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Thermostable enzymes: sources, production and industrial applications

机译:耐高温酶:来源,生产和工业应用

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摘要

REVIEW: Living organisms encountered in hostile environments that are characterized by extreme temperatures rely on novel molecular mechanisms to enhance the thermal stability of their proteins, nucleic acids, lipids and cell membranes. Proteins isolated from thermophilic organisms usually exhibit higher intrinsic thermal stabilities than their counterparts isolated from mesophilic organisms. Although the molecular basis of protein thermostability is only partially understood, structural studies have suggested that the factors that may contribute to enhance protein thermostability mainly include hydrophobic packing, enhanced secondary structure propensity, helix dipole stabilization, absence of residues sensitive to oxidation or deamination, and increased electrostatic interactions. Thermostable enzymes such as amylases, xylanases and pectinases isolated from thermophilic organisms are potentially of interest in the optimization of industrial processes due to their enhanced stability. In the present review, an attempt is made to delineate the structural factors that increase enzyme thermostability and to document the research results in the production of these enzymes.
机译:综述:在极端温度下存在于敌对环境中的活生物体依靠新颖的分子机制来增强其蛋白质,核酸,脂质和细胞膜的热稳定性。从嗜热生物中分离出的蛋白质通常比从嗜温生物中分离出的蛋白质具有更高的固有热稳定性。尽管仅部分了解蛋白质热稳定性的分子基础,但结构研究表明,可能有助于提高蛋白质热稳定性的因素主要包括疏水性堆积,二级结构倾向性增强,螺旋偶极稳定,不存在对氧化或脱氨基敏感的残基,以及增加静电相互作用。从嗜热生物体中分离出来的热稳定酶,例如淀粉酶,木聚糖酶和果胶酶,由于其增强的稳定性,因此可能在优化工业过程中引起人们的兴趣。在本综述中,试图描述增加酶热稳定性的结构因素,并记录这些酶的生产中的研究结果。

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