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杂合 Cas12a 变体放宽 PAM 要求,扩展基因组编辑兼容性。

Hybrid Cas12a Variants with Relaxed PAM Requirements Expand Genome Editing Compatibility.

机构信息

Frontiers Science Center for Synthetic Biology and Key Laboratory of Systems Bioengineering (Ministry of Education), School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, China.

Georgia Tech Shenzhen Institute, Tianjin University, Tangxing Road 133, Nanshan District, Shenzhen 518071, China.

出版信息

ACS Synth Biol. 2024 Jun 21;13(6):1809-1819. doi: 10.1021/acssynbio.4c00103. Epub 2024 May 31.

Abstract

Cas12a is a widely used programmable nuclease for genome editing across a variety of organisms, but its application is limited by its PAM recognition restriction. To alleviate these PAM constraints, protein engineering efforts have been applied to expand the PAM recognition range. In this study, we designed and constructed 990 synthetic hybrid Cas12a chimeras through domain shuffling and screened an efficient hybrid Cas12a (ehCas12a) that could recognize a broad range PAM of 5'-TYYN-3' (Y is T or C and N is A, T, C, or G). Furthermore, we constructed an ehCas12a variant, ehCas12a RRVR (T167R/N572R/K578V/N582R), with expanded PAM preference to 5'-TNYN, TWRV-3' (W is A or T, R is A or G, and V is A, C, or G), which can efficiently recognize -2* A/G PAMs that are barely recognized by Cas12a-type proteins and their mutants. Finally, we demonstrated that the DNase-inactivated ehCas12a RRVR base editor (dehCas12a RRVR-BE) was capable of targeting noncanonical PAMs and disease-related loci for potential therapeutic applications. Overall, our findings highlight the modular design and reconfiguration of Cas proteins for enhanced functionality.

摘要

Cas12a 是一种广泛应用于多种生物基因组编辑的可编程核酸酶,但由于其 PAM 识别限制,其应用受到限制。为了缓解这些 PAM 约束,人们已经应用蛋白质工程努力来扩大 PAM 识别范围。在这项研究中,我们通过结构域改组设计并构建了 990 种合成的杂交 Cas12a 嵌合体,并筛选出一种能够识别广泛的 PAM 5'-TYYN-3'(Y 为 T 或 C,N 为 A、T、C 或 G)的高效杂交 Cas12a(ehCas12a)。此外,我们构建了 ehCas12a 的变体 ehCas12a RRVR(T167R/N572R/K578V/N582R),其 PAM 偏好扩展为 5'-TNYN,TWRV-3'(W 为 A 或 T,R 为 A 或 G,V 为 A、C 或 G),能够有效识别 Cas12a 型蛋白及其突变体几乎无法识别的-2*A/G PAMs。最后,我们证明了无 DNA 酶活性的 ehCas12a RRVR 碱基编辑器(dehCas12a RRVR-BE)能够靶向非典型 PAMs 和与疾病相关的基因座,具有潜在的治疗应用价值。总的来说,我们的研究结果强调了 Cas 蛋白的模块化设计和重新配置,以增强其功能。

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