Chen Qi, Sun Yangning, Yao Jia, Lu Yingfan, Qiu Ruikang, Zhou Fuling, Deng Zixin, Sun Yuhui
Department of Hematology, Zhongnan Hospital of Wuhan University, School of Pharmaceutical Sciences, Wuhan University, Wuhan, 430071, China.
Key Laboratory of Combinatorial Biosynthesis and Drug Discovery (Ministry of Education), Wuhan University, Wuhan, 430071, China.
Small. 2025 Apr;21(14):e2411583. doi: 10.1002/smll.202411583. Epub 2025 Feb 25.
Base editors are effective tools for introducing base conversions without double-strand breaks, showing broad applications in biotechnological and clinical areas. However, their non-negligible bystander mutations and off-target effects have raised extensive safety concerns. To address these issues, a novel method is developed by inserting specific peptide fragments into the substrate binding pocket of deaminases in base editors to modify these outcomes. It is validated that the composition and position of the inserted peptide can significantly impact the performance of A3A-based cytosine base editor and TadA-8e-based adenine base editor, leading to improved editing activity and precision in human HEK293T cells. Importantly, the TadA-8e variant with DPLVLRRRQ peptide inserted behind S116 residue showed a strong motif preference of YAN, which can accurately edit the A base in targeted protospacer with minimized bystander and off-target effects in DNA and RNA-level. By summarizing the regularity during engineering, a set of systematic procedures is established, which can potentially be used to modify other types of base editors and make them more accurate and secure. In addition, the peptide insertion strategy is also proven to be compatible with traditional amino acid changes which have been reported, exhibiting excellent compatibility.
碱基编辑器是用于引入碱基转换而不产生双链断裂的有效工具,在生物技术和临床领域显示出广泛的应用。然而,它们不可忽视的旁观者突变和脱靶效应引发了广泛的安全担忧。为了解决这些问题,人们开发了一种新方法,即在碱基编辑器中向脱氨酶的底物结合口袋插入特定肽片段来改善这些结果。经证实,插入肽的组成和位置会显著影响基于A3A的胞嘧啶碱基编辑器和基于TadA-8e的腺嘌呤碱基编辑器的性能,从而在人HEK293T细胞中提高编辑活性和精度。重要的是,在S116残基后插入DPLVLRRRQ肽的TadA-8e变体表现出对YAN基序的强烈偏好,它可以在DNA和RNA水平上以最小的旁观者和脱靶效应准确编辑靶向原间隔区中的A碱基。通过总结工程过程中的规律,建立了一套系统程序,这有可能用于修饰其他类型的碱基编辑器并使其更准确、更安全。此外,肽插入策略也被证明与已报道的传统氨基酸变化兼容,表现出优异的兼容性。