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溶纤维丁酸弧菌内切-β-1,4-葡聚糖酶基因与果胶杆菌果胶酸裂解酶和多聚半乳糖醛酸酶基因在酿酒酵母中的表达

Expression of the Butyrivibrio fibrisolvens endo-beta-1,4-glucanase gene together with the Erwinia pectate lyase and polygalacturonase genes in Saccharomyces cerevisiae.

作者信息

van Rensburg P, van Zyl W H, Pretorius I S

机构信息

Department of Microbiology, University of Stellenbosch, South Africa.

出版信息

Curr Genet. 1994 Dec;27(1):17-22. doi: 10.1007/BF00326573.

Abstract

Recombinant Saccharomyces cerevisiae strains capable of simultaneous secretion of bacterial glucanase and pectinase enzymes have been developed. The Butyrivibrio fibrrisolvens endo-beta-1,4-glucanase gene (end1), the Erwinia chrysanthemi pectate lyase gene (pelE) and E. carotovora polygalacturonase gene (peh1) were each inserted between a yeast expression-secretion cassette and yeast gene terminator, and cloned into yeast-centromeric shuttle vectors. Transcription initiation signals present in the expression-secretion cassette were derived from the yeast alcohol dehydrogenase gene promoter (ADC1P), whereas the transcription termination signals were derived from the yeast tryptophan synthase gene terminator (TRP5T). Secretion of glucanase and pectinases was directed by the signal sequence of the yeast mating pheromone alpha-factor (MF alpha 1S). These YCplac111-based constructs, designated END1, PEL5, AND PEH1, respectively, were transformed into S. cerevisiae. The END1, PEL5 and PEH1 constructs were co-expressed in laboratory strains of S. cerevisiae as well as in wine and distillers' yeasts. DNA-RNA hybridization analysis showed the presence of END1, PEL5 and PEH1 transcripts. Carboxymethylcellulose and polypectate agarose assays revealed the production of biologically active endo-beta-1,4-glucanase, pectate lyase and polygalacturonase by the S. cerevisiae transformants. Interestingly, although the same expression-secretion cassette was used in all three constructs, time-course assays indicated that the pectinases were secreted before the glucanase. It is tempting to speculate that the bulkiness of the END1-encoded protein and the five alternating repeats of Pro-Asp-Pro-Thr(Gln)-Pro-Val-Asp within the glucanase moiety could be involved in the delayed secretion of the glucanase.

摘要

已开发出能够同时分泌细菌葡聚糖酶和果胶酶的重组酿酒酵母菌株。将溶纤维丁酸弧菌内切β-1,4-葡聚糖酶基因(end1)、菊欧文氏菌果胶酸裂解酶基因(pelE)和胡萝卜软腐果胶杆菌聚半乳糖醛酸酶基因(peh1)分别插入酵母表达-分泌盒和酵母基因终止子之间,并克隆到酵母着丝粒穿梭载体中。表达-分泌盒中存在的转录起始信号来源于酵母乙醇脱氢酶基因启动子(ADC1P),而转录终止信号来源于酵母色氨酸合酶基因终止子(TRP5T)。葡聚糖酶和果胶酶的分泌由酵母交配信息素α-因子(MFα1S)的信号序列引导。这些分别命名为END1、PEL5和PEH1的基于YCplac111的构建体被转化到酿酒酵母中。END1、PEL5和PEH1构建体在酿酒酵母的实验室菌株以及葡萄酒酵母和酿酒酵母中共同表达。DNA-RNA杂交分析显示存在END1、PEL5和PEH1转录本。羧甲基纤维素和聚果胶酸琼脂糖测定表明酿酒酵母转化体产生了具有生物活性的内切β-1,4-葡聚糖酶、果胶酸裂解酶和聚半乳糖醛酸酶。有趣的是,尽管在所有三种构建体中使用了相同的表达-分泌盒,但时间进程测定表明果胶酶比葡聚糖酶先分泌。推测END1编码蛋白的体积以及葡聚糖酶部分内Pro-Asp-Pro-Thr(Gln)-Pro-Val-Asp的五个交替重复可能与葡聚糖酶的延迟分泌有关。

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