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粟酒裂殖酵母ras1-变形细胞细胞壁组成的变化

Changes in cell wall composition of deformed ras1- cells of Schizosaccharomyces pombe.

作者信息

Harmouch N, Pichová A, Coulon J, Streiblová E, Bonaly R

机构信息

Laboratoire de Biochimie Microbienne, Faculté des Sciences Pharmaceutiques et Biologiques, Nancy, France.

出版信息

Folia Microbiol (Praha). 1995;40(5):519-27. doi: 10.1007/BF02814736.

Abstract

Disruption of the Schizosaccharomyces pombe ras1 gene results in a morphological transformation to large spheres, in contrast to wild-type cells which grow as rods. Chemical analysis of isolated cell walls showed no significant changes in saccharide content but an increase in protein and phosphate contents in ras1- walls relative to parent walls. Polymers tightly bound to the cell wall were solubilized by SDS treatment. Several compounds with molar mass ranging from 22 to 130 kDa and more were resolved by gel filtration and SDS-PAGE. Among low-molar-mass species, a component moving as a band at 31 kDa was conspicuous in ras1- cell walls. It was solubilized by heating in Tris-HCl buffer and shown to have a beta-1,3-glucanase activity against laminarin. The level of the enzyme was by 30% higher in the ras1- cell wall than in the wild-type cell wall. This enzyme may participate in the remodelling of the rigid glucan network and account (at least partially) for the aberrant cell shape. The ras1- cell wall contained a high level of charged polymers, especially phosphoproteins, raising the appealing possibility that ras1- is involved in a putative kinase cascade required to sense and respond to external stimuli destined for the cell wall. Although the present study shows that ras1 loss of function and altered cell wall composition are closely linked defects, it has still to be shown that the ras1 protein is directly involved in alterations found in the mutant cell walls.

摘要

粟酒裂殖酵母ras1基因的破坏导致细胞形态转变为大球体,这与野生型细胞呈杆状生长形成对比。对分离出的细胞壁进行化学分析表明,糖类含量没有显著变化,但相对于亲代细胞壁,ras1突变体细胞壁中的蛋白质和磷酸盐含量有所增加。与细胞壁紧密结合的聚合物经SDS处理后可溶解。通过凝胶过滤和SDS-PAGE分离出了几种摩尔质量范围从22到130 kDa及以上的化合物。在低摩尔质量的物质中,一种在31 kDa处呈条带迁移的成分在ras1突变体细胞壁中很明显。它在Tris-HCl缓冲液中加热可溶解,并显示出对海带多糖具有β-1,3-葡聚糖酶活性。该酶在ras1突变体细胞壁中的水平比野生型细胞壁高30%。这种酶可能参与了刚性葡聚糖网络的重塑,并(至少部分地)解释了异常的细胞形状。ras1突变体细胞壁含有高水平的带电荷聚合物,尤其是磷蛋白,这增加了一种诱人的可能性,即ras1参与了一种假定的激酶级联反应,该反应是感知和响应作用于细胞壁的外部刺激所必需的。尽管本研究表明ras1功能丧失和细胞壁组成改变是密切相关的缺陷,但仍有待证明ras1蛋白直接参与了突变体细胞壁中发现的改变。

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