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Generation and selection of ribozyme variants with potential application in protein engineering and synthetic biology

机译:核酶变体的产生和选择在蛋白质工程和合成生物学中的潜在应用

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摘要

Over the past two decades, RNA catalysis has become a major topic of research. On the one hand, naturally occurring ribozymes have been extensively investigated concerning their structure and functional mechanisms. On the other hand, the knowledge gained from these studies has been used to engineer ribozyme variants with novel properties. In addition to RNA engineering by means of rational design, powerful techniques for selection of ribozymes from large pools of random sequences were developed and have been widely used for the generation of functional nucleic acids. RNA as catalyst has been accompanied by DNA, and nowadays a large number of ribozymes and deoxyribozymes are available. The field of ribozyme generation and selection has been extensively reviewed. With respect to the field of biotechnology, RNA and DNA catalysts working on peptides or proteins, or which are designed to control protein synthesis, are of utmost importance and interest. Therefore, in this review, we will focus on engineered nucleic acid catalysts for peptide synthesis and modification as well as for intracellular control of gene expression.
机译:在过去的二十年中,RNA催化已成为研究的主要课题。一方面,已经对天然存在的核酶的结构和功能机理进行了广泛的研究。另一方面,从这些研究中获得的知识已被用于设计具有新颖性质的核酶变体。除了通过合理设计进行RNA工程外,还开发了从大量随机序列中选择核酶的强大技术,这些技术已广泛用于产生功能性核酸。 RNA伴随着RNA的催化作用,如今有大量的核酶和脱氧核酶。核酶的产生和选择领域已被广泛审查。关于生物技术领域,对肽或蛋白质起作用或被设计为控制蛋白质合成的RNA和DNA催化剂至关重要。因此,在这篇综述中,我们将重点研究用于肽合成和修饰以及基因表达的细胞内控制的工程核酸催化剂。

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