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首页> 外文期刊>Australian Journal of Crop Science >Structural Plasticity of PAM Recognition by Engineered Variants of the RNA-Guided Endonuclease Cas9
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Structural Plasticity of PAM Recognition by Engineered Variants of the RNA-Guided Endonuclease Cas9

机译:RNA引导的核酸内切酶Cas9的工程变体对PAM识别的结构可塑性。

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The RNA-guided endonuclease Cas9 from Streptococcus pyogenes (SpCas9) forms the core of a powerful genome editing technology. DNA cleavage by SpCas9 is dependent on the presence of a 5′-NGG-3′ protospacer adjacent motif (PAM) in the target DNA, restricting the choice of targetable sequences. To address this limitation, artificial SpCas9 variants with altered PAM specificities have recently been developed. Here we report crystal structures of the VQR, EQR, and VRER SpCas9 variants bound to target DNAs containing their preferred PAM sequences. The structures reveal that the non-canonical PAMs are recognized by an induced fit mechanism. Besides mediating sequence-specific base recognition, the amino acid substitutions introduced in the SpCas9 variants facilitate conformational remodeling of the PAM region of the bound DNA. Guided by the structural data, we engineered a SpCas9 variant that specifically recognizes NAAG PAMs. Taken together, these studies inform further development of Cas9-based genome editing tools.
机译:化脓链球菌(SpCas9)的RNA引导的核酸内切酶Cas9形成了强大的基因组编辑技术的核心。 SpCas9对DNA的切割取决于目标DNA中5'-NGG-3'原间隔子相邻基序(PAM)的存在,从而限制了可靶向序列的选择。为了解决该限制,最近已经开发了具有改变的PAM特异性的人工SpCas9变体。在这里,我们报告绑定到包含其首选PAM序列的目标DNA的VQR,EQR和VRER SpCas9变体的晶体结构。该结构表明,非经典的PAM被诱导拟合机制识别。除了介导序列特异性碱基识别外,SpCas9变体中引入的氨基酸取代还有助于结合DNA的PAM区的构象重塑。在结构数据的指导下,我们设计了专门识别NAAG PAM的SpCas9变体。综上所述,这些研究为基于Cas9的基因组编辑工具的进一步开发提供了信息。

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