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首页> 外文期刊>Applied Microbiology and Biotechnology >Enhanced productivity of protease-sensitive heterologous proteins by disruption of multiple protease genes in the fission yeast Schizosaccharomyces pombe
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Enhanced productivity of protease-sensitive heterologous proteins by disruption of multiple protease genes in the fission yeast Schizosaccharomyces pombe

机译:通过破坏裂殖酵母粟酒裂殖酵母中的多个蛋白酶基因,提高蛋白酶敏感性异源蛋白的生产力

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摘要

The creation of protease-deficient mutants to avoid product degradation is one of the current strategies employed to improve productivity and secretion efficiency of heterologous protein expression. We previously constructed a set of single protease-deficient mutants of the fission yeast Schizosaccharomyces pombe by respective disruption of 52 protease genes, and we succeeded in confirming useful disruptants (Idiris et al., Yeast 23: 83-99, 2006). In the present study, we attempted multiple deletions of 13 protease genes, single deletions of which were previously confirmed as being beneficial for reducing extracellular product degradation. Using PCR-based gene replacement, a series of multiple deletion strains was constructed by multiple disruption of a maximum of seven protease genes. Effects of the resultant multiple deletion strains on heterologous expression were then measured by practical expression of a proteolytically sensitive model protein, the human growth hormone (hGH). Time profiles of hGH secretion from each resultant mutant demonstrated significantly enhanced hGH productivity with processing of the multiple protease deletions. The data clearly indicated that disruption of multiple protease genes in the fission yeast is an effective method for controlling proteolytic degradation of heterologous proteins particularly susceptible to proteases.
机译:蛋白酶缺陷型突变体的产生以避免产物降解是提高异源蛋白表达的生产率和分泌效率的当前策略之一。我们先前通过分别破坏52个蛋白酶基因而构建了一组裂变酵母裂殖酵母的单蛋白酶缺陷突变体,并且我们成功地证实了有用的破坏剂(Idiris等,Yeast 23:83-99,2006)。在本研究中,我们尝试了13个蛋白酶基因的多次缺失,先前已证实其中的单个缺失对于减少细胞外产物降解是有益的。使用基于PCR的基因替换,通过多次破坏最多七个蛋白酶基因,构建了一系列多重缺失菌株。然后通过蛋白水解敏感性模型蛋白,人类生长激素(hGH)的实际表达来测量所得的多个缺失菌株对异源表达的影响。每个产生的突变体分泌的hGH的时间曲线表明,随着多种蛋白酶缺失的处理,hGH的生产率显着提高。数据清楚地表明,裂变酵母中多个蛋白酶基因的破坏是控制特别易受蛋白酶影响的异源蛋白的蛋白水解降解的有效方法。

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