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Dissecting the role of dolichol in cell wall assembly in the yeast mutants impaired in early glycosylation reactions

机译:剖析了在早期糖基化反应受损的酵母突变体中多立醇在细胞壁装配中的作用

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摘要

Evidence is presented that temperature-sensitive Saccharomyces cerevisiae mutants, impaired in dolichol kinase (Sec59p) or dolichyl phosphate mannose synthase (Dpm1p) activity have an aberrant cell wall composition and ultrastructure. The mutants were oversensitive to Calcofluor white, an agent interacting with the cell wall chitin. In accordance with this, chemical analysis of the cell wall alkali-insoluble fraction indicated an increased amount of chitin and changes in the quantity of beta1,6- and beta1,3-glucan in sec59-1 and dpm1-6 mutants. In order to unravel the link between the formation of dolichyl phosphate and dolichyl phosphate mannose and the cell wall assembly, we screened a yeast genomic library for a multicopy suppressors of the thermosensitive phenotype. The RER2 and SRT1 genes, encoding cis-prenyltransferases, were isolated. In addition, the ROT1 gene, encoding protein involved in beta1,6-glucan synthesis (Machi et al., 2004) and protein folding (Takeuchi et al., 2006) acted as a multicopy suppressor of the temperature-sensitive phenotype of the sec59-1 mutant. The cell wall of the mutants and of mutants bearing the multicopy suppressors was analysed for carbohydrate and mannoprotein content. We also examined the glycosylation status of the plasma membrane protein Gas1p, a beta1,3-glucan elongase, and the degree of phosphorylation of the Mpk1/Slt2 protein, involved in the cell wall integrity pathway.
机译:有证据表明,对温度敏感的酿酒酵母突变体的多壁醇激酶(Sec59p)或二硫代磷酸甘露糖甘露糖合酶(Dpm1p)活性受损,具有异常的细胞壁组成和超微结构。突变体对钙荧光蛋白(一种与细胞壁几丁质相互作用的试剂)过度敏感。据此,对细胞壁碱不溶级分的化学分析表明,sec59-1和dpm1-6突变体中甲壳质的含量增加,β1,6-和β1,3-葡聚糖的含量发生变化。为了弄清磷酸二氢磷酸酯和磷酸二氢磷酸酯甘露糖的形成与细胞壁组装之间的联系,我们筛选了酵母基因组文库以寻找热敏表型的多拷贝抑制剂。分离出编码顺式异戊二烯基转移酶的RER2和SRT1基因。此外,ROT1基因编码参与beta1,6-葡聚糖合成(Machi等,2004)和蛋白质折叠(Takeuchi等,2006)的蛋白质,作为sec59对温度敏感表型的多拷贝抑制剂。 -1突变体。分析了突变体和带有多拷贝抑制子的突变体的细胞壁的碳水化合物和甘露糖蛋白含量。我们还检查了质膜蛋白Gas1p,β1、3-葡聚糖延长酶的糖基化状态,以及Mpk1 / Slt2蛋白的磷酸化程度,参与细胞壁完整性途径。

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