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Fungal effector Ecp6 outcompetes host immune receptor for chitin binding through intrachain LysM dimerization

机译:真菌效应子Ecp6通过链内LysM二聚化作用胜过宿主免疫受体与几丁质的结合

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摘要

While host immune receptors detect pathogen-associated molecular patterns to activate immunity, pathogens attempt to deregulate host immunity through secreted effectors. Fungi employ LysM effectors to prevent recognition of cell wall-derived chitin by host immune receptors, although the mechanism to compete for chitin binding remained unclear. Structural analysis of the LysM effector Ecp6 of the fungal tomato pathogen Cladosporium fulvum reveals a novel mechanism for chitin binding, mediated by intrachain LysM dimerization, leading to a chitin-binding groove that is deeply buried in the effector protein. This composite binding site involves two of the three LysMs of Ecp6 and mediates chitin binding with ultra-high (pM) affinity. Intriguingly, the remaining singular LysM domain of Ecp6 binds chitin with low micromolar affinity but can nevertheless still perturb chitin-triggered immunity. Conceivably, the perturbation by this LysM domain is not established through chitin sequestration but possibly through interference with the host immune receptor complex.>DOI:
机译:宿主免疫受体检测病原体相关分子模式以激活免疫力时,病原体试图通过分泌的效应子来放松宿主免疫力。真菌使用LysM效应子来阻止宿主免疫受体识别细胞壁衍生的几丁质,尽管竞争几丁质结合的机制仍不清楚。真菌番茄病原体黄萎病菌的LysM效应子Ecp6的结构分析揭示了由链内LysM二聚化介导的几丁质结合的新机制,导致几丁质结合槽深深地埋在效应子蛋白中。该复合结合位点涉及Ecp6的三个LysM中的两个,并以超高(pM)亲和力介导几丁质结合。有趣的是,Ecp6的剩余奇异LysM结构域以低微摩尔亲和力结合几丁质,但仍然会干扰几丁质触发的免疫力。可以想象,LysM结构域的干扰不是通过几丁质螯合建立的,而是可能通过干扰宿主免疫受体复合物来实现的。> DOI:

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