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Computational protein design promises to revolutionize protein engineering

机译:计算蛋白质设计有望彻底改变蛋白质工程

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摘要

Natural evolution has produced an astounding array of proteins that perform the physical and chemical functions required for life on Earth. Although proteins can be reengineered to provide altered or novel functions, the utility of this approach is limited by the difficulty of identifying protein sequences that display the desired properties. Recently, advances in the field of computational protein design (CPD) have shown that molecular simulation can help to predict sequences with new and improved functions. In the past few years, CPD has been used to design protein variants with optimized specificity of binding to DNA, small molecules, peptides, and other proteins. Initial successes in enzyme design highlight CPD's unique ability to design function de novo. The use of CPD for the engineering of potential therapeutic agents has demonstrated its strength in real-life applications.
机译:自然进化产生了一系列惊人的蛋白质,它们执行着地球生命所需的物理和化学功能。尽管可以对蛋白质进行改造,以提供改变的功能或新颖的功能,但是该方法的实用性受到了鉴定展示所需特性的蛋白质序列的困难的限制。最近,计算蛋白质设计(CPD)领域的进展表明,分子模拟可以帮助预测具有新功能和改进功能的序列。在过去的几年中,CPD已用于设计具有与DNA,小分子,肽和其他蛋白质结合的优化特异性的蛋白质变异体。酶设计的初步成功凸显了CPD从头设计功能的独特能力。 CPD用于潜在治疗剂的工程设计已证明其在现实生活中的优势。

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