Shaw J A, Mol P C, Bowers B, Silverman S J, Valdivieso M H, Durán A, Cabib E
Laboratory of Biochemistry and Metabolism, National Institute of Diabetes and Digestive and Kidney Diseases, Bethesda, Maryland 20892.
J Cell Biol. 1991 Jul;114(1):111-23. doi: 10.1083/jcb.114.1.111.
The morphology of three Saccharomyces cerevisiae strains, all lacking chitin synthase 1 (Chs1) and two of them deficient in either Chs3 (calR1 mutation) or Chs2 was observed by light and electron microscopy. Cells deficient in Chs2 showed clumpy growth and aberrant shape and size. Their septa were very thick; the primary septum was absent. Staining with WGA-gold complexes revealed a diffuse distribution of chitin in the septum, whereas chitin was normally located at the neck between mother cell and bud and in the wall of mother cells. Strains deficient in Chs3 exhibited minor abnormalities in budding pattern and shape. Their septa were thin and trilaminar. Staining for chitin revealed a thin line of the polysaccharide along the primary septum; no chitin was present elsewhere in the wall. Therefore, Chs2 is specific for primary septum formation, whereas Chs3 is responsible for chitin in the ring at bud emergence and in the cell wall. Chs3 is also required for chitin synthesized in the presence of alpha-pheromone or deposited in the cell wall of cdc mutants at nonpermissive temperature, and for chitosan in spore walls. Genetic evidence indicated that a mutant lacking all three chitin synthases was inviable; this was confirmed by constructing a triple mutant rescued by a plasmid carrying a CHS2 gene under control of a GAL1 promoter. Transfer of the mutant from galactose to glucose resulted in cell division arrest followed by cell death. We conclude that some chitin synthesis is essential for viability of yeast cells.
通过光学显微镜和电子显微镜观察了三株酿酒酵母菌株的形态,这三株菌株均缺乏几丁质合酶1(Chs1),其中两株分别缺乏Chs3(calR1突变)或Chs2。缺乏Chs2的细胞生长成簇状,形状和大小异常。它们的隔膜非常厚;没有初生隔膜。用WGA-金复合物染色显示几丁质在隔膜中呈弥散分布,而几丁质通常位于母细胞和芽之间的颈部以及母细胞壁中。缺乏Chs3的菌株在出芽模式和形状上表现出轻微异常。它们的隔膜薄且呈三层结构。几丁质染色显示沿着初生隔膜有一条薄的多糖线;壁的其他部位没有几丁质。因此,Chs2对初生隔膜的形成具有特异性,而Chs3负责出芽时环中的几丁质以及细胞壁中的几丁质。Chs3对于在α-信息素存在下合成的几丁质或在非允许温度下沉积在cdc突变体细胞壁中的几丁质,以及对于孢子壁中的壳聚糖也是必需的。遗传证据表明,缺乏所有三种几丁质合酶的突变体是不可存活的;通过构建一个由携带在GAL1启动子控制下的CHS2基因的质粒拯救的三重突变体,证实了这一点。将突变体从半乳糖转移到葡萄糖导致细胞分裂停滞,随后细胞死亡。我们得出结论,一些几丁质合成对于酵母细胞的存活至关重要。