揭示 IX 型分泌系统反应调节器的分子机制:结构和功能见解

Anshu Saran, Hey-Min Kim, Ireland Manning, Mark A Hancock, Claus Schmitz, Mariusz Madej, Jan Potempa, Maria Sola, Jean-François Trempe, Yongtao Zhu, Mary Ellen Davey, Natalie Zeytuni
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摘要

IX 型分泌系统(T9SS)是细菌病原体用来促进感染的一种纳米机械。该系统由作为其激活开关的信号级联调控。该级联中的一个关键成员--反应调节蛋白 PorX--是防止毒力因子分泌的一个很有前景的药物靶点。在这里,我们提供了 PorX 在体外和体内的全面特征。首先,我们的结构研究发现,PorX 具有一个独特的酶效应结构域,令人惊讶的是,它与参与核苷酸和脂质信号通路的碱性磷酸酶超家族具有结构相似性。重要的是,到目前为止,这些途径还与 T9SS 无关。对 PorX 的效应结构域进行的酶学表征发现,它具有锌依赖性磷酸二酯酶活性,其活性位点尺寸适合容纳大型底物。与典型的反应调节因子在磷酸化后通过其接收结构域实现二聚化不同,我们发现锌还能诱导构象变化,并通过一个意想不到的界面促进 PorX 的二聚化。这些发现表明,PorX 可以作为一种细胞锌传感器,从而拓宽了我们对其调控机制的认识。尽管 PorX 在利用 T9SS 的细菌中保存严格,但我们证明 PorX 对牙龈卟啉单胞菌分泌毒力因子至关重要,并影响非致病性黄杆菌(Flavobacterium johnsoniae)分泌代谢酶,但对分泌滑行粘附素没有影响。总之,这项研究增进了我们对 PorX 结构和功能的了解,突出了其作为药物靶点的潜力,可用于旨在破坏 T9SS 和减轻致病菌毒力的干预策略。
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Unveiling the molecular mechanisms of the Type-IX secretion system's response regulator: Structural and functional insights
The Type-IX secretion system (T9SS) is a nanomachinery utilized by bacterial pathogens to facilitate infection. The system is regulated by a signaling cascade serving as its activation switch. A pivotal member in this cascade, the response regulator protein PorX, represents a promising drug target to prevent the secretion of virulence factors. Here, we provide a comprehensive characterization of PorX both in vitro and in vivo. First, our structural studies revealed PorX harbours a unique enzymatic effector domain, which, surprisingly, shares structural similarities with the alkaline phosphatase superfamily, involved in nucleotide and lipid signaling pathways. Importantly, such pathways have not been associated with the T9SS until now. Enzymatic characterization of PorX’s effector domain revealed a zinc-dependent phosphodiesterase activity, with active site dimensions suitable to accommodate a large substrate. Unlike typical response regulators that dimerize via their receiver domain upon phosphorylation, we found that zinc can also induce conformational changes and promote PorX’s dimerization via an unexpected interface. These findings suggest that PorX can serve as a cellular zinc sensor, broadening our understanding of its regulatory mechanisms. Despite the strict conservation of PorX in T9SS-utilizing bacteria, we demonstrate that PorX is essential for virulence factors secretion in Porphyromonas gingivalis and affects metabolic enzymes secretion in the non-pathogenic Flavobacterium johnsoniae, but not for the secretion of gliding adhesins. Overall, this study advances our structural and functional understanding of PorX, highlighting its potential as a druggable target for intervention strategies aimed at disrupting the T9SS and mitigating virulence in pathogenic species.
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