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Biotechnological applications of archaeal enzymes from extreme environments

机译:极端环境中古细菌的生物技术应用

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摘要

To date, many industrial processes are performed using chemical compounds, which are harmful to nature. An alternative to overcome this problem is biocatalysis, which uses whole cells or enzymes to carry out chemical reactions in an environmentally friendly manner. Enzymes can be used as biocatalyst in food and feed, pharmaceutical, textile, detergent and beverage industries, among others. Since industrial processes require harsh reaction conditions to be performed, these enzymes must possess several characteristics that make them suitable for this purpose. Currently the best option is to use enzymes from extremophilic microorganisms, particularly archaea because of their special characteristics, such as stability to elevated temperatures, extremes of pH, organic solvents, and high ionic strength. Extremozymes, are being used in biotechnological industry and improved through modern technologies, such as protein engineering for best performance. Despite the wide distribution of archaea, exist only few reports about these microorganisms isolated from Antarctica and very little is known about thermophilic or hyperthermophilic archaeal enzymes particularly from Antarctica. This review summarizes current knowledge of archaeal enzymes with biotechnological applications, including two extremozymes from Antarctic archaea with potential industrial use, which are being studied in our laboratory. Both enzymes have been discovered through conventional screening and genome sequencing, respectively.
机译:迄今为止,许多工业过程都是使用对自然有害的化合物进行的。解决该问题的另一种方法是生物催化,它使用整个细胞或酶以对环境友好的方式进行化学反应。酶可用作食品和饲料,制药,纺织,洗涤剂和饮料等行业的生物催化剂。由于工业过程需要进行苛刻的反应条件,因此这些酶必须具有使其适合于此目的的几种特性。目前,最好的选择是使用极端微生物(特别是古细菌)中的酶,因为它们具有特殊的特性,例如对高温的稳定性,pH的极限值,有机溶剂和高离子强度。极端酶已用于生物技术行业,并通过现代技术进行了改进,例如蛋白质工程,以实现最佳性能。尽管古细菌分布广泛,但是关于从南极洲分离出的这些微生物的报道很少,并且关于嗜热或超嗜热古细菌尤其是南极的古细菌的了解很少。这篇综述总结了古生物酶在生物技术中的最新应用知识,其中包括来自南极古细菌的两种极端酶,具有潜在的工业用途,目前正在我们的实验室中进行研究。分别通过常规筛选和基因组测序发现了这两种酶。

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