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工业抗生素生产的未来:从随机诱变到合成生物学。

The future of industrial antibiotic production: from random mutagenesis to synthetic biology.

作者信息

Medema Marnix H, Alam Mohammad T, Breitling Rainer, Takano Eriko

机构信息

Department of Microbial Physiology, University of Groningen, The Netherlands.

出版信息

Bioeng Bugs. 2011 Jul-Aug;2(4):230-3. doi: 10.1111/j.1751-7915.2010.00226.x. Epub 2011 Jul 1.

Abstract

Natural products derived from the secondary metabolism of microbes constitute a cornerstone of modern medicine. Engineering bugs to produce these products in high quantities is a major challenge for biotechnology, which has usually been tackled by either one of two strategies: iterative random mutagenesis or rational design. Recently, we analyzed the transcriptome of a Streptomyces clavuligerus strain optimized for production of the β-lactamase inhibitor clavulanic acid by multiple rounds of mutagenesis and selection, and discovered that the observed changes matched surprisingly well with simple changes that have been introduced into these strains by rational engineering. Here, we discuss how in the new field of synthetic biology, random mutagenesis and rational engineering can be implemented complementarily in ways which may enable one to go beyond the status quo that has now been reached by each method independently.

摘要

源自微生物次级代谢的天然产物构成了现代医学的基石。通过工程改造使微生物大量生产这些产物是生物技术面临的一项重大挑战,通常采用两种策略之一来解决:迭代随机诱变或理性设计。最近,我们分析了一株经过多轮诱变和筛选优化以生产β-内酰胺酶抑制剂克拉维酸的棒状链霉菌菌株的转录组,发现观察到的变化与通过理性工程引入这些菌株的简单变化惊人地吻合。在此,我们讨论在合成生物学的新领域中,随机诱变和理性工程如何能够以互补的方式实施,从而有可能超越目前每种方法独立所能达到的现状。

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