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CRISPR-Cas监测复合体Cascade形成的定向R环可有效排除脱靶位点。

Directional R-Loop Formation by the CRISPR-Cas Surveillance Complex Cascade Provides Efficient Off-Target Site Rejection.

作者信息

Rutkauskas Marius, Sinkunas Tomas, Songailiene Inga, Tikhomirova Maria S, Siksnys Virginijus, Seidel Ralf

机构信息

Institute for Molecular Cell Biology, Westfälische Wilhelms-Universität Münster, 48149 Münster, Germany.

Institute of Biotechnology, Vilnius University, Graiciuno 8, Vilnius 02241, Lithuania.

出版信息

Cell Rep. 2015 Mar 10;10(9):1534-1543. doi: 10.1016/j.celrep.2015.01.067. Epub 2015 Mar 5.

Abstract

CRISPR-Cas systems provide bacteria and archaea with adaptive immunity against foreign nucleic acids. In type I CRISPR-Cas systems, invading DNA is detected by a large ribonucleoprotein surveillance complex called Cascade. The crRNA component of Cascade is used to recognize target sites in foreign DNA (protospacers) by formation of an R-loop driven by base-pairing complementarity. Using single-molecule supercoiling experiments with near base-pair resolution, we probe here the mechanism of R-loop formation and detect short-lived R-loop intermediates on off-target sites bearing single mismatches. We show that R-loops propagate directionally starting from the protospacer-adjacent motif (PAM). Upon reaching a mismatch, R-loop propagation stalls and collapses in a length-dependent manner. This unambiguously demonstrates that directional zipping of the R-loop accomplishes efficient target recognition by rapidly rejecting binding to off-target sites with PAM-proximal mutations. R-loops that reach the protospacer end become locked to license DNA degradation by the auxiliary Cas3 nuclease/helicase without further target verification.

摘要

CRISPR-Cas系统为细菌和古生菌提供针对外来核酸的适应性免疫。在I型CRISPR-Cas系统中,入侵的DNA由一种名为Cascade的大型核糖核蛋白监测复合物检测。Cascade的crRNA组分通过由碱基配对互补性驱动形成R环来识别外来DNA中的靶位点(原间隔序列)。利用具有近碱基对分辨率的单分子超螺旋实验,我们在此探究R环形成的机制,并在带有单个错配的脱靶位点检测到短寿命的R环中间体。我们表明,R环从原间隔序列相邻基序(PAM)开始定向传播。遇到错配时,R环传播会停止并以长度依赖的方式崩溃。这明确表明,R环的定向拉链通过快速拒绝与具有PAM近端突变的脱靶位点结合来实现有效的靶标识别。到达原间隔序列末端的R环会被锁定,以便辅助Cas3核酸酶/解旋酶进行DNA降解,而无需进一步的靶标验证。

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