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一种来自海洋宏基因组文库的具有耐盐能力的新型酯酶。

A novel esterase from a marine metagenomic library exhibiting salt tolerance ability.

作者信息

Fang Zemin, Li Jingjing, Wang Quan, Fang Wei, Peng Hui, Zhang Xuecheng, Xiao Yazhong

机构信息

School of Life Sciences, Anhui University, Hefei, Anhui 230601, China, Anhui Provincial Engineering Technology Research Center of Microorganisms and Biocatalysis, Hefei, Anhui 230601, China.

出版信息

J Microbiol Biotechnol. 2014 Jun 28;24(6):771-80. doi: 10.4014/jmb.1311.11071.

Abstract

A putative lipolytic enzyme gene, named as est9x, was obtained from a marine microbial metagenome of the South China Sea. Sequence analysis showed that Est9X shares lower than 27% sequence identities with the characterized lipolytic enzymes, but possesses a catalytic triad highly conserved in lipolytic enzymes of the α/β hydrolase superfamily. By phylogenetic tree construction, Est9X was grouped into a new lipase/esterase family. To understand Est9X protein in depth, it was recombinantly expressed, purified, and biochemically characterized. Within potential hydrolytic activities, only lipase/esterase activity was detected for Est9X, confirming its identity as a lipolytic enzyme. When using p-nitrophenol esters with varying lengths of fatty acid as substrates, Est9X exhibited the highest activity to the C2 substrate, indicating it is an esterase. The optimal activity of Est9X occurred at a temperature of 65°C, and Est9X was pretty stable below the optimum temperature. Distinguished from other salttolerant esterases, Est9X's activity was tolerant to and even promoted by as high as 4 M NaCl. Our results imply that Est9X is a unique esterase and could be a potential candidate for industrial application under extreme conditions.

摘要

从南海海洋微生物宏基因组中获得了一个假定的脂解酶基因,命名为est9x。序列分析表明,Est9X与已鉴定的脂解酶的序列同一性低于27%,但具有在α/β水解酶超家族的脂解酶中高度保守的催化三联体。通过构建系统发育树,Est9X被归入一个新的脂肪酶/酯酶家族。为了深入了解Est9X蛋白,对其进行了重组表达、纯化和生化特性分析。在潜在的水解活性中,仅检测到Est9X的脂肪酶/酯酶活性,证实了其作为脂解酶的身份。当使用具有不同脂肪酸长度的对硝基苯酚酯作为底物时,Est9X对C2底物表现出最高活性,表明它是一种酯酶。Est9X的最佳活性出现在65°C,并且在最适温度以下Est9X相当稳定。与其他耐盐酯酶不同,Est9X的活性对高达4 M的NaCl具有耐受性,甚至会被其促进。我们的结果表明,Est9X是一种独特的酯酶,可能是极端条件下工业应用的潜在候选者。

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