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Anti-CRISPRs: Protein Inhibitors of CRISPR-Cas Systems

机译:防克隆:CRISPR-CAS系统的蛋白质抑制剂

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摘要

Clustered regularly interspaced short palindromic repeats (CRISPR) together with their accompanying cas (CRISPR-associated) genes are found frequently in bacteria and archaea, serving to defend against invading foreign DNA, such as viral genomes. CRISPR-Cas systems provide a uniquely powerful defense because they can adapt to newly encountered genomes. The adaptive ability of these systems has been exploited, leading to their development as highly effective tools for genome editing. The widespread use of CRISPR-Cas systems has driven a need for methods to control their activity. This review focuses on anti-CRISPRs (Acrs), proteins produced by viruses and other mobile genetic elements that can potently inhibit CRISPR-Cas systems. Discovered in 2013, there are now 54 distinct families of these proteins described, and the functional mechanisms of more than a dozen have been characterized in molecular detail. The investigation of Acrs is leading to a variety of practical applications and is providing exciting new insight into the biology of CRISPR-Cas systems.
机译:聚集在细菌和古痤疮中经常与其伴随的CAS(CRISPR相关)基因定期间隙的短文重复(CRISPR)一起发现,用于防御侵袭异物DNA,例如病毒基因组。 CRISPR-CAS系统提供独特的强大防御,因为它们可以适应新遇到的基因组。这些系统的自适应能力已被利用,导致其开发作为基因组编辑的高效工具。 CRISPR-CAS系统的广泛使用已经需要控制其活动的方法。本综述重点介绍抗克里普尔(ACRS),病毒产生的蛋白质和其他移动遗传元件,可以效果抑制CRISPR-CAS系统。已经在2013年发现,现在已经描述了这些蛋白质的54个不同的家庭,并且在分子细节中表征了十多个以上的功能机制。 ACRS的调查导致各种实际应用,并为CRISPR-CAS系统的生物学提供了令人兴奋的新洞察力。

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