清脆的
不对称
循环(图论)
利用
计算生物学
遗传学
生物
物理
计算机科学
基因
数学
组合数学
粒子物理学
计算机安全
作者
Joshua C. Cofsky,Deepti Karandur,Carolyn J. Huang,Isaac P. Witte,John Kuriyan,Jennifer A. Doudna
出处
期刊:eLife
[eLife Sciences Publications Ltd]
日期:2020-06-08
卷期号:9
被引量:97
摘要
Type V CRISPR-Cas interference proteins use a single RuvC active site to make RNA-guided breaks in double-stranded DNA substrates, an activity essential for both bacterial immunity and genome editing. The best-studied of these enzymes, Cas12a, initiates DNA cutting by forming a 20-nucleotide R-loop in which the guide RNA displaces one strand of a double-helical DNA substrate, positioning the DNase active site for first-strand cleavage. However, crystal structures and biochemical data have not explained how the second strand is cut to complete the double-strand break. Here, we detect intrinsic instability in DNA flanking the RNA-3′ side of R-loops, which Cas12a can exploit to expose second-strand DNA for cutting. Interestingly, DNA flanking the RNA-5′ side of R-loops is not intrinsically unstable. This asymmetry in R-loop structure may explain the uniformity of guide RNA architecture and the single-active-site cleavage mechanism that are fundamental features of all type V CRISPR-Cas systems.
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