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比较蛋白质组学分析表明,Gnt2介导的N-糖基化作用会影响尖孢镰刀菌的细胞壁聚糖和蛋白质含量。

Comparative proteomic analyses reveal that Gnt2-mediated N-glycosylation affects cell wall glycans and protein content in Fusarium oxysporum.

作者信息

Lopez-Fernandez Loida, Roncero M Isabel G, Prieto Alicia, Ruiz-Roldan Carmen

机构信息

Departamento de Genetica, Universidad de Cordoba, Spain; Campus de Excelencia Agroalimentario (ceiA3), E-14071 Cordoba, Spain.

Centro de Investigaciones Biologicas-CSIC, 28040 Madrid, Spain.

出版信息

J Proteomics. 2015 Oct 14;128:189-202. doi: 10.1016/j.jprot.2015.07.035. Epub 2015 Aug 4.

Abstract

Protein N-glycosylation is a ubiquitous post-translational modification that contributes to appropriate protein folding, stability, functionality and localization. N-glycosylation has been identified as an important process for morphogenesis and virulence in several fungal pathogens including Fusarium oxysporum. Here we conducted comparative chemical and proteome-based analyses to better understand the physiological changes associated with protein hypo-N-glycosylation in F. oxysporum N-glycosyltransferase Gnt2-deficient mutant. The results suggest that lack of functional Gnt2 alters the size of galactofuranose chains in cell wall glycans, resulting in polysaccharides with a broad range of polymerization degrees and differential protein glycosylation patterns. Functional Gnt2 is necessary for normal conidium size and morphology and wild-type hyphal fusion rates. Hypo-N-glycosylation in ∆gnt2 mutant results in enhanced oxidative stress resistance and reduced levels of proteins involved in cell wall organization, biogenesis and remodelling. Deletion of gnt2 gene led to accumulation of trafficking vesicles at hyphal tips, reduced secretion of extracellular proteins related to detoxification of antifungal compounds and degradation of plant cell walls, and lowered extracellular polygalacturonase activity. Altogether, the results confirm that Gnt2-mediated N-glycosylation plays a crucial role in morphogenesis and virulence, and demonstrate that Gnt2 is essential for protein function, transport and relative abundance in F. oxysporum.

摘要

蛋白质 N-糖基化是一种普遍存在的翻译后修饰,有助于蛋白质正确折叠、稳定、发挥功能及定位。在包括尖孢镰刀菌在内的几种真菌病原体中,N-糖基化已被确定为形态发生和毒力的重要过程。在此,我们进行了基于化学和蛋白质组的比较分析,以更好地了解与尖孢镰刀菌 N-糖基转移酶 Gnt2 缺陷型突变体中蛋白质低 N-糖基化相关的生理变化。结果表明,功能性 Gnt2 的缺失改变了细胞壁聚糖中呋喃半乳糖链的大小,导致多糖具有广泛的聚合度和不同的蛋白质糖基化模式。功能性 Gnt2 对于正常分生孢子大小和形态以及野生型菌丝融合率是必需的。∆gnt2 突变体中的低 N-糖基化导致抗氧化应激能力增强,以及参与细胞壁组织、生物合成和重塑的蛋白质水平降低。gnt2 基因的缺失导致运输囊泡在菌丝尖端积累,与抗真菌化合物解毒和植物细胞壁降解相关的细胞外蛋白质分泌减少,以及细胞外多聚半乳糖醛酸酶活性降低。总之,结果证实 Gnt2 介导的 N-糖基化在形态发生和毒力中起关键作用,并证明 Gnt2 对尖孢镰刀菌中的蛋白质功能、运输和相对丰度至关重要。

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