲基嘧啶(HMP)和噻唑(THZ)部分组成, ii)左旋肌氨酸满足THZ需求的能力,(iii)通过厌氧生长抑制硫胺素的需求,以及(iv)在单个位点抑制第二位点突变的能力。遗传数据表明,有缺陷的ThiH在这些菌株中产生THZ需求,我们建议该缺陷是由于修复关键的[Fe-S]簇的能力降低所致。

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