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全凝集素结构域间连接子决定燕麦中抗真菌类橡胶素肽的天冬酰胺内肽酶介导的成熟过程。

Hololectin Interdomain Linker Determines Asparaginyl Endopeptidase-Mediated Maturation of Antifungal Hevein-Like Peptides in Oats.

作者信息

Loo Shining, Tay Stephanie V, Kam Antony, Lee Warren, Tam James P

机构信息

School of Biological Sciences, Nanyang Technological University, Singapore, Singapore.

出版信息

Front Plant Sci. 2022 May 10;13:899740. doi: 10.3389/fpls.2022.899740. eCollection 2022.

Abstract

Heveins and hevein-containing (hev-) lectins play important roles in stress and pathogenic responses in plants but cause health concerns in humans. Hev-hololectins contain multiple modular hev-peptide domains and are abundantly present in cereals and pseudocereals. However, it is unclear why some cereal hev-hololectins are presented as different forms of proteolytically processed proteoforms. Here we show the precursor architectures of hev-hololectins lead to different processing mechanisms to give either hololectins or hevein-like peptides. We used mass spectrometry and datamining to screen hev-peptides from common cereals, and identified from the oat plant nine novel hevein-like peptides, avenatide aV1-aV9. Bioinformatic analysis revealed that asparaginyl endopeptidase (AEP) can be responsible for the maturation of the highly homologous avenatides from five oat hev-hololectin precursors, each containing four tandemly repeating, hev-like avenatide domains connected by AEP-susceptible linkers with 13-16 residues in length. Further analysis of cereal hev-hololectins showed that the linker lengths provide a distinguishing feature between their cleavable and non-cleavable precursors, with the cleavables having considerably longer linkers (>13 amino acids) than the non-cleavables (<6 amino acids). A detailed study of avenatide aV1 revealed that it contains eight cysteine residues which form a structurally compact, metabolic-resistant cystine-knotted framework with a well-defined chitin-binding site. Antimicrobial assays showed that avenatide aV1 is anti-fungal and inhibits the growth of phyto-pathogenic fungi. Together, our findings of cleavable and non-cleavable hololectins found in cereals expand our knowledge to their biosynthesis and provide insights for hololectin-related health concerns in human.

摘要

橡胶素和含橡胶素(hev-)的凝集素在植物的应激和致病反应中发挥重要作用,但会引发人类健康问题。hev-全凝集素包含多个模块化的hev-肽结构域,大量存在于谷物和假谷物中。然而,尚不清楚为何一些谷物hev-全凝集素会以不同形式的蛋白水解加工蛋白变体呈现。在此我们表明,hev-全凝集素的前体结构导致不同的加工机制,产生全凝集素或类橡胶素肽。我们使用质谱和数据挖掘从常见谷物中筛选hev-肽,并从燕麦植株中鉴定出9种新型类橡胶素肽,即燕麦素aV1-aV9。生物信息学分析表明,天冬酰胺内肽酶(AEP)可负责从5种燕麦hev-全凝集素前体中成熟高度同源的燕麦素,每种前体包含4个串联重复的、类hev-燕麦素结构域,由长度为13 - 16个残基的AEP敏感连接子连接。对谷物hev-全凝集素的进一步分析表明,连接子长度是其可裂解和不可裂解前体之间的一个显著特征,可裂解前体的连接子(>13个氨基酸)比不可裂解前体(<6个氨基酸)长得多。对燕麦素aV1的详细研究表明,它含有8个半胱氨酸残基,形成一个结构紧凑、抗代谢的胱氨酸结框架,具有明确的几丁质结合位点。抗菌试验表明,燕麦素aV1具有抗真菌作用,可抑制植物致病真菌的生长。总之,我们在谷物中发现可裂解和不可裂解全凝集素的研究结果扩展了我们对其生物合成的认识,并为与全凝集素相关的人类健康问题提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36e5/9127739/7e10bdaaffc5/fpls-13-899740-g001.jpg

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