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Bioengineering of Nitrilases Towards Its Use as Green Catalyst: Applications and Perspectives

机译:硝化酶的生物工程学将其用作绿色催化剂:应用和前景

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摘要

Nitrilases are commercial biocatalysts used for the synthesis of plastics, paints, fibers in the chemical industries, pharmaceutical drugs and herbicides for agricultural uses. Nitrilase hydrolyses the nitriles and dinitriles to their corresponding carboxylic acids and ammonia. They have a broad range of substrate specificities as well as enantio-, regio- and chemo-selective properties which make them useful for biotransformation of nitriles to important compounds because of which they are considered as ‘Green Catalysts’. Nitriles are widespread in nature and synthesized as a consequence of anthropogenic and biological activities. These are also present in certain plant species and are known to cause environmental pollution. Biotransformation using native organisms as catalysts tends to be insufficient since the enzyme of interest has very low amount in the total cellular protein, rate of reaction is slow along with the instability of enzymes. Therefore, to overcome these limitations, bioengineering offers an alternative approach to alter the properties of enzymes to enhance the applicability and stability. The present review highlights the aspects of producing the recombinant microorganisms and overexpressing the enzyme of interest for the enhanced stability at high temperatures, immobilization techniques, extremes of pH, organic solvents and hydrolysing dintriles to chiral compounds which may enhance the possibilities for creating specific enzymes for biotransformation.
机译:腈水解酶是商业生物催化剂,用于合成塑料,涂料,化学工业中的纤维,农业用药物和除草剂。腈水解酶将腈和二腈水解为相应的羧酸和氨。它们具有广泛的底物特异性以及对映体,区域和化学选择性特性,使其可用于将腈类生物转化为重要化合物,因此被认为是“绿色催化剂”。腈是自然界中广泛存在的,是由于人为和生物活动而合成的。这些也存在于某些植物物种中,已知会造成环境污染。使用目的生物体作为催化剂的生物转化趋于不足,因为目的酶在细胞总蛋白中的含量非常低,反应速度以及酶的不稳定性都很慢。因此,为了克服这些局限性,生物工程学提供了一种替代方法来改变酶的性质以增强适用性和稳定性。本综述着重介绍了产生重组微生物和过表达目的酶的方面,以提高高温下的稳定性,固定化技术,pH值的极端值,有机溶剂和将丁二烯水解为手性化合物,这可能会增加创建特定酶的可能性。生物转化。

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