首页> 美国卫生研究院文献>Journal of Bacteriology >Saccharomyces cerevisiae mannoproteins form an external cell wall layer that determines wall porosity.
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Saccharomyces cerevisiae mannoproteins form an external cell wall layer that determines wall porosity.

机译:酿酒酵母甘露蛋白形成决定壁孔隙度的外部细胞壁层。

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摘要

A beta-glucanase (Z-glucanase) from Zymolyase was freed from a protease (Z-protease) by affinity chromatography on alpha 2-macroglobulin-Sepharose columns and used to solubilize proteins from isolated cell walls of Saccharomyces cerevisiae. The cell wall proteins were labeled with 125I and subjected to sodium dodecyl sulfate-polyacrylamide gel electrophoresis and autoradiography. The bulk of the labeled material had very low mobility. Its mannoprotein nature was demonstrated by precipitation with specific antibodies and by conversion to a band with an average molecular weight of 94,000 after incubation with endo-beta-N-acetylglucosaminidase. The intact mannoproteins were hydrolyzed by Z-protease, but were resistant to the enzyme when the carbohydrate was first removed by endo-beta-N-acetylglucosaminidase. In intact cells, lysis of cell walls by Z-glucanase required a previous incubation with z-protease, which led to solubilization of most of the 125I-labeled proteins. Other proteases that did not attack the cell wall mannoproteins were unable to substitute for Z-protease. The specific effect of Z-protease is consistent with the notion that mannoproteins form a surface layer of the cell wall that penetrates the wall to some depth and shields glucans from attack by Z-glucanase. Mannoproteins, however, do not appear to cover the inner face of the cell wall, because isolated cell walls, in contrast to intact cells, were completely solubilized by Z-glucanase in the absence of protease. The function of mannoproteins in determining cell wall porosity was highlighted by the finding that horseradish peroxidase (Mr, 40,000) causes lysis of cells that had been treated with Z-protease. Depletion of mannoproteins by Z-protease also resulted in the disappearance of a darkly stained surface layer of the cell wall, as observed by electron microscopy. Other agents that facilitate cell lysis by Z-glucanase, such as 2-mercaptoethanol, digitonin, and high concentrations of salts, caused little or no solubilization of mannoprotein. We assume that they perturb and loosen the structure of the mannoprotein network, thereby increasing its porosity. The implications of our results for the construction of the yeast cell wall and the anchoring of mannoprotein to the cell are discussed.
机译:通过在α2-巨球蛋白-Sepharose柱上进行亲和层析,将来自Zymolyase的β-葡聚糖酶(Z-葡聚糖酶)从蛋白酶(Z-蛋白酶)中分离出来,并用于溶解来自酿酒酵母分离细胞壁的蛋白质。用125I标记细胞壁蛋白,并进行十二烷基硫酸钠-聚丙烯酰胺凝胶电泳和放射自显影。大部分标记材料具有非常低的迁移率。它的甘露糖蛋白性质通过用特异抗体沉淀并在与内-β-N-乙酰氨基葡糖苷酶孵育后转化为平均分子量为94,000的条带来证明。完整的甘露糖蛋白被Z-蛋白酶水解,但是当首先通过内-β-N-乙酰氨基葡糖苷酶去除碳水化合物时,对甘露糖酶具有抗性。在完整细胞中,通过Z-葡聚糖酶裂解细胞壁需要事先与z-蛋白酶一起孵育,这会导致大多数125I标记的蛋白溶解。其他不攻击细胞壁甘露糖蛋白的蛋白酶不能替代Z蛋白酶。 Z-蛋白酶的特定作用与以下观点一致:甘露糖蛋白形成细胞壁的表面层,该表面层穿透壁至一定深度,并保护葡聚糖免受Z-葡聚糖酶的攻击。然而,甘露糖蛋白似乎没有覆盖细胞壁的内表面,因为与完整细胞相比,分离的细胞壁在没有蛋白酶的情况下被Z-葡聚糖酶完全溶解了。发现辣根过氧化物酶(Mr,40,000)导致经Z-蛋白酶处理的细胞裂解,从而突显了甘露糖蛋白在确定细胞壁孔隙率中的功能。如通过电子显微镜观察到的,Z-蛋白酶消耗甘露糖蛋白也导致细胞壁深色表面层的消失。其他通过Z-葡聚糖酶促进细胞溶解的试剂,例如2-巯基乙醇,洋地黄皂苷和高浓度的盐,很少或没有引起甘露糖蛋白的溶解。我们假设它们会扰乱并放松甘露糖蛋白网络的结构,从而增加其孔隙度。讨论了我们的结果对于酵母细胞壁的构建以及甘露糖蛋白锚定到细胞的意义。

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