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Stress proteins on the yeast cell surface determine resistance to osmotin a plant antifungal protein

机译:酵母细胞表面的应激蛋白决定了对渗透素(一种植物抗真菌蛋白)的抗性

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摘要

Strains of the yeast Saccharomyces cerevisiae differ in their sensitivities to tobacco osmotin, an antifungal protein of the PR-5 family. However, cells sensitive to tobacco osmotin showed resistance to osmotin-like proteins purified from the plant Atriplex nummularia, indicating a strict specificity between the antifungal protein and its target cell. A member of a gene family encoding stress proteins induced by heat and nitrogen limitation, collectively called Pir proteins, was isolated among the genes that conveyed resistance to tobacco osmotin to a susceptible strain. We show that overexpression of Pir proteins increased resistance to osmotin, whereas simultaneous deletion of all PIR genes in a tolerant strain resulted in sensitivity. Pir proteins have been immunolocalized to the cell wall. The enzymatic digestion of the cell wall of sensitive and resistant cells rendered spheroplasts equally susceptible to the cytotoxic action of tobacco osmotin but not to other osmotin-like proteins, indicating that the cell membrane interacts specifically with osmotin and facilitates its action. Our results demonstrate that fungal cell wall proteins are determinants of resistance to antifungal PR-5 proteins.
机译:酿酒酵母菌株对烟草渗透素(PR-5家族的抗真菌蛋白)的敏感性不同。然而,对烟草渗透素敏感的细胞显示出对从植物滨藜属植物中提取的渗透素样蛋白的抗性,表明抗真菌蛋白与其靶细胞之间具有严格的特异性。在对烟草渗透压产生抗药性的基因中分离出编码由热和氮限制诱导的应激蛋白的基因家族的一个成员,统称为Pir蛋白。我们表明,Pir蛋白的过表达增加了对渗透蛋白的抵抗力,而同时在耐受菌株中所有PIR基因的缺失导致了敏感性。 Pir蛋白已免疫定位到细胞壁。酶消化敏感和抗性细胞的细胞壁使原生质球同样易受烟草渗透素的细胞毒性作用,但对其他渗透素样蛋白不敏感,这表明细胞膜与渗透素特异性相互作用并促进其作用。我们的结果表明,真菌细胞壁蛋白是抗真菌PR-5蛋白抗性的决定因素。

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