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Directed evolution of enzymes

机译:酶的定向进化

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摘要

There are near-to-infinite combinations of possibilities for evolution to happen within nature, making it yet impossible to predict how it occurs. However, science is now able to understand the mechanisms underpinning the evolution of biological systems and can use this knowledge to experimentally mimic nature. The fundamentals of evolution have been used in vitro to improve enzymes as suitable biocatalysts for applications in a process called 'Directed Evolution of Enzymes' (DEE). It replicates nature's evolutionary steps of introducing genetic variability into enzymes, selecting the fittest variants and transmitting the genetic information for the next generation. DEE has tailored biocatalysts for applications, expanding the repertoire of enzymatic activities, besides providing experimental evidences to support mechanistic hypotheses of molecular evolution and deepen our understanding about nature. In this mini review, I discuss the basic concepts of DEE, the most used methodologies and current technical advancements, providing examples of applications and perspectives.
机译:在自然界内发生进化的可能性几乎是无限的组合,因此无法预测其发生的方式。然而,科学现在能够理解生物系统演化的基础的机制,并可以利用这些知识来模仿。进化的基础已在体外用于改善酶作为在称为“酶的定向进化”过程中应用的合适的生物催化剂(DEE)。它复制了自然的进化步骤,将遗传变异性引入酶,选择最合适的变体并为下一代传输遗传信息。 Dee为应用定制了生物催化剂,扩大了酶促活性的曲目,除了提供实验证据以支持分子进化的机理假设并加深我们对自然的理解。在这篇微型评论中,我讨论了DEE的基本概念,最常用的方法和当前的技术进步,提供了应用程序和观点的示例。

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