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首页> 外文期刊>Progress in Lipid Research: An International Journal >Molecular and functional diversity of yeast and fungal lipases: Their role in biotechnology and cellular physiology
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Molecular and functional diversity of yeast and fungal lipases: Their role in biotechnology and cellular physiology

机译:酵母和真菌脂肪酶的分子与功能多样性:它们在生物技术和细胞生理中的作用

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摘要

Lipase catalyzes hydrolysis of fats in lipid water interphase and perform variety of biotransformation reactions under micro aqueous conditions. The major sources include microbial lipases; among these yeast and fungal lipases are of special interest because they can carry out various stereoselective reactions. These lipases are highly diverse and are categorized into three classes on the basis of oxyanion hole: GX, GGGX and Y. The detailed phylogenetic analysis showed that GX family is more diverse than GGGX and Y family. Sequence and structural comparisons revealed that lipases are conserved only in the signature sequence region. Their characteristic structural determinants viz, lid, binding pocket and oxyanion hole are hotspots for mutagenesis. Few examples are cited in this review to highlight the multidisciplinary approaches for designing novel enzyme variants with improved thermo stability and substrate specificity. In addition, we present a brief account on biotechnological applications of lipases. Lipases have also gained attention as virulence factors, therefore, we surveyed the role of lipases in yeast physiology related to colonization, adhesion, biofilm formation and pathogenesis. The new genomic era has opened numerous possibilities to genetically manipulate lipases for food, fuel and pharmaceuticals. (C) 2014 Elsevier Ltd. All rights reserved.
机译:脂肪酶催化脂质水中脂肪的水解并在微水条件下进行各种生物转化反应。主要来源包括微生物脂肪酶;在这些酵母和真菌脂肪酶中具有特殊兴趣,因为它们可以进行各种立体选择反应。这些脂肪酶非常多样化,并在氧气孔的基础上分为三类:Gx,Gggx和Y.详细的系统发育分析表明,GX系列比GGGX和Y家族更多样化。序列和结构比较显示,脂肪酶仅在签名序列区域中被保守。它们的特征结构决定簇VIZ,盖子,粘合口袋和氧气孔是诱变的热点。在该综述中引用了几个例子,以突出多学科方法来设计具有改善的热稳定性和底物特异性的新型酶变体。此外,我们展示了关于脂肪酶的生物技术应用的简要叙述。脂肪酶也被关注随着毒力因子,因此,我们调查了脂肪酶在与殖民化,粘附,生物膜形成和发病机制相关的酵母生理学中的作用。新的基因组时代已经开辟了众多可能性的遗传操纵食品,燃料和药物的脂肪酶。 (c)2014年elestvier有限公司保留所有权利。

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