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一个高度冗余的基因网络控制着 S. cerevisiae 中外孢子壁的组装。

A highly redundant gene network controls assembly of the outer spore wall in S. cerevisiae.

机构信息

Department of Biochemistry and Cell Biology, Stony Brook University, Stony Brook, New York, United States of America.

出版信息

PLoS Genet. 2013;9(8):e1003700. doi: 10.1371/journal.pgen.1003700. Epub 2013 Aug 15.

Abstract

The spore wall of Saccharomyces cerevisiae is a multilaminar extracellular structure that is formed de novo in the course of sporulation. The outer layers of the spore wall provide spores with resistance to a wide variety of environmental stresses. The major components of the outer spore wall are the polysaccharide chitosan and a polymer formed from the di-amino acid dityrosine. Though the synthesis and export pathways for dityrosine have been described, genes directly involved in dityrosine polymerization and incorporation into the spore wall have not been identified. A synthetic gene array approach to identify new genes involved in outer spore wall synthesis revealed an interconnected network influencing dityrosine assembly. This network is highly redundant both for genes of different activities that compensate for the loss of each other and for related genes of overlapping activity. Several of the genes in this network have paralogs in the yeast genome and deletion of entire paralog sets is sufficient to severely reduce dityrosine fluorescence. Solid-state NMR analysis of partially purified outer spore walls identifies a novel component in spore walls from wild type that is absent in some of the paralog set mutants. Localization of gene products identified in the screen reveals an unexpected role for lipid droplets in outer spore wall formation.

摘要

酿酒酵母的孢子壁是一种多层的细胞外结构,在孢子形成过程中从头合成。孢子壁的外层为孢子提供了对各种环境压力的抗性。孢子外壁的主要成分是多糖几丁质和由二氨基酸二酪氨酸形成的聚合物。虽然已经描述了二酪氨酸的合成和输出途径,但直接参与二酪氨酸聚合并掺入孢子壁的基因尚未确定。一种用于鉴定新的参与外壁合成的基因的合成基因阵列方法揭示了一个影响二酪氨酸组装的相互关联的网络。该网络对于不同活性的基因以及具有重叠活性的相关基因都具有高度的冗余性,这些基因可以相互补偿。该网络中的几个基因在酵母基因组中有直系同源物,并且整个直系同源物组的缺失足以严重降低二酪氨酸的荧光。部分纯化的外壁的固态 NMR 分析确定了野生型孢子壁中的一种新型成分,而在一些直系同源物组突变体中不存在该成分。筛选中鉴定的基因产物的定位揭示了脂滴在外壁形成中的一个意外作用。

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