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一种真菌基质模拟分子通过一个在不同生物界保守的基序抑制植物免疫。

A fungal substrate mimicking molecule suppresses plant immunity via an inter-kingdom conserved motif.

机构信息

Botanical Institute and Cluster of Excellence on Plant Sciences, University of Cologne, Cologne, D-50674, Germany.

Max Planck Institute for Terrestrial Microbiology, Marburg, D-35043, Germany.

出版信息

Nat Commun. 2019 Apr 5;10(1):1576. doi: 10.1038/s41467-019-09472-8.

Abstract

Ustilago maydis is a biotrophic fungus causing corn smut disease in maize. The secreted effector protein Pit2 is an inhibitor of papain-like cysteine proteases (PLCPs) essential for virulence. Pit2 inhibitory function relies on a conserved 14 amino acids motif (PID14). Here we show that synthetic PID14 peptides act more efficiently as PLCP inhibitors than the full-length Pit2 effector. Mass spectrometry shows processing of Pit2 by maize PLCPs, which releases an inhibitory core motif from the PID14 sequence. Mutational analysis demonstrates that two conserved residues are essential for Pit2 function. We propose that the Pit2 effector functions as a substrate mimicking molecule: Pit2 is a suitable substrate for apoplastic PLCPs and its processing releases the embedded inhibitor peptide, which in turn blocks PLCPs to modulate host immunity. Remarkably, the PID14 core motif is present in several plant associated fungi and bacteria, indicating the existence of a conserved microbial inhibitor of proteases (cMIP).

摘要

玉米黑粉菌是一种生物营养型真菌,可引起玉米丝黑穗病。分泌的效应蛋白 Pit2 是一种对致病至关重要的木瓜样半胱氨酸蛋白酶(PLCP)的抑制剂。Pit2 的抑制功能依赖于一个保守的 14 个氨基酸基序(PID14)。在这里,我们发现合成的 PID14 肽作为 PLCP 抑制剂比全长 Pit2 效应物更有效。质谱分析表明玉米 PLCP 对 Pit2 进行了加工,从 PID14 序列中释放出一个抑制核心基序。突变分析表明两个保守残基对 Pit2 功能至关重要。我们提出,Pit2 效应物作为一种模拟底物的分子起作用:Pit2 是质外体 PLCP 的合适底物,其加工释放出嵌入式抑制剂肽,进而阻止 PLCP 来调节宿主免疫。值得注意的是,PID14 核心基序存在于几种与植物相关的真菌和细菌中,表明存在一种保守的微生物蛋白酶抑制剂(cMIP)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09c3/6450895/56dc8f86303f/41467_2019_9472_Fig1_HTML.jpg

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