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Discovery and Characterization of a Thermostable Esterase from an Oil Reservoir Metagenome

机译:从油藏元基因组中发现和鉴定热稳定酯酶

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With the aim of identifying novel thermostable esterases, comprehensive sequence databases and cloned fosmid libraries of metagenomes derived from an offshore oil reservoir on the Norwegian Continental Shelf were screened for enzyme candidates using both sequence-and function-based screening. From several candidates identified in both approaches, one enzyme discovered by the functional approach was verified as a novel esterase and subjected to a deeper characterization. The enzyme was successfully over-produced in Escherichia coli and was shown to be thermostable up to 90°C, with the highest esterase activity on short-chain ester substrates and with tolerance to solvents and metal ions. The fact that the thermostable enzyme was solely found by functional screening of the oil reservoir metagenomes illustrates the importance of this approach as a complement to purely sequence-based screening, in which the enzyme candidate was not detected. In addition, this example indicates the large potential of deep-sub-surface oil reservoir metagenomes as a source of novel, thermostable enzymes of potential relevance for industrial applications.
机译:为了鉴定新型的热稳定酯酶,使用基于序列和基于功能的筛选方法,对来自挪威大陆架海上油藏的元基因组的综合序列数据库和克隆的fosmid文库进行了筛选。从两种方法中鉴定出的几种候选物中,通过功能性方法发现的一种酶被验证为一种新型酯酶,并进行了更深入的表征。该酶在大肠杆菌中成功过量生产,并且显示出在高达90°C的温度下具有热稳定性,在短链酯底物上具有最高的酯酶活性,并且对溶剂和金属离子具有耐受性。仅通过油藏元基因组的功能筛选发现了热稳定酶的事实,说明了这种方法作为对纯粹基于序列的筛选(不检测到候选酶)的补充的重要性。另外,该实施例表明深层地下油藏元基因组作为工业用途具有潜在相关性的新型,热稳定酶的巨大潜力。

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