首页> 外文期刊>Journal of Basic Microbiology: An International Journal on Morphology, Physiology, Genetics, and Ecology of Microorganisms >Purification and characterization of halophilic lipase of Chromohalobacter Chromohalobacter sp. from ancient salt well
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Purification and characterization of halophilic lipase of Chromohalobacter Chromohalobacter sp. from ancient salt well

机译:色菌色杆菌嗜盐杆菌SP的嗜热脂肪酶的纯化与表征。 从古老的盐很好

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A halophilic lipase (LipS2) was produced by Chromohalobacter canadensis strain which was isolated from ancient salt well of Zigong, China. LipS2 was purified to homogeneity and showed a single band with molecular mass of 58?kDa by SDS–PAGE. LipS2 preferred middle‐to‐long acyl chain esters with C14 triglycerides as optimum substrate. It was noteworthy that LipS2 displayed efficient hydrolysis activity to some vegetable oils which were composed of polyunsaturated fatty acid. LipS2 showed high activity in range of 2.5–3.5?M NaCl, no activity without salt. Optimum temperature and pH were 55?°C and pH 8.5, respectively. Notably, the thermostability and pH stability of LipS2, varying with salt concentration, reached optimum in the presence of 3.0?M NaCl. LipS2 was stimulated by Ca 2+ and Mg 2+ , inhibited by Zn 2+ , Cu 2+ , Mn 2+ , Fe 2+ , and Hg 2+ . Moreover, LipS2 displayed significant tolerance to organic solvents including methanol, ethanol, ethyl acetate and acetone, especially, LipS2 activity was enhanced markedly by the hexane and benzene. Non‐ionic surfactants increased LipS2 activity, while ionic surfactants decreased activity. This was the first report on halophilic lipase of Chromohalobacter from ancient salt well. The results suggested that LipS2 may have considerable potential for biotechnological applications.
机译:嗜盐脂肪酶(嘴唇2)是通过Chromohalobacter Canadensis菌株产生的,该菌株与中国之古古盐井分离。将嘴唇2纯化为均匀性,并通过SDS-PAGE显示分子量为58Ωkda的单个带。 LIPS2优选的中间 - 长酰基链酯,其具有C14甘油三酯作为最佳基质。值得注意的是,嘴唇2显示出一种由多不饱和脂肪酸组成的植物油的有效水解活性。嘴唇2在2.5-3.5Ωmn1的范围内显示出高活动,没有盐的无活性。最佳温度和pH分别为55Ω·℃和pH8.5。值得注意的是,唇缘2的热稳定性和pH稳定性,随盐浓度而变化,在3.0μl的情况下达到最佳。通过Ca 2+和Mg 2+刺激嘴唇2,抑制Zn 2+,Cu 2+,Mn 2+,Fe 2+和Hg 2+。此外,唇缘2显示出与甲醇,乙醇,乙酸乙酯和丙酮的有机溶剂的显着耐受性,特别是,己烷和苯的显着增强唇部活性。非离子表面活性剂增加唇缘活性,而离子表面活性剂的活性降低。这是来自古代盐井的色度嗜盐脂肪酶的第一份报告。结果表明,嘴唇2可能对生物技术应用具有相当大的潜力。

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