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首页> 外文期刊>Journal of Biotechnology >Deglycosylation of cellulosomal enzyme enhances cellulosome assembly in Saccharomyces cerevisiae
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Deglycosylation of cellulosomal enzyme enhances cellulosome assembly in Saccharomyces cerevisiae

机译:纤维素酶的去糖基化增强了酿酒酵母中的纤维素体组装

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We have estimated the effects of hyper-mannosylation of dockerin-type cellulase on cellulosome assembly by using Saccharomyces cerevisiae and 44 protein glycosylation mutants, because the heterologous protein displayed on yeast is assumed to be modified by yeast-specific hyper-mannosylation. First, we constructed the yeast strain CtminiCipA, which displays a heterologous scaffolding protein (miniCipA from Clostridium thermocellum) on its cell surface, and glycosylation mutants secreting a dockerin-type cellulase (Cel8Aenz-Cel48Sdoc: a fusion protein of the catalytic domain of C. thermocellum Cel8A and the dockerin domain of C. thermocellum Cel48S). Next, minicellulosomes were assembled by mixing the CtminiCipA strain and the dockerin-type cellulase secreted by each glycosylation mutant. By using an endoglucanase assay and flow cytometric analysis, we showed that some glycosylation mutants enhanced cellulosome assembly; in particular, disruption of glycosylation genes located in the endoplasmic reticulum showed intense enhancement. These findings suggest that inhibition of the core complex or precursor formation in protein glycosylation enhances cellulosome assembly, meaning that absence of glycosylation is more important for cellulosome assembly than reducing the size of the glycochain. (C) 2011 Elsevier B.V. All rights reserved.
机译:我们已经估计通过使用酿酒酵母和44个蛋白质糖基化突变体,码头工人型纤维素酶的高甘露糖基化对纤维素酶体组装的影响,因为假定酵母上显示的异源蛋白质被酵母特异的超甘露糖基化修饰。首先,我们构建了酵母菌株CtminiCipA,该菌株在其细胞表面显示出异源支架蛋白(来自热纤梭菌的miniCipA),并分泌分泌dockerin型纤维素酶的糖基化突变体(Cel8Aenz-Cel48Sdoc:C催化结构域的融合蛋白)。 Thermocellum Cel8A和C.thermocellum Cel48S的dockerin域)。接下来,通过将CtminiCipA菌株和每个糖基化突变体分泌的dockerin型纤维素酶混合来组装微纤维素体。通过使用内切葡聚糖酶测定法和流式细胞仪分析,我们发现一些糖基化突变体增强了纤维素体的组装。特别地,位于内质网的糖基化基因的破坏显示出强烈的增强。这些发现表明,抑制蛋白质糖基化过程中的核心复合物或前体形成会增强纤维素小体的组装,这意味着对于纤维素小体组装而言,糖基化的缺失比减小糖链的大小更为重要。 (C)2011 Elsevier B.V.保留所有权利。

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