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Friendly Fire: Biological Functions and Consequences of Chromosomal Targeting by CRISPR-Cas Systems

机译:友好之火:CRISPR-Cas系统的生物学功能和染色体靶向的后果

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摘要

Clustered regularly interspaced short palindromic repeat (CRISPR)-associated (Cas) systems in bacteria and archaea target foreign elements, such as bacteriophages and conjugative plasmids, through the incorporation of short sequences (termed spacers) from the foreign element into the CRISPR array, thereby allowing sequence-specific targeting of the invader. Thus, CRISPR-Cas systems are typically considered a microbial adaptive immune system. While many of these incorporated spacers match targets on bacteriophages and plasmids, a noticeable number are derived from chromosomal DNA. While usually lethal to the self-targeting bacteria, in certain circumstances, these self-targeting spacers can have profound effects in regard to microbial biology, including functions beyond adaptive immunity. In this minireview, we discuss recent studies that focus on the functions and consequences of CRISPR-Cas self-targeting, including reshaping of the host population, group behavior modification, and the potential applications of CRISPR-Cas self-targeting as a tool in microbial biotechnology. Understanding the effects of CRISPR-Cas self-targeting is vital to fully understanding the spectrum of function of these systems.
机译:通过将来自外源元件的短序列(称为间隔子)整合到CRISPR阵列中,在细菌和古细菌中成簇的规则间隔的短回文重复(CRISPR)相关(Cas)系统靶向外源元件,例如噬菌体和结合质粒允许对入侵者进行序列特异性靶向。因此,CRISPR-Cas系统通常被认为是微生物适应性免疫系统。尽管这些掺入的间隔子中有许多与噬菌体和质粒上的靶标相匹配,但是却有相当数量的染色体DNA。尽管通常对自靶向细菌具有致死性,但在某些情况下,这些自靶向间隔物可对微生物生物学产生深远影响,包括超出适应性免疫的功能。在此微型综述中,我们讨论了最新研究,这些研究侧重于CRISPR-Cas自靶向的功能和后果,包括宿主群体的重塑,群体行为修饰以及CRISPR-Cas自靶向作为微生物工具的潜在应用生物技术。了解CRISPR-Cas自靶向的作用对于充分了解这些系统的功能范围至关重要。

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