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Function and Regulation of Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR) / CRISPR Associated (Cas) Systems

机译:簇状规则间隔的短回文重复序列(CRISPR)/ CRISPR相关的(Cas)系统的功能和调控

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摘要

Phages are the most abundant biological entities on earth and pose a constant challenge to their bacterial hosts. Thus, bacteria have evolved numerous ‘innate’ mechanisms of defense against phage, such as abortive infection or restriction/modification systems. In contrast, the >clustered >regularly >interspaced >short >palindromic >repeats (CRISPR) systems provide acquired, yet heritable, sequence-specific ‘adaptive’ immunity against phage and other horizontally-acquired elements, such as plasmids. Resistance is acquired following viral infection or plasmid uptake when a short sequence of the foreign genome is added to the CRISPR array. CRISPRs are then transcribed and processed, generally by >CRISPR >associated (Cas) proteins, into short interfering RNAs (crRNAs), which form part of a ribonucleoprotein complex. This complex guides the crRNA to the complementary invading nucleic acid and targets this for degradation. Recently, there have been rapid advances in our understanding of CRISPR/Cas systems. In this review, we will present the current model(s) of the molecular events involved in both the acquisition of immunity and interference stages and will also address recent progress in our knowledge of the regulation of CRISPR/Cas systems.
机译:噬菌体是地球上最丰富的生物实体,对其细菌宿主构成了不断的挑战。因此,细菌已经进化出许多针对噬菌体的“先天”防御机制,例如流产感染或限制/修饰系统。相比之下,> c 带光泽的> r 像> i 等距> s hort > p alindromic < strong> r 肽(CRISPR)系统可提供针对噬菌体和其他水平捕获元件(如质粒)的获得性,但可遗传的,序列特异性的“自适应”免疫力。当将短序列的外源基因组添加到CRISPR阵列中时,病毒感染或质粒摄取后可获得抗性。然后通常通过> C RISPR > 相关(Cas)蛋白将CRISPR转录并加工为短干扰RNA(crRNA),这些RNA构成核糖核蛋白复合物的一部分。该复合物将crRNA引导至互补的入侵核酸,并将其靶向降解。最近,我们对CRISPR / Cas系统的理解有了快速的进步。在这篇综述中,我们将介绍涉及免疫和干扰阶段获取的分子事件的当前模型,还将探讨我们对CRISPR / Cas系统调控的最新进展。

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