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无 PAM 的 SpRY 表现出对种子区域的偏好,以实现高效靶向。

PAMless SpRY exhibits a preference for the seed region for efficient targeting.

机构信息

Key Laboratory of Engineering Biology for Low-Carbon Manufacturing, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin 300308, China; University of Chinese Academy of Sciences, Beijing 100049, China.

State Key Laboratory of Experimental Hematology, National Clinical Research Center for Blood Diseases, Institute of Hematology & Blood Diseases Hospital, Chinese Academy of Medical Sciences & Peking Union Medical College, Tianjin 300020, China; Tianjin Institutes of Health Science, Tianjin 301600, China.

出版信息

Cell Rep. 2024 May 28;43(5):114225. doi: 10.1016/j.celrep.2024.114225. Epub 2024 May 10.

Abstract

Protospacer-adjacent motif (PAM) recognition licenses Cas nucleases for genome engineering applications, thereby restricting gene targeting to PAM-containing regions. Protein engineering has led to PAM-relaxed SpCas9 variants like SpG and SpRY. Given the evolved role of PAMs in facilitating target-searching kinetics, it remains unclear how these variants quickly locate their targets. We show that SpG and SpRY exhibit a preference for the seed region. To compensate for the relaxed PAM recognition, SpRY has evolved a sequence preference for the seed region through interactions with A61R and A1322R. Furthermore, SpCas9 exhibits a significant decrease in target search kinetics on high-PAM-density DNA, slowing down up to three orders of magnitude compared to low-PAM-density DNA, suggesting the necessity for sequence recognition even in PAM-relaxed variants. This underscores the importance of considering Cas9 target-searching kinetics in SpCas9 PAMless engineering, providing valuable insights for further PAMless Cas9 protein engineering efforts.

摘要

原间隔基序(PAM)识别使 Cas 核酸酶能够用于基因组工程应用,从而将基因靶向限制在含有 PAM 的区域。蛋白质工程已经导致了 PAM 放松的 SpCas9 变体,如 SpG 和 SpRY。鉴于 PAMs 在促进目标搜索动力学方面的进化作用,目前尚不清楚这些变体如何快速找到它们的靶标。我们表明 SpG 和 SpRY 表现出对种子区域的偏好。为了弥补 PAM 识别的放松,SpRY 通过与 A61R 和 A1322R 的相互作用,进化出了对种子区域的序列偏好。此外,SpCas9 在高 PAM 密度 DNA 上的靶标搜索动力学显著下降,与低 PAM 密度 DNA 相比,速度减慢了三个数量级以上,这表明即使在 PAM 放松的变体中,序列识别也是必要的。这凸显了在 SpCas9 无 PAM 工程中考虑 Cas9 靶标搜索动力学的重要性,为进一步的无 PAM Cas9 蛋白工程努力提供了有价值的见解。

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