Kim Hee Jung, Jeong Yu Seok, Jung Won Kyeong, Kim Sung Kyum, Lee Hyun Woo, Kahng Hyung-Yeel, Kim Jungho, Kim Hoon
Department of Pharmacy, Sunchon National University, Suncheon, 540-950, Republic of Korea.
Mol Biotechnol. 2015 Sep;57(9):781-92. doi: 10.1007/s12033-015-9871-4.
Two genes encoding lipolytic enzymes were isolated from a metagenomic library constructed from oil-polluted mud flats. An esterase gene, est3K, encoded a protein of 299 amino acids (ca. 32,364 Da). Est3K was a family IV esterase with typical motifs, HGGG, and HGF. Although est3K showed high identity to many genes with no information on their enzymatic properties, Est3K showed the highest identity (36 %) to SBLip5.1 from forest soil metagenome when compared to the enzymes with reported properties. A lipase gene, lip3K, encoded a protein of 616 amino acids (ca. 64,408 Da). Lip3K belonged to family I.3 lipase with a C-terminal secretion signal and showed the highest identity (93 %) to the lipase of Pseudomonas sp. MIS38. The presence of several newly identified conserved motifs in Est3K and Lip3K are suggested. Both Est3K and Lip3K exerted their maximal activity at pH 9.0 and 50 °C. The activity of Lip3K was significantly increased by the presence of 30 % methanol. The ability of the enzymes to retain activities in the presence of methanol and the substrates may offer a merit to the biotechnological applications of the enzymes such as transesterification. The activity and the thermostability of Lip3K were increased by Ca(2+). Est3K and Lip3K preferred p-nitrophenyl butyrate (C4) and octanoate (C8), respectively, as the substrate and acted independently on the substrates with no synergistic effect.
从石油污染滩涂构建的宏基因组文库中分离出两个编码脂解酶的基因。一个酯酶基因est3K编码一个含299个氨基酸(约32364 Da)的蛋白质。Est3K是具有典型基序HGGG和HGF的IV型酯酶。尽管est3K与许多酶特性未知的基因具有高度同源性,但与已报道特性的酶相比,Est3K与森林土壤宏基因组中的SBLip5.1同源性最高(36%)。一个脂肪酶基因lip3K编码一个含616个氨基酸(约64408 Da)的蛋白质。Lip3K属于I.3型脂肪酶,具有C端分泌信号,与假单胞菌属MIS38的脂肪酶同源性最高(93%)。研究表明Est3K和Lip3K中存在几个新鉴定的保守基序。Est3K和Lip3K在pH 9.0和50℃时均表现出最大活性。30%甲醇的存在显著提高了Lip3K的活性。这些酶在甲醇和底物存在下保持活性的能力可能为它们在诸如酯交换等生物技术应用中提供优势。Ca(2+)提高了Lip3K的活性和热稳定性。Est3K和Lip3K分别优选对硝基苯基丁酸酯(C4)和辛酸酯(C8)作为底物,且对底物独立起作用,无协同效应。