Klis Frans M, Boorsma Andre, De Groot Piet W J
Swammerdam Institute for Life Sciences, University of Amsterdam, BioCentrum Amsterdam, The Netherlands.
Yeast. 2006 Feb;23(3):185-202. doi: 10.1002/yea.1349.
In this review, we discuss new insights in cell wall architecture and cell wall construction in the ascomycetous yeast Saccharomyces cerevisiae. Transcriptional profiling studies combined with biochemical work have provided ample evidence that the cell wall is a highly adaptable organelle. In particular, the protein population that is anchored to the stress-bearing polysaccharides of the cell wall, and forms the interface with the outside world, is highly diverse. This diversity is believed to play an important role in adaptation of the cell to environmental conditions, in growth mode and in survival. Cell wall construction is tightly controlled and strictly coordinated with progression of the cell cycle. This is reflected in the usage of specific cell wall proteins during consecutive phases of the cell cycle and in the recent discovery of a cell wall integrity checkpoint. When the cell is challenged with stress conditions that affect the cell wall, a specific transcriptional response is observed that includes the general stress response, the cell wall integrity pathway and the calcineurin pathway. This salvage mechanism includes increased expression of putative cell wall assemblases and some potential cross-linking cell wall proteins, and crucial changes in cell wall architecture. We discuss some more enzymes involved in cell wall construction and also potential inhibitors of these enzymes. Finally, we use both biochemical and genomic data to infer that the architectural principles used by S. cerevisiae to build its cell wall are also used by many other ascomycetous yeasts and also by some mycelial ascomycetous fungi.
在本综述中,我们讨论了关于子囊菌酵母酿酒酵母细胞壁结构和细胞壁构建的新见解。转录谱分析研究与生化研究相结合,提供了充分的证据表明细胞壁是一种高度适应性的细胞器。特别是,锚定在细胞壁的耐压多糖上并与外界形成界面的蛋白质群体高度多样。这种多样性被认为在细胞适应环境条件、生长模式和存活中发挥重要作用。细胞壁构建受到严格控制,并与细胞周期进程严格协调。这反映在细胞周期连续阶段特定细胞壁蛋白的使用上,以及最近发现的细胞壁完整性检查点上。当细胞受到影响细胞壁的应激条件挑战时,会观察到一种特定的转录反应,包括一般应激反应、细胞壁完整性途径和钙调神经磷酸酶途径。这种补救机制包括假定的细胞壁组装酶和一些潜在的交联细胞壁蛋白的表达增加,以及细胞壁结构的关键变化。我们讨论了更多参与细胞壁构建的酶以及这些酶的潜在抑制剂。最后,我们利用生化和基因组数据推断,酿酒酵母构建其细胞壁所采用的结构原则也被许多其他子囊菌酵母以及一些丝状子囊菌真菌所采用。