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Rgg protein structure–function and inhibition by cyclic peptide compounds

机译:Rgg蛋白的结构-功能和环肽化合物的抑制作用

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摘要

Peptide pheromone cell–cell signaling (quorum sensing) regulates the expression of diverse developmental phenotypes (including virulence) in Firmicutes, which includes common human pathogens, e.g., Streptococcus pyogenes and Streptococcus pneumoniae. Cytoplasmic transcription factors known as “Rgg proteins” are peptide pheromone receptors ubiquitous in Firmicutes. Here we present X-ray crystal structures of a Streptococcus Rgg protein alone and in complex with a tight-binding signaling antagonist, the cyclic undecapeptide cyclosporin A. To our knowledge, these represent the first Rgg protein X-ray crystal structures. Based on the results of extensive structure–function analysis, we reveal the peptide pheromone-binding site and the mechanism by which cyclosporin A inhibits activation of the peptide pheromone receptor. Guided by the Rgg–cyclosporin A complex structure, we predicted that the nonimmunosuppressive cyclosporin A analog valspodar would inhibit Rgg activation. Indeed, we found that, like cyclosporin A, valspodar inhibits peptide pheromone activation of conserved Rgg proteins in medically relevant Streptococcus species. Finally, the crystal structures presented here revealed that the Rgg protein DNA-binding domains are covalently linked across their dimerization interface by a disulfide bond formed by a highly conserved cysteine. The DNA-binding domain dimerization interface observed in our structures is essentially identical to the interfaces previously described for other members of the XRE DNA-binding domain family, but the presence of an intermolecular disulfide bond buried in this interface appears to be unique. We hypothesize that this disulfide bond may, under the right conditions, affect Rgg monomer–dimer equilibrium, stabilize Rgg conformation, or serve as a redox-sensitive switch.
机译:肽信息素细胞间信号传导(群体感应)调节了Firmicutes中多种发育表型(包括毒力)的表达,其中包括常见的人类病原体,例如化脓性链球菌和肺炎链球菌。被称为“ Rgg蛋白”的细胞质转录因子是Firmicutes中普遍存在的肽信息素受体。在这里,我们介绍了链球菌Rgg蛋白的单独和与紧密结合的信号拮抗剂环状十一肽环孢菌素A结合的X射线晶体结构。据我们所知,这些代表了第一个Rgg蛋白质X射线晶体结构。根据广泛的结构-功能分析的结果,我们揭示了肽信息素结合位点以及环孢菌素A抑制肽信息素受体激活的机制。在Rgg-环孢菌素A复杂的结构的指导下,我们预测了非免疫抑制性环孢菌素A类似物valspodar将抑制Rgg激活。实际上,我们发现,与环孢菌素A一样,valspodar抑制了医学相关链球菌物种中保守的Rgg蛋白的肽信息素活化。最后,此处呈现的晶体结构表明,Rgg蛋白DNA结合结构域通过高度保守的半胱氨酸形成的二硫键共价连接整个二聚体界面。在我们的结构中观察到的DNA结合域二聚化界面与先前针对XRE DNA结合域家族其他成员描述的界面基本相同,但是埋在该界面中的分子间二硫键似乎是唯一的。我们假设该二硫键可能在正确的条件下影响Rgg单体-二聚体平衡,稳定Rgg构象,或充当氧化还原敏感开关。

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