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Chitinase: diversity limitations and trends in engineering for suitable applications

机译:几丁质酶:适用于各种应用的工程学的多样性局限性和趋势

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摘要

Chitinases catalyze the degradation of chitin, a ubiquitous polymer generated from the cell walls of fungi, shells of crustaceans, and cuticles of insects. They are gaining increasing attention in medicine, agriculture, food and drug industries, and environmental management. Their roles in the degradation of chitin for the production of industrially useful products and in the control of fungal pathogens and insect pests render them attractive for such purposes. However, chitinases have diverse sources, characteristics, and mechanisms of action that seem to restrain optimization procedures and render standardization techniques for enhanced practical applications complex. Hence, results of laboratory trials are not usually consistent with real-life applications. With the growing field of protein engineering, these complexities can be overcome by modifying or redesigning chitinases to enhance specific features required for specific applications. In this review, the variations in features and mechanisms of chitinases that limit their exploitation in biotechnological applications are compiled. Recent attempts to engineer chitinases for improved efficiency are also highlighted.
机译:几丁质酶催化几丁质的降解,几丁质是真菌细胞壁,甲壳类动物壳和昆虫表皮产生的一种普遍存在的聚合物。他们在医药,农业,食品和药品行业以及环境管理方面越来越受到关注。它们在甲壳素降解以生产工业上有用的产品以及控制真菌病原体和害虫中的作用使它们对于此类目的具有吸引力。然而,几丁质酶具有多种来源,特征和作用机理,似乎限制了优化程序并使标准化技术用于增强的实际应用变得复杂。因此,实验室试验的结果通常与现实生活中的应用不一致。随着蛋白质工程领域的发展,可以通过修饰或重新设计几丁质酶以增强特定应用所需的特定功能来克服这些复杂性。本文综述了几丁质酶特性和机制的变异,这些变异限制了它们在生物技术应用中的利用。还强调了最近工程改造几丁质酶以提高效率的尝试。

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