肽核酸
二甘醇
化学
核酸
DNA
低聚物
羟甲基
部分
生物化学
普鲁兰
肽
组合化学
核酸类似物
立体化学
核酸热力学
乙二醇
有机化学
多糖
基序列
作者
Peter M. Glazer,Elias Quijano,Julián Perera,Hanna K. Mandl,W. Mark Saltzman,Raman Bahal,Peter M. Glazer
标识
DOI:10.1016/j.xcrp.2023.101635
摘要
Peptide nucleic acids (PNAs) can target and stimulate recombination reactions in genomic DNA. We have reported that γPNA oligomers possessing the diethylene glycol γ-substituent show improved efficacy over unmodified PNAs in stimulating recombination-induced gene modification. However, this structural modification poses a challenge because of the inherent racemization risk in O-alkylation of the precursory serine side chain. To circumvent this risk and improve γPNA accessibility, we explore the utility of γPNA oligomers possessing the hydroxymethyl-γ moiety for gene-editing applications. We demonstrate that a γPNA oligomer possessing the hydroxymethyl modification, despite weaker preorganization, retains the ability to form a hybrid with the double-stranded DNA target of comparable stability and with higher affinity than that of the diethylene glycol-γPNA. When formulated into poly(lactic-co-glycolic acid) nanoparticles, the hydroxymethyl-γPNA stimulates higher frequencies (≥1.5-fold) of gene modification than the diethylene glycol γPNA in mouse bone marrow cells.
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