Henard Calvin A, Tapscott Timothy, Crawford Matthew A, Husain Maroof, Doulias Paschalis-Thomas, Porwollik Steffen, Liu Lin, McClelland Michael, Ischiropoulos Harry, Vázquez-Torres Andrés
Department of Microbiology, University of Colorado School of Medicine, Aurora, CO, USA.
Mol Microbiol. 2014 Feb;91(4):790-804. doi: 10.1111/mmi.12498. Epub 2014 Jan 7.
We show that thiols in the 4-cysteine zinc-finger motif of DksA, an RNA polymerase accessory protein known to regulate the stringent response, sense oxidative and nitrosative stress. Hydrogen peroxide- or nitric oxide (NO)-mediated modifications of thiols in the DksA 4-cysteine zinc-finger motif release the metal cofactor and drive reversible changes in the α-helicity of the protein. Wild-type and relA spoT mutant Salmonella, but not isogenic dksA-deficient bacteria, experience the downregulation of r-protein and amino acid transport expression after NO treatment, suggesting that DksA can regulate gene expression in response to NO congeners independently of the ppGpp alarmone. Oxidative stress enhances the DksA-dependent repression of rpsM, while preventing the activation of livJ and hisG gene transcription that is supported by reduced, zinc-bound DksA. The inhibitory effects of oxidized DksA on transcription are reversible with dithiothreitol. Our investigations indicate that sensing of reactive species by DksA redox active thiols fine-tunes the expression of translational machinery and amino acid assimilation and biosynthesis in accord with the metabolic stress imposed by oxidative and nitrosative stress. Given the conservation of Cys(114) , and neighbouring hydrophobic and charged amino acids in DksA orthologues, phylogenetically diverse microorganisms may use the DksA thiol switch to regulate transcriptional responses to oxidative and nitrosative stress.
我们发现,DksA(一种已知可调节严谨反应的RNA聚合酶辅助蛋白)的4个半胱氨酸锌指基序中的硫醇可感知氧化应激和亚硝化应激。过氧化氢或一氧化氮(NO)介导的DksA 4个半胱氨酸锌指基序中硫醇的修饰会释放金属辅因子,并驱动蛋白质α螺旋度的可逆变化。野生型和relA spoT突变型沙门氏菌,而非同基因的dksA缺陷型细菌,在NO处理后会经历核糖体蛋白和氨基酸转运表达的下调,这表明DksA可独立于ppGpp警报素响应NO同系物调节基因表达。氧化应激增强了DksA对rpsM的依赖性抑制,同时阻止了由还原型、锌结合型DksA支持的livJ和hisG基因转录的激活。氧化型DksA对转录的抑制作用可被二硫苏糖醇逆转。我们的研究表明,DksA氧化还原活性硫醇对活性物质的感知可根据氧化应激和亚硝化应激施加的代谢应激,微调翻译机制以及氨基酸同化和生物合成的表达。鉴于DksA直系同源物中Cys(114)以及相邻的疏水和带电荷氨基酸的保守性,系统发育上不同的微生物可能利用DksA硫醇开关来调节对氧化应激和亚硝化应激的转录反应。