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Directed evolution of novel polymerases

机译:新型聚合酶的定向进化

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DNA and RNA polymerases evolved to function in specific environments with specific substrates to propagate genetic information in all living organisms. The commercial availability of these polymerases has revolutionized the biotechnology industry, but for many application; native polymerases are limited by their stability or substrate recognition. Thus, there is great interest in the directed evolution of DNA and RNA polymerases to generate enzymes with novel, desired properties, such as thermal stability, resistance to inhibitors, and altered substrate specificity. Several screening and selection approaches have been developed, both in vivo and in vitro, and have been used to evolve polymerases with a variety of important activities. Both the techniques and the evolved polymerases are reviewed here, along with a comparison of the in vivo and in vitro approaches. (C) 2005 Elsevier B.V. All rights reserved.
机译:DNA和RNA聚合酶进化为在具有特定底物的特定环境中发挥作用,以在所有活生物体中传播遗传信息。这些聚合酶的商业可用性已经彻底改变了生物技术产业,但对于许多应用而言,却是一个巨大的挑战。天然聚合酶受其稳定性或底物识别的限制。因此,人们对DNA和RNA聚合酶的定向进化产生极大兴趣,以产生具有新颖的所需特性(如热稳定性,对抑制剂的抗性和改变的底物特异性)的酶。已经开发了体内和体外的几种筛选和选择方法,并且已经用于发展具有多种重要活性的聚合酶。本文对技术和进化后的聚合酶进行了综述,并对体内和体外方法进行了比较。 (C)2005 Elsevier B.V.保留所有权利。

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