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CRISPR-Cas: biology, mechanisms and relevance

机译:CRISPR-Cas:生物学,机制和相关性

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摘要

Prokaryotes have evolved several defence mechanisms to protect themselves from viral predators. Clustered regularly interspaced short palindromic repeats (CRISPR) and their associated proteins (Cas) display a prokaryotic adaptive immune system that memorizes previous infections by integrating short sequences of invading genomes-termed spacers-into the CRISPR locus. The spacers interspaced with repeats are expressed as small guide CRISPR RNAs (crRNAs) that are employed by Cas proteins to target invaders sequence-specifically upon a reoccurring infection. The ability of the minimal CRISPR-Cas9 system to target DNA sequences using programmable RNAs has opened new avenues in genome editing in a broad range of cells and organisms with high potential in therapeutical applications. While numerous scientific studies have shed light on the biochemical processes behind CRISPR-Cas systems, several aspects of the immunity steps, however, still lack sufficient understanding. This review summarizes major discoveries in the CRISPR-Cas field, discusses the role of CRISPR-Cas in prokaryotic immunity and other physiological properties, and describes applications of the system as a DNA editing technology and antimicrobial agent.
机译:原核生物已经进化出几种防御机制来保护自己免受病毒掠食者的侵害。簇状规则间隔的短回文重复序列(CRISPR)及其相关蛋白(Cas)显示出原核适应性免疫系统,该系统通过将侵入基因组的短序列(称为间隔子)整合到CRISPR基因座中来记忆先前的感染。与重复序列间隔的间隔子表达为小向导CRISPR RNA(crRNA),Cas蛋白使用它来在感染再次发生时以序列特异性地靶向入侵者。最小的CRISPR-Cas9系统使用可编程RNA靶向DNA序列的能力为广泛的细胞和有机体在基因组编辑中打开了新的途径,这些细胞和生物在治疗方面具有很高的潜力。尽管大量科学研究揭示了CRISPR-Cas系统背后的生化过程,但免疫步骤的几个方面仍然缺乏足够的了解。这篇综述总结了CRISPR-Cas领域的主要发现,讨论了CRISPR-Cas在原核免疫和其他生理特性中的作用,并描述了该系统作为DNA编辑技术和抗菌剂的应用。

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