Department of Molecular and Biomedical Sciences, Jozef Stefan Institute, 1000 Ljubljana, Slovenia.
Mol Genet Genomics. 2010 Jun;283(6):519-30. doi: 10.1007/s00438-010-0533-8. Epub 2010 Apr 9.
Modulating composition and shape of biological membranes is an emerging mode of regulation of cellular processes. We investigated the global effects that such perturbations have on a model eukaryotic cell. Phospholipases A(2) (PLA(2)s), enzymes that cleave one fatty acid molecule from membrane phospholipids, exert their biological activities through affecting both membrane composition and shape. We have conducted a genome-wide analysis of cellular effects of a PLA(2) in the yeast Saccharomyces cerevisiae as a model system. We demonstrate functional genetic and biochemical interactions between PLA(2) activity and the Rim101 signaling pathway in S. cerevisiae. Our results suggest that the composition and/or the shape of the endosomal membrane affect the Rim101 pathway. We describe a genetically and functionally related network, consisting of components of the Rim101 pathway and the prefoldin, retromer and SWR1 complexes, and predict its functional relation to PLA(2) activity in a model eukaryotic cell. This study provides a list of the players involved in the global response to changes in membrane composition and shape in a model eukaryotic cell, and further studies are needed to understand the precise molecular mechanisms connecting them.
调节生物膜的组成和形状是细胞过程调节的一种新出现的模式。我们研究了这种扰动对模型真核细胞的全局影响。磷脂酶 A2(PLA2)是一种从膜磷脂中切割一个脂肪酸分子的酶,通过影响膜的组成和形状来发挥其生物学活性。我们以酵母酿酒酵母为模型系统,对 PLA2 在细胞中的作用进行了全基因组分析。我们证明了 PLA2 活性与酿酒酵母 Rim101 信号通路之间存在功能遗传和生化相互作用。我们的结果表明,内体膜的组成和/或形状影响 Rim101 途径。我们描述了一个遗传上和功能上相关的网络,由 Rim101 途径的组成部分以及前折叠蛋白、逆行蛋白和 SWR1 复合物组成,并预测了它与模型真核细胞中 PLA2 活性的功能关系。这项研究提供了一个涉及模型真核细胞中膜组成和形状变化的全局反应的参与者列表,需要进一步的研究来理解将它们联系起来的精确分子机制。