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首页> 外文期刊>Current Protocols in Molecular Biology >Overview of Cell-Free Protein Synthesis: Historic Landmarks, Commercial Systems, and Expanding Applications
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Overview of Cell-Free Protein Synthesis: Historic Landmarks, Commercial Systems, and Expanding Applications

机译:无细胞蛋白质合成概述:历史性地标,商业系统和扩展的应用

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摘要

During the early days of molecular biology, cell-free protein synthesis played an essential role in deciphering the genetic code and contributed to our understanding of translation of protein from messenger RNA. Owing to several decades of major and incremental improvements, modern cellfree systems have achieved higher protein synthesis yields at lower production costs. Commercial cell-free systems are now available from a variety of material sources, ranging from "traditional" E. coli, rabbit reticulocyte lysate, and wheat germ extracts, to recent insect and human cell extracts, to defined systems reconstituted from purified recombinant components. Although each cell-free system has certain advantages and disadvantages, the diversity of the cell-free systems allows in vitro synthesis of a wide range of proteins for a variety of downstream applications. In the post-genomic era, cell-free protein synthesis has rapidly become the preferred approach for high-throughput functional and structural studies of proteins and a versatile tool for in vitro protein evolution and synthetic biology. This unit provides a brief history of cell-free protein synthesis and describes key advances in modern cell-free systems, practical differences between widely used commercial cell-free systems, and applications of this important technology.
机译:在分子生物学的早期,无细胞蛋白质合成在破译遗传密码中起着至关重要的作用,并有助于我们理解信使RNA中蛋白质的翻译。由于数十年的重大和增量改进,现代无细胞系统已以较低的生产成本实现了更高的蛋白质合成产量。现在可以从多种材料来源获得商业无细胞系统,这些材料来源从“传统”大肠杆菌,兔网织红细胞裂解物和小麦胚芽提取物,到最近的昆虫和人类细胞提取物,再到从纯化的重组成分重构的确定系统。尽管每个无细胞系统都具有某些优点和缺点,但无细胞系统的多样性允许在体外合成多种蛋白质,以用于各种下游应用。在后基因组时代,无细胞蛋白质合成已迅速成为蛋白质高通量功能和结构研究的首选方法,并成为体外蛋白质进化和合成生物学的多功能工具。该单元提供了无细胞蛋白质合成的简要历史,并描述了现代无细胞系统的关键进展,广泛使用的商业无细胞系统之间的实际差异以及这项重要技术的应用。

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