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Asymmetric Structure of the Dimerization Domain of PhoR, a Sensor Kinase Important for the Virulence of Mycobacterium tuberculosis

机译:PhoR的二聚化结构域的不对称结构,这是一种对结核分枝杆菌的毒力很重要的传感器激酶

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摘要

The PhoP–PhoR two-component system is essential for the virulence of Mycobacterium tuberculosis (Mtb ) and therefore represents a potential target for developing novel antituberculosis therapies. However, little is known about the mechanism by which this two-component system regulates the virulence. In this study, we demonstrated that a phoR mutant Mtb strain has phenotypes similar to those of a phoP mutant, suggesting that PhoP and PhoR work in the same pathway to regulate Mtb virulence. We determined the structure of the dimerization and histidine phosphotransfer (DHp) domain of PhoR to a 1.9 ? resolution. The structure revealed that the DHp domain is a dimer. Each subunit consists of two antiparallel α helices connected by a loop of five residues. The two subunits of the dimer fold into a four-helical bundle with a continuous hydrophobic core. The topology of the four-helical bundle is identical to the histidine kinases that are known to have a cis-autophosphorylation mechanism, suggesting that PhoR is likely to autophosphorylate in cis. The dimer is asymmetric, with one subunit having a greater bending angle than the other at the highly conserved proline residue five-residues downstream of the phosphorylation site histidine. This structural asymmetry of the dimer suggests the flexibility of the PhoR DHp domain, which is likely to be important for the signal transduction mechanism in controlling the autophosphorylation and phosphotransfer reactions and communicating with the upstream structure.
机译:PhoP–PhoR两组分系统对于结核分枝杆菌(Mtb)的毒力至关重要,因此代表了开发新型抗结核疗法的潜在目标。但是,对于这种由两部分组成的系统调节毒力的机制知之甚少。在这项研究中,我们证明了 phoR突变体 Mtb菌株的表型与 phoP突变体的表型相似,这表明PhoP和PhoR以相同的途径调节 Mtb毒力。我们确定了PhoR的二聚化和组氨酸磷酸转移(DHp)结构域为1.9?的结构。解析度。该结构表明DHp结构域是二聚体。每个亚基由两个反平行的α螺旋组成,这些螺旋由5个残基组成的环连接。二聚体的两个亚基折叠成具有连续疏水核的四螺旋束。四螺旋束的拓扑结构与已知具有顺式自磷酸化机制的组氨酸激酶相同,这表明PhoR可能在顺式中自磷酸化。二聚体是不对称的,在磷酸化位点组氨酸下游的高度保守的脯氨酸残基有五个残基时,一个亚基的弯曲角比另一个亚基大。二聚体的这种结构不对称暗示了PhoR DHp结构域的柔性,这对于控制自磷酸化和磷酸转移反应以及与上游结构通讯的信号转导机制可能很重要。

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