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A wide host-range metagenomic library from a waste water treatment plant yields a novel alcohol/aldehyde dehydrogenase

机译:来自废水处理厂的广泛宿主宏基因组学文库可产生新型醇/醛脱氢酶

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摘要

Using DNA obtained from the metagenome of an anaerobic digestor in a waste water treatment plant, we constructed a gene library cloned in the wide host-range cosmid pLAFR3. One cosmid enabled Rhizobium leguminosarum to grow on ethanol as sole carbon and energy source, this being due to the presence of a gene, termed adhE(Meta). The AdhE(Meta) protein most closely resembles the AdhE alcohol dehydrogenase of Clostridium acetobutylicum, where it catalyses the formation of ethanol and butanol in a two-step reductive process. However, cloned adhE(Meta) did not confer ethanol utilization ability to Escherichia coli or to Pseudomonas aeruginosa, even though it was transcribed in both these hosts. Further, cell-free extracts of E. coli and R. leguminosarum containing cloned adhE Meta had butanol and ethanol dehydrogenase activities when assayed in vitro. In contrast to the well-studied AdhE proteins of C. acetobutylicum and E. coli, the enzyme specified by adhE(Meta) is not inactivated by oxygen and it enables alcohol to be catabolized. Cloned adhE Meta did, however, confer one phenotype to E. coli. AdhE(-) mutants of E. coli fail to ferment glucose and introduction of adhE Meta restored the growth of such mutants when grown under fermentative conditions. These observations show that the use of wide host-range vectors enhances the efficacy with which metagenomic libraries can be screened for genes that confer novel functions.
机译:使用从废水处理厂中厌氧消化器的基因组中获得的DNA,我们构建了一个在宽宿主范围粘粒pLAFR3中克隆的基因库。一种粘粒使豆科根瘤菌能够在乙醇上生长,作为唯一的碳和能源,这是由于存在称为adhE(Meta)的基因。 AdhE(Meta)蛋白与丙酮丁醇梭菌的AdhE醇脱氢酶最相似,它在两步还原过程中催化乙醇和丁醇的形成。但是,克隆的adhE(Meta)不会赋予大肠杆菌或铜绿假单胞菌乙醇利用能力,即使它在这两个宿主中均转录也是如此。此外,当体外测定时,含有克隆的adhE Meta的大肠杆菌和豆科菌的无细胞提取物具有丁醇和乙醇脱氢酶活性。与研究广泛的丙酮丁醇梭菌和大肠杆菌的AdhE蛋白相反,由adhE(Meta)指定的酶不会被氧气灭活,并且它可使酒精分解代谢。然而,克隆的adhE Meta确实赋予了大肠杆菌一种表型。大肠杆菌的AdhE(-)突变体无法发酵葡萄糖,而adhE Meta的引入在发酵条件下生长时可恢复此类突变体的生长。这些观察结果表明,使用广泛的宿主范围的载体提高了筛选宏基因组文库中赋予新功能的基因的功效。

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