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Elucidation of a pH-folding switch in the Pseudomonas syringae effector protein AvrPto

机译:丁香假单胞菌效应蛋白AvrPto中的pH折叠开关的阐明。

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摘要

Pathogenic bacteria have developed extraordinary strategies for invading host cells. The highly conserved type III secretion system (T3SS) provides a regulated conduit between the bacterial and host cytoplasm for delivery of a specific set of bacterial effector proteins that serve to disrupt host signaling and metabolism for the benefit of the bacterium. Remarkably, the inner diameter of the T3SS apparatus requires that effector proteins pass through in at least a partially unfolded form. AvrPto, an effector protein of the plant pathogen Pseudomonas syringae, adopts a helical bundle fold of low stability (ΔGF→U = 2 kcal/mol at pH 7, 26.6 °C) and offers a model system for chaperone-independent secretion. P. syringae effector proteins encounter a pH gradient as they translocate from the bacterial cytoplasm (mildly acidic) into the host cell (neutral). Here, we demonstrate that AvrPto possesses a pH-sensitive folding switch controlled by conserved residue H87 that operates precisely in the pH range expected between the bacterial and host cytoplasm environments. These results provide a mechanism for how a bacterial effector protein employs an intrinsic pH sensor to unfold for translocation via the T3SS and refold once in the host cytoplasm and provide fundamental insights for developing strategies for delivery of engineered therapeutic proteins to target tissues.
机译:致病细菌已开发出入侵宿主细胞的非凡策略。高度保守的III型分泌系统(T3SS)在细菌和宿主细胞质之间提供了一条受调节的管道,用于输送特定的一组细菌效应蛋白,这些蛋白可破坏宿主的信号传导和新陈代谢,从而使细菌受益。值得注意的是,T3SS设备的内径要求效应子蛋白至少以部分展开的形式通过。植物病原体假单胞菌丁香假单胞菌的效应蛋白AvrPto具有低稳定性的螺旋束折叠(在pH 7、26.6°C时ΔGF→U = 2 kcal / mol),并提供了独立于伴侣的分泌的模型系统。丁香假单胞菌效应蛋白在从细菌细胞质(弱酸性)转运到宿主细胞(中性)时会遇到pH梯度。在这里,我们证明了AvrPto拥有一个pH敏感的折叠开关,该开关由保守的残基H87控制,该残基精确地在细菌和宿主细胞质环境之间的pH范围内运行。这些结果为细菌效应蛋白如何利用内在的pH传感器通过T3SS进行折叠以使其易位并在宿主细胞质中再次折叠提供了一种机制,并为开发将工程化治疗蛋白传递至靶标组织的策略提供了基本见识。

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