A conserved interaction between the effector Sca4 and host clathrin suggests additional contributions for Sca4 during rickettsial infection.

IF 2.9 3区 医学 Q3 IMMUNOLOGY
Cassandra J Vondrak, Brandon Sit, Chanakan Suwanbongkot, Kevin R Macaluso, Rebecca L Lamason
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引用次数: 0

Abstract

Intracellular bacterial pathogens deploy secreted effector proteins that manipulate diverse host machinery and pathways to promote infection. Although many effectors carry out a single function or interaction, there are a growing number of secreted effectors capable of interacting with multiple host factors. However, few effectors secreted by arthropod-borne obligate intracellular Rickettsia species have been linked to multiple host targets. Here, we investigated the conserved rickettsial secreted effector Sca4, which was previously shown to interact with host vinculin in donor cells to promote cell-to-cell spread in the model Rickettsia species R. parkeri. We discovered that Sca4 also binds the host cell protein clathrin heavy chain (CHC, CLTC) via a conserved segment in the Sca4 N-terminus. In mammalian host cells, ablation of CLTC expression or chemical inhibition of endocytosis reduced R. parkeri cell-to-cell spread, indicating that clathrin promotes efficient spread. Unexpectedly, the contribution of CHC to spread was independent of Sca4 and appeared restricted to the recipient host cell, suggesting that the Sca4-clathrin interaction regulates another aspect of the infectious lifecycle. Indeed, R. parkeri lacking Sca4 or expressing a Sca4 truncation unable to bind clathrin had markedly reduced burdens in tick cells, hinting at a cell type-specific function for the Sca4-clathrin interaction. Sca4 homologs from diverse Rickettsia species also bound clathrin, suggesting that the function of this novel effector-host interaction may be broadly important for rickettsial infection. We conclude that Sca4 has multiple targets during infection and that rickettsiae may manipulate host endocytic machinery to facilitate several stages of their life cycles.

效应子Sca4与宿主凝集素之间的保守相互作用表明,Sca4在立克次体感染过程中还有其他贡献。
细胞内细菌病原体利用分泌效应蛋白操纵多种宿主机制和途径来促进感染。虽然许多效应蛋白只具有单一功能或相互作用,但越来越多的分泌型效应蛋白能够与多种宿主因子相互作用。然而,节肢动物传播的细胞内立克次体分泌的效应子很少与宿主的多个目标相关联。在这里,我们研究了保守的立克次体分泌效应物 Sca4,之前的研究表明它能与供体细胞中的宿主 vinculin 相互作用,促进模式立克次体 R. parkeri 的细胞间传播。我们发现,Sca4 还能通过 Sca4 N 端的保守区段与宿主细胞蛋白凝集素重链(CHC,CLTC)结合。在哺乳动物宿主细胞中,CLTC表达的消减或内吞的化学抑制减少了R. parkeri细胞间的扩散,这表明凝集素促进了有效的扩散。意想不到的是,CHC 对扩散的贡献与 Sca4 无关,而且似乎仅限于受体宿主细胞,这表明 Sca4 与凝集素的相互作用调节了感染生命周期的另一个方面。事实上,缺乏 Sca4 或表达不能结合凝集素的 Sca4 截短体的 R. parkeri 在蜱细胞中的感染量明显减少,这表明 Sca4 与凝集素的相互作用具有细胞类型特异性功能。来自不同立克次体的Sca4同源物也能结合凝集素,这表明这种新型效应物-宿主相互作用的功能可能对立克次体感染具有广泛的重要性。我们的结论是,Sca4在感染过程中有多个靶标,立克次体可能操纵宿主的内细胞机制以促进其生命周期的多个阶段。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Infection and Immunity
Infection and Immunity 医学-传染病学
CiteScore
6.00
自引率
6.50%
发文量
268
审稿时长
3 months
期刊介绍: Infection and Immunity (IAI) provides new insights into the interactions between bacterial, fungal and parasitic pathogens and their hosts. Specific areas of interest include mechanisms of molecular pathogenesis, virulence factors, cellular microbiology, experimental models of infection, host resistance or susceptibility, and the generation of innate and adaptive immune responses. IAI also welcomes studies of the microbiome relating to host-pathogen interactions.
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