Laboratory of Molecular Genetics, National Institute of Environmental Health Sciences, Research Triangle Park, North Carolina, 27709.
Microbiologyopen. 2013 Oct;2(5):743-55. doi: 10.1002/mbo3.108. Epub 2013 Jul 29.
Lack of molybdenum cofactor (Moco) in Escherichia coli leads to hypersensitivity to the mutagenic and toxic effects of N-hydroxylated base analogs, such as 6-N-hydroxylaminopurine (HAP). This phenotype is due to the loss of two Moco-dependent activities, YcbX and YiiM, that are capable of reducing HAP to adenine. Here, we describe two novel HAP-sensitive mutants containing a defect in iscS or tusA (yhhP) gene. IscS is a major L-cysteine desulfurase involved in iron-sulfur cluster synthesis, thiamine synthesis, and tRNA thiomodification. TusA is a small sulfur-carrier protein that interacts with IscS. We show that both IscS and TusA operate within the Moco-dependent pathway. Like other Moco-deficient strains, tusA and iscS mutants are HAP sensitive and resistant to chlorate under anaerobic conditions. The base-analog sensitivity of iscS or tusA strains could be suppressed by supplying exogenous L-cysteine or sulfide or by an increase in endogenous sulfur donors (cysB constitutive mutant). The data suggest that iscS and tusA mutants have a defect in the mobilization of sulfur required for active YcbX/YiiM proteins as well as nitrate reductase, presumably due to lack of functional Moco. Overall, our data imply a novel and indispensable role of the IscS/TusA complex in the activity of several molybdoenzymes.
大肠杆菌中钼辅因子 (Moco) 的缺乏会导致其对 N-羟化碱基类似物(如 6-N-羟氨基嘌呤 (HAP))的致突变和毒性作用敏感。这种表型是由于两种依赖 Moco 的活性 YcbX 和 YiiM 的丧失,这两种活性能够将 HAP 还原为腺嘌呤。在这里,我们描述了两个含有 iscS 或 tusA (yhhP) 基因缺陷的新型 HAP 敏感突变体。IscS 是一种主要的 L-半胱氨酸脱硫酶,参与铁硫簇合成、硫胺素合成和 tRNA 硫修饰。TusA 是一种与 IscS 相互作用的小硫载体蛋白。我们表明,IscS 和 TusA 都在依赖 Moco 的途径中起作用。与其他 Moco 缺乏菌株一样,tusA 和 iscS 突变体在厌氧条件下对 HAP 敏感且对氯酸盐有抗性。iscS 或 tusA 菌株的碱基类似物敏感性可以通过提供外源性 L-半胱氨酸或硫化物或通过增加内源性硫供体(cysB 组成型突变体)来抑制。数据表明,iscS 和 tusA 突变体在用于活性 YcbX/YiiM 蛋白以及硝酸盐还原酶的必需硫的动员方面存在缺陷,这可能是由于缺乏功能性 Moco。总的来说,我们的数据表明 IscS/TusA 复合物在几种钼酶的活性中具有新的和不可或缺的作用。