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首页> 外文期刊>Protein Science: A Publication of the Protein Society >Spa47 is an oligomerization-activated type three secretion system (T3SS) ATPase from Shigella flexneri
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Spa47 is an oligomerization-activated type three secretion system (T3SS) ATPase from Shigella flexneri

机译:Spa47是弗氏志贺氏菌的低聚激活型三分泌系统(T3SS)ATPase

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摘要

Gram-negative pathogens often use conserved type three secretion systems (T3SS) for virulence. The Shigella type three secretion apparatus (T3SA) penetrates the host cell membrane and provides a unidirectional conduit for injection of effectors into host cells. The protein Spa47 localizes to the base of the apparatus and is speculated to be an ATPase that provides the energy for T3SA formation and secretion. Here, we developed an expression and purification protocol, producing active Spa47 and providing the first direct evidence that Spa47 is a bona fide ATPase. Additionally, size exclusion chromatography and analytical ultracentrifugation identified multiple oligomeric species of Spa47 with the largest greater than 8 fold more active for ATP hydrolysis than the monomer. An ATPase inactive Spa47 point mutant was then engineered by targeting a conserved Lysine within the predicted Walker A motif of Spa47. Interestingly, the mutant maintained a similar oligomerization pattern as active Spa47, but was unable to restore invasion phenotype when used to complement a spa47 null S. flexneri strain. Together, these results identify Spa47 as a Shigella T3SS ATPase and suggest that its activity is linked to oligomerization, perhaps as a regulatory mechanism as seen in some related pathogens. Additionally, Spa47 catalyzed ATP hydrolysis appears to be essential for host cell invasion, providing a strong platform for additional studies dissecting its role in virulence and providing an attractive target for anti-infective agents.
机译:革兰氏阴性病原体通常使用保守的三型分泌系统(T3SS)进行毒性处理。志贺氏菌三型分泌设备(T3SA)穿透宿主细胞膜,并提供单向导管,用于将效应子注入宿主细胞。蛋白质Spa47定位在仪器的底部,并推测是为T3SA形成和分泌提供能量的ATPase。在这里,我们开发了一种表达和纯化方案,可产生活性的Spa47,并提供第一个直接证据证明Spa47是真正的ATPase。此外,尺寸排阻色谱法和分析超速离心法鉴定出多个Spa47寡聚物种,其最大的ATP水解活性比其单体高8倍以上。然后,通过在Spa47的预期Walker A图案内靶向保守的赖氨酸来改造ATPase失活的Spa47点突变体。有趣的是,该突变体保持了与活性Spa47相似的寡聚模式,但是当用于补充spa47 null弗氏链球菌菌株时无法恢复入侵表型。总之,这些结果将Spa47鉴定为志贺氏菌T3SS ATPase,并表明其活性与寡聚化有关,也许是某些相关病原体中的调控机制。此外,Spa47催化的ATP水解对于宿主细胞的入侵似乎是必不可少的,它为进一步研究解剖其在毒力中的作用提供了强大的平台,并为抗感染剂提供了有吸引力的靶标。

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