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一个葡萄球菌抗σ因子中的保守精氨酸残基对于维持其激酶活性、结构和稳定性是必需的。

A conserved arginine residue in a staphylococcal anti-sigma factor is required to preserve its kinase activity, structure, and stability.

机构信息

Department of Biochemistry, Bose Institute, Kolkata, West Bengal, India.

Department of Biophysics, Bose Institute, Kolkata, West Bengal, India.

出版信息

J Biomol Struct Dyn. 2022 Jul;40(11):4972-4986. doi: 10.1080/07391102.2020.1864475. Epub 2020 Dec 24.

Abstract

RsbW, σ, and RsbV, encoded by and related bacteria, act as an anti-sigma factor, an sigma factor, and an anti-anti-sigma factor, respectively. The interaction between RsbW and σ blocks the transcription initiation activity of the latter protein. RsbW also functions as a serine kinase and phosphorylates RsbV in the presence of ATP. Our modeling study indicates that the RsbW-RsbV complex is stabilized by twenty-four intermolecular non-covalent bonds. Of the bond-forming RsbW residues, Arg 23, and Glu 49 are conserved residues. To understand the roles of Arg 23 in RsbW, rRsbW[R23A], a recombinant RsbW (rRsbW) harboring Arg to Ala change at position 23, was investigated using various probes. The results reveal that rRsbW[R23A], like rRsbW, exists as the dimers in the aqueous solution. However, rRsbW[R23A], unlike rRsbW, neither interacted with a chimeric RsbV (rRsbV) nor formed the phosphorylated rRsbV in the presence of ATP. Furthermore, the tertiary structure and hydrophobic surface area of rRsbW[R23A] matched little with those of rRsbW. Conversely, both rRsbW[R23A] and rRsbW showed interaction with a recombinant σ (rσ). rRsbW and rRsbW[R23A] were also unfolded via the formation of at least one intermediate in the presence of urea. However, the thermodynamic stability of rRsbW significantly differed from that of rRsbW[R23A]. Our molecular dynamics (MD) simulation study also reveals the substantial change of structure, dimension, and stability of RsbW due to the above mutation. The ways side chain of critical Arg 23 contributes to maintaining the tertiary structure, and stability of RsbW was elaborately discussed.Communicated by Ramaswamy H. Sarma.

摘要

RsbW、σ 和 RsbV 分别由 和相关细菌编码,作为抗 σ 因子、σ 因子和抗抗 σ 因子发挥作用。RsbW 与 σ 的相互作用阻止了后者蛋白的转录起始活性。RsbW 还作为丝氨酸激酶发挥作用,并在存在 ATP 的情况下使 RsbV 磷酸化。我们的建模研究表明,RsbW-RsbV 复合物由二十四种分子间非共价键稳定。在形成键的 RsbW 残基中,Arg23 和 Glu49 是保守残基。为了了解 Arg23 在 RsbW 中的作用,我们研究了含有位置 23 处 Arg 突变为 Ala 的重组 RsbW(rRsbW)rRsbW[R23A]。结果表明,rRsbW[R23A] 与 rRsbW 一样,在水溶液中以二聚体形式存在。然而,rRsbW[R23A] 与 rRsbW 不同,既不与嵌合 RsbV(rRsbV)相互作用,也不在存在 ATP 的情况下形成磷酸化的 rRsbV。此外,rRsbW[R23A] 的三级结构和疏水性表面积与 rRsbW 相差不大。相反,rRsbW[R23A] 和 rRsbW 都与重组 σ(rσ)相互作用。rRsbW 和 rRsbW[R23A] 也在存在脲的情况下通过至少一种中间产物展开。然而,rRsbW 的热力学稳定性与 rRsbW[R23A] 显著不同。我们的分子动力学(MD)模拟研究还揭示了由于上述突变,RsbW 的结构、维度和稳定性发生了重大变化。详细讨论了关键 Arg23 的侧链如何有助于维持 RsbW 的三级结构和稳定性。由 Ramaswamy H. Sarma 传达。

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