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转染CRISPR/Cas9质粒DNA的肽树枝状大分子:优化与机制

Peptide dendrimers transfecting CRISPR/Cas9 plasmid DNA: optimization and mechanism.

作者信息

Zamolo Susanna, Zakharova Elena, Boursinhac Lise, Hollfelder Florian, Darbre Tamis, Reymond Jean-Louis

机构信息

Department of Chemistry, Biochemistry and Pharmaceutical Sciences, University of Bern Freiestrasse 3 3012 Bern Switzerland

Department of Biochemistry, University of Cambridge 80 Tennis Court Road Cambridge CB2 1GA UK.

出版信息

RSC Chem Biol. 2024 Jul 29;5(9):891-900. doi: 10.1039/d4cb00116h. eCollection 2024 Aug 28.

Abstract

Gene editing by CRISPR/Cas9 offers great therapeutic opportunities but requires delivering large plasmid DNA (pDNA) into cells, a task for which transfection reagents are better suited than viral vectors. Here we performed a structure-activity relationship study of Z22, a d-enantiomeric, arginine containing, lipidated peptide dendrimer developed for pDNA transfection of a CRISPR/Cas9 plasmid co-expressing GFP. While all dendrimer analogs tested bound pDNA strongly and internalized their cargo into cells, d-chirality proved essential for transfection by avoiding proteolysis of the dendrimer structure required for endosome escape and possibly crossing of the nuclear envelope. Furthermore, a cysteine residue at the core of Z22 proved non-essential and was removed to yield the more active analog Z34. This dendrimer shows >83% GFP transfection efficiency in HEK cells with no detrimental effect on cell viability and promotes functional CRISPR/Cas9 mediated gene editing. It is accessible by solid-phase peptide synthesis and therefore attractive for further development.

摘要

CRISPR/Cas9介导的基因编辑提供了巨大的治疗机会,但需要将大质粒DNA(pDNA)导入细胞,在这项任务中,转染试剂比病毒载体更适用。在此,我们对Z22进行了构效关系研究,Z22是一种为共表达绿色荧光蛋白(GFP)的CRISPR/Cas9质粒的pDNA转染而开发的d-对映体、含精氨酸的脂化肽树枝状大分子。虽然所测试的所有树枝状大分子类似物都能强烈结合pDNA并将其货物内化到细胞中,但d-手性被证明对于转染至关重要,它可以避免内体逃逸所需的树枝状大分子结构被蛋白水解,并可能穿过核膜。此外,Z22核心处的半胱氨酸残基被证明不是必需的,已被去除以产生活性更高的类似物Z34。这种树枝状大分子在HEK细胞中显示出>83%的GFP转染效率,对细胞活力没有不利影响,并促进功能性CRISPR/Cas9介导的基因编辑。它可通过固相肽合成获得,因此对进一步开发具有吸引力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a190/11352961/074ca79ac249/d4cb00116h-f1.jpg

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