Department of Physics, Kent State University, Kent, Ohio 44242, United States.
Kavli Institute of NanoScience and Department of BioNanoScience, Delft University of Technology, Delft, 2629HZ, The Netherlands.
ACS Chem Biol. 2021 Apr 16;16(4):596-603. doi: 10.1021/acschembio.0c00687. Epub 2021 Mar 26.
Clustered regularly interspaced palindromic repeats (CRISPR) and CRISPR-associated (Cas) proteins, particularly Cas9, have provided unprecedented control on targeting and editing specific DNA sequences. If the target sequences are prone to folding into noncanonical secondary structures, such as G-quadruplex (GQ), the conformational states and activity of the CRISPR-Cas9 complex may be influenced, but the impact has not been assessed. Using single molecule FRET, we investigated structural characteristics of the complex formed by CRISPR-Cas9 and target DNA, which contains a potentially GQ forming sequence (PQS) in either the target or the nontarget strand (TS or NTS). We observed different conformational states and dynamics depending on the stability of the GQ and the position of PQS. When PQS was in NTS, we observed evidence for GQ formation for both weak and stable GQs. This is consistent with R-loop formation between TS and crRNA releasing NTS from Watson-Crick pairing and facilitating secondary structure formation in it. When PQS was in TS, R-loop formation was adequate to maintain a weak GQ in the unfolded state but not a GQ with moderate or high stability. The observed structural heterogeneity within the target dsDNA and the R-loop strongly depended on whether the PQS was in TS or NTS. We propose these variations in the complex structures to have functional implications for Cas9 activity.
成簇规律间隔短回文重复序列(CRISPR)和 CRISPR 相关(Cas)蛋白,特别是 Cas9,为靶向和编辑特定 DNA 序列提供了前所未有的控制。如果靶序列易于折叠成非典型的二级结构,如 G-四链体(GQ),CRISPR-Cas9 复合物的构象状态和活性可能会受到影响,但尚未评估这种影响。使用单分子 FRET,我们研究了 CRISPR-Cas9 与靶 DNA 形成的复合物的结构特征,该复合物在靶或非靶链(TS 或 NTS)中包含一个潜在的 GQ 形成序列(PQS)。我们观察到不同的构象状态和动力学取决于 GQ 的稳定性和 PQS 的位置。当 PQS 在 NTS 中时,我们观察到弱 GQ 和稳定 GQ 形成的证据。这与 TS 和 crRNA 之间的 R 环形成一致,R 环形成将 NTS 从 Watson-Crick 配对中释放出来,并促进其二级结构形成。当 PQS 在 TS 中时,R 环形成足以维持未折叠状态下的弱 GQ,但不足以维持具有中等或高度稳定性的 GQ。靶双链 DNA 内观察到的结构异质性和 R 环强烈依赖于 PQS 是在 TS 还是 NTS 中。我们提出这些复合物结构的变化对 Cas9 活性具有功能意义。