Jiang B, Ram A F, Sheraton J, Klis F M, Bussey H
Department of Biology, McGill University, Montreal, Quebec, Canada.
Mol Gen Genet. 1995 Aug 21;248(3):260-9. doi: 10.1007/BF02191592.
Analysis of genes involved in yeast cell wall beta-glucan assembly has led to the isolation of EXG1, PBS2 and PTC1. EXG1 and PBS2 were isolated as genes that, when expressed from multicopy plasmids, led to a dominant killer toxin-resistant phenotype. The PTC1 gene was cloned by functional complementation of the calcofluor white-hypersensitive mutant cwh47-1. PTC1/CWH47 is the structural gene for a type 2C serine/threonine phosphatase, EXG1 codes for an exo-beta-glucanase, and PBS2 encodes a MAP kinase kinase in the Pbs2p-Hog1p signal transduction pathway. Overexpression of EXG1 on a 2 mu plasmid led to reduction in a cell wall beta 1,6-glucan and caused killer resistance in wild type cells; while the exg1 delta mutant displayed modest increases in killer sensitivity and beta 1,6-glucan levels. Disruption of PTC1/CWH47 and overexpression of PBS2 gave rise to similar beta-glucan related phenotypes, with higher levels of EXG1 transcription, increased exo-beta-glucanase activity, reduced beta 1,6-glucan levels, and resistance to killer toxin. Genetic analysis revealed that loss of function of the PBS2 gene was epistatic to PTC1/CWH47 disruption, indicating a functional role for the Ptc1p/Cwh47p phosphatase in the Pbs2p-Hog1p signal transduction pathway. These results suggest that Ptc1p/Cwh47p and Pbs2p play opposing regulatory roles in cell wall glucan assembly, and that this is effected in part by modulating Exg1p activity.
对参与酵母细胞壁β-葡聚糖组装的基因进行分析,已分离出EXG1、PBS2和PTC1。EXG1和PBS2是作为基因被分离出来的,当它们从多拷贝质粒表达时,会导致显性抗杀伤毒素表型。PTC1基因是通过对荧光增白剂超敏突变体cwh47-1进行功能互补而克隆得到的。PTC1/CWH47是一种2C型丝氨酸/苏氨酸磷酸酶的结构基因,EXG1编码一种外切β-葡聚糖酶,PBS2在Pbs2p-Hog1p信号转导途径中编码一种丝裂原活化蛋白激酶激酶。在2μm质粒上过量表达EXG1会导致细胞壁β1,6-葡聚糖减少,并使野生型细胞产生抗杀伤能力;而exg1Δ突变体的杀伤敏感性和β1,6-葡聚糖水平略有增加。破坏PTC1/CWH47并过量表达PBS2会产生类似的与β-葡聚糖相关的表型,包括EXG1转录水平升高、外切β-葡聚糖酶活性增加、β1,6-葡聚糖水平降低以及对杀伤毒素的抗性。遗传分析表明,PBS2基因功能缺失对PTC1/CWH47破坏具有上位性,表明Ptc1p/Cwh47p磷酸酶在Pbs2p-Hog1p信号转导途径中具有功能作用。这些结果表明,Ptc1p/Cwh47p和Pbs2p在细胞壁葡聚糖组装中发挥相反的调节作用,并且这部分是通过调节Exg1p活性来实现的。