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在产甲烷微生物群落的代谢稳态下,应用微生物代谢理论诱导靶向酶活性。

Applying theories of microbial metabolism for induction of targeted enzyme activity in a methanogenic microbial community at a metabolic steady state.

机构信息

Molecular Biotechnology, Department of Physics, Chemistry and Biology, Linköping University, 581 83, Linköping, Sweden.

InZymes Biotech AB, Gjuterigatan 1B, 582 73, Linköping, Sweden.

出版信息

Appl Microbiol Biotechnol. 2016 Sep;100(18):7989-8002. doi: 10.1007/s00253-016-7547-z. Epub 2016 Apr 26.

Abstract

Novel enzymes that are stable in diverse conditions are intensively sought because they offer major potential advantages in industrial biotechnology, and microorganisms in extreme environments are key sources of such enzymes. However, most potentially valuable enzymes are currently inaccessible due to the pure culturing problem of microorganisms. Novel metagenomic and metaproteomic techniques that circumvent the need for pure cultures have theoretically provided possibilities to identify all genes and all proteins in microbial communities, but these techniques have not been widely used to directly identify specific enzymes because they generate vast amounts of extraneous data.In a first step towards developing a metaproteomic approach to pinpoint targeted extracellular hydrolytic enzymes of choice in microbial communities, we have generated and analyzed the necessary conditions for such an approach by the use of a methanogenic microbial community maintained on a chemically defined medium. The results show that a metabolic steady state of the microbial community could be reached, at which the expression of the targeted hydrolytic enzymes were suppressed, and that upon enzyme induction a distinct increase in the targeted enzyme expression was obtained. Furthermore, no cross talk in expression was detected between the two focal types of enzyme activities under their respective inductive conditions. Thus, the described approach should be useful to generate ideal samples, collected before and after selective induction, in controlled microbial communities to clearly discriminate between constituently expressed proteins and extracellular hydrolytic enzymes that are specifically induced, thereby reducing the analysis to only those proteins that are distinctively up-regulated.

摘要

由于新型酶在不同条件下稳定,因此被广泛应用于工业生物技术中,具有很大的潜在优势,而极端环境中的微生物则是这些酶的主要来源。然而,由于微生物的纯培养问题,大多数有潜在价值的酶目前还无法获得。新型宏基因组学和宏蛋白质组学技术绕过了纯培养的需要,从理论上为鉴定微生物群落中的所有基因和所有蛋白质提供了可能性,但这些技术尚未广泛用于直接鉴定特定的酶,因为它们会产生大量的无关数据。为了开发一种宏蛋白质组学方法来精确鉴定微生物群落中目标细胞外水解酶,我们首先使用一种在化学定义培养基上维持的产甲烷微生物群落,生成并分析了这种方法的必要条件。结果表明,可以达到微生物群落的代谢稳态,此时目标水解酶的表达受到抑制,并且在酶诱导后,目标酶的表达明显增加。此外,在各自的诱导条件下,两种焦点酶活性之间没有检测到表达的交叉对话。因此,所描述的方法应该有助于在受控微生物群落中生成理想的样本,这些样本在选择性诱导前后收集,以便在组成型表达的蛋白质和特异性诱导的细胞外水解酶之间进行明确区分,从而将分析减少到那些明显上调的蛋白质。

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