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The Role of Glucosidase I (Cwh41p) in the Biosynthesis of Cell Wall β-16-Glucan Is Indirect

机译:葡萄糖苷酶I(Cwh41p)在细胞壁β-16-葡聚糖的生物合成中的作用是间接的

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摘要

CWH41, a gene involved in the assembly of cell wall β-1,6-glucan, has recently been shown to be the structural gene for Saccharomyces cerevisiae glucosidase I that is responsible for initiating the trimming of terminal α-1,2-glucose residue in the N-glycan processing pathway. To distinguish between a direct or indirect role of Cwh41p in the biosynthesis of β-1,6-glucan, we constructed a double mutant, alg5Δ (lacking dolichol-P-glucose synthase) cwh41Δ, and found that it has the same phenotype as the alg5Δ single mutant. It contains wild-type levels of cell wall β-1,6-glucan, shows moderate underglycosylation of N-linked glycoproteins, and grows at concentrations of Calcofluor White (which interferes with cell wall assembly) that are lethal to cwh41Δ single mutant. The strong genetic interactions of CWH41 with KRE6 and KRE1, two other genes involved in the β-1,6-glucan biosynthetic pathway, disappear in the absence of dolichol-P-glucose synthase (alg5Δ). The triple mutant alg5Δcwh41Δkre6Δ is viable, whereas the double mutant cwh41Δkre6Δ in the same genetic background is not. The severe slow growth phenotype and 75% reduction in cell wall β-1,6-glucan, characteristic of the cwh41Δkre1Δ double mutant, are not observed in the triple mutant alg5Δcwh41Δkre1Δ. Kre6p, a putative Golgi glucan synthase, is unstable in cwh41Δ strains, and its overexpression renders these cells Calcofluor White resistant. These results demonstrate that the role of glucosidase I (Cwh41p) in the biosynthesis of cell wall β-1,6-glucan is indirect and that dolichol-P-glucose is not an intermediate in this pathway.
机译:CWH41,一种参与细胞壁β-1,6-葡聚糖组装的基因,最近被证明是酿酒酵母葡糖苷酶I的结构基因,负责启动末端α-1,2-葡萄糖残基的修饰。在N-聚糖加工途径中为了区分Cwh41p在β-1,6-葡聚糖的生物合成中的直接作用还是间接作用,我们构建了一个双突变体alg5Δ(缺少多聚醇-P-葡萄糖合酶)cwh41Δ,发现其具有与Cwh41p相同的表型。 alg5Δ单突变体。它含有野生型水平的细胞壁β-1,6-葡聚糖,显示N-连接糖蛋白的中等糖基化不足,并在对cwh41Δ单个突变体具有致命性的Calcofluor White(干扰细胞壁组装)浓度下生长。 CWH41与KRE6和KRE1(参与β-1,6-葡聚糖生物合成途径的另外两个基因)之间的强遗传相互作用在缺乏二氢-P-葡萄糖合酶(alg5Δ)的情况下消失。具有相同遗传背景的三重突变体alg5Δcwh41Δkre6Δ可行,而双突变体cwh41Δkre6Δ则不可行。在三突变体alg5Δcwh41Δkre1Δ中未观察到cwh41Δkre1Δ双突变体的特征的严重的缓慢生长表型和细胞壁β-1,6-葡聚糖减少75%。 Kre6p是一种假定的高尔基葡聚糖合酶,在cwh41Δ菌株中不稳定,其过表达使这些细胞对Calcofluor White具有抗性。这些结果表明,葡糖苷酶I(Cwh41p)在细胞壁β-1,6-葡聚糖的生物合成中的作用是间接的,而多聚醇-P-葡萄糖不是该途径的中间产物。

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