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Immobilization and Characterization of a New Regioselective and Enantioselective Lipase Obtained from a Metagenomic Library

机译:从元基因组文库获得的新的区域选择性和对映选择性脂肪酶的固定化和表征

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摘要

In previous work, a new lipase and its cognate foldase were identified and isolated from a metagenomic library constructed from soil samples contaminated with fat. This new lipase, called LipG9, is a true lipase that shows specific activities that are comparable to those of well-known industrially-used lipases with high activity against long-chain triglycerides. In the present work, LipG9 was co-expressed and co-immobilized with its foldase, on an inert hydrophobic support (Accurel MP1000). We studied the performance of this immobilized LipG9 (Im-LipG9) in organic media, in order to evaluate its potential for use in biocatalysis. Im-LipG9 showed good stability, maintaining a residual activity of more than 70% at 50°C after incubation in n-heptane (log P 4.0) for 8 h. It was also stable in polar organic solvents such as ethanol (log P -0.23) and acetone (log P -0.31), maintaining more than 80% of its original activity after 8 h incubation at 30°C. The synthesis of ethyl esters was tested with fatty acids of different chain lengths in n-heptane at 30 °C. The best conversions (90% in 3 h) were obtained for medium and long chain saturated fatty acids (C8, C14 and C16), with the maximum specific activity, 29 U per gram of immobilized preparation, being obtained with palmitic acid (C16). Im-LipG9 was sn-1,3-specific. In the transesterification of the alcohol (R,S)-1-phenylethanol with vinyl acetate and the hydrolysis of the analogous ester, (R,S)-1-phenylethyl acetate, Im-LipG9 showed excellent enantioselectivity for the R-isomer of both substrates (E> 200), giving an enantiomeric excess (ee) of higher than 95% for the products at 49% conversion. The results obtained in this work provide the basis for the development of applications of LipG9 in biocatalysis.
机译:在先前的工作中,从由脂肪污染的土壤样品构建的宏基因组库中鉴定并分离出一种新的脂肪酶及其同源折叠酶。这种新的脂肪酶称为LipG9,是一种真正的脂肪酶,其特异性活性与众所周知的工业用脂肪酶相比具有很高的抗长链甘油三酸酯活性。在本工作中,LipG9与它的折叠酶共表达并共固定在惰性疏水性支持物(Accurel MP1000)上。我们研究了这种固定化的LipG9(Im-LipG9)在有机介质中的性能,以评估其在生物催化中的潜力。 Im-LipG9显示出良好的稳定性,在正庚烷(log P 4.0)中孵育8小时后,在50°C时保持70%以上的残留活性。它在极性有机溶剂(例如乙醇(对数P -0.23)和丙酮(对数P -0.31))中也是稳定的,在30°C孵育8小时后,仍保持其原始活性的80%以上。在正庚烷中,于30°C用不同链长的脂肪酸测试乙酯的合成。中链和长链饱和脂肪酸(C8,C14和C16)获得最佳转化率(3小时内达到90%),最大比活度为29 U /克固定化制剂,采用棕榈酸(C16)获得。 Im-LipG9是sn-1,3-特异性的。在醇(R,S)-1-苯基乙醇与乙酸乙烯酯的酯交换反应和类似酯(R,S)-1-苯基乙基乙酸酯的水解过程中,Im-LipG9对两种化合物的R-异构体均显示出优异的对映选择性底物(E> 200),转化率为49%时,产品的对映体过量(ee)高于95%。这项工作获得的结果为开发LipG9在生物催化中的应用提供了基础。

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