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Functional Expression and Characterization of a Truncated Candida antarctica Lipase B in Yeast

机译:酵母中截短的南极假丝酵母脂肪酶B的功能表达和表征

摘要

Candida antarctica lipase B is an enzyme capable of hydrolyzing ester bonds in a lipid-water interface with potential to become a useful biocatalyst for production of biodiesel fuel. Enzymatically catalyzing the transesterification of triacylglycerides to produce fatty acid alkyl esters (biodiesel) is an environmentally cleaner alternative to the current process which utilizes chemical reagents as catalysts. Optimization and development of strains to express highly active, stable, large quantities of these biocatalysts is essential for inexpensive production of biodiesel. Additionally, lipase enzymes can be immobilized onto a resin, eliminating the need to recover the catalyst from the product and allowing multiple cycle use. An integrated biorefinery combining starch ethanol and cellulosic ethanol production in one location may become cost-effective if biodiesel is produced as a co-product in a single-step column transesterification of ethanol and corn oil catalyzed by these resin-bound, low-cost lipases expressed in a recombinant yeast strain capable of cellulosic ethanol production.
机译:南极假丝酵母脂肪酶B是一种能够水解脂质-水界面中的酯键的酶,有潜力成为生产生物柴油燃料的有用生物催化剂。酶促催化三酰基甘油酯的酯交换反应以生产脂肪酸烷基酯(生物柴油)是对使用化学试剂作为催化剂的当前方法的一种较环保的替代方法。优化和开发菌株以表达高活性,稳定,大量的这些生物催化剂对于廉价生产生物柴油至关重要。此外,脂肪酶可以固定在树脂上,从而无需从产品中回收催化剂,并且可以多次使用。如果在这些树脂结合的低成本脂肪酶的催化下,乙醇和玉米油的一步一步酯交换反应中以副产物形式生产生物柴油,那么在一个地点将淀粉乙醇和纤维素乙醇生产结合在一起的一体化生物精炼厂可能变得具有成本效益。在能够产生纤维素乙醇的重组酵母菌株中表达。

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    Robinson Samantha;

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  • 年度 2015
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