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Low phosphatase activity of LiaS and strong LiaR-DNA affinity explain the unusual LiaS to LiaR in vivo stoichiometry

机译:LAS的低磷酸酶活性和强大的骗子-DNA亲和力向体内化学计量术语解释了骗子的不寻常的leas

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LiaRS mediates Bacillus subtilis response to cell envelope perturbations. A third protein, LiaF, has an inhibitory role over LiaRS in the absence of stimulus. Together, LiaF and LiaRS form a three-component system characterized by an unusual stoichiometry, a 4:1 ratio between LiaS and LiaR, the significance of which in the signal transduction mechanism of LiaRS is not entirely understood. We measured, for the first time, the kinetics of the phosphorylation-dependent processes of LiaRS, the DNA-binding affinity of LiaR, and characterized the effect of phosphorylation on LiaR oligomerization state. Our study reveals that LiaS is less proficient as a phosphatase. Consequently, unspecific phosphorylation of LiaR by acetyl phosphate may be significant in vivo. This drawback is exacerbated by the strong interaction between LiaR and its own promoter, as it can drive LiaRS into losing grip over its own control in the absence of stimuli. These intrinsic, seemingly ‘disadvantageous”, attributes of LiaRS are likely overcome by the higher concentration of LiaS over LiaR in vivo, and a pro-phosphatase role of LiaF. Overall, our study shows that despite the conservative nature of two-component systems, they are, ultimately, tailored to meet specific cell needs by modulating the dynamics of interactions among their components and the kinetics of phosphorylation-mediated processes.
机译:骗子介导枯草芽孢杆菌对细胞包膜扰动的反应。第三种蛋白质LiaF在没有刺激的情况下对骗子的抑制作用。 LiaF和骗子一起形成了一种特征,其特征在于一种不寻常的化学计量,LIAS和骗子之间的4:1比例,在骗子的信号转导机制中的意义并不完全理解。我们首次测量仪表依赖磷酸化依赖过程的动力学,骗子的DNA结合亲和力,并表征磷酸化对骗子低聚态的影响。我们的研究表明,LIAs作为磷酸酶的倾向不易。因此,通过乙酰磷酸酯的骗子的未指定磷酸化在体内可能是显着的。这种缺点是通过骗子和自己的启动子之间的强烈互动来加剧,因为它可以在没有刺激的情况下驾驶骗子以失去抓住自己的控制。这些内在的似乎是“不利的”,骗子的属性可能会克服更高的leasf leasf的leasf leasf的leasf浓度的升级和乳糖酶的作用。总体而言,我们的研究表明,尽管双组分系统的保守性,但最终通过调节其组分之间的相互作用和磷酸化介导的方法的动力学来定制以满足特定的细胞需求。

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