Badia Roger, Riveira-Muñoz Eva, Clotet Bonaventura, Esté José A, Ballana Ester
IrsiCaixa, Hospital Universitari Germans Trias i Pujol, Universitat Autònoma de Barcelona, 08916 Badalona, Spain.
IrsiCaixa, Hospital Universitari Germans Trias i Pujol, Universitat Autònoma de Barcelona, 08916 Badalona, Spain
J Antimicrob Chemother. 2014 Jul;69(7):1755-9. doi: 10.1093/jac/dku072. Epub 2014 Mar 20.
To characterize a new zinc-finger nuclease (ZFN) that targets close to the sequence of the 32 bp deletion polymorphism in the CCR5 gene, and to generate cells resistant to HIV-1 strains that use CCR5. CCR5Δ32 is a naturally occurring deletion that provides genetic resistance to R5-tropic HIV-1. The specificity and efficacy of a newly identified target for CCR5 gene editing, near the CCR5Δ32 sequence (ZFNCCR5Δ32), was assessed as well as its ability to generate cells resistant to HIV infection with reduced off-target effects.
ZFNCCR5Δ32 activity was evaluated by heteroduplex formation in human K562 cells. Assessment of ZFNCCR5Δ32 specificity was analysed in silico. The yield of ZFNCCR5Δ32 in cell culture was improved by fluorescence-activated cell sorting, and the anti-HIV potency of ZFNCCR5Δ32 was measured in vitro in TZM-bl cells against HIV-1 strains.
ZFNCCR5Δ32 effectively recognized the CCR5Δ32 region, inducing a frameshift of the CCR5 coding region that resulted in the complete absence of CCR5 expression of mRNA and of protein at the cell surface. CCR5 knockout cells were refractory to HIV-1 infection by the R5-using strain BaL. Unlike previous CCR5 ZFN studies, the new ZFN has no detectable off-target activity.
ZFNCCR5Δ32 is a specific and efficient tool for the generation of CCR5 knockouts. Its ability to mimic the natural CCR5Δ32 phenotype in the absence of relevant off-site cutting events suggests that ZFNCCR5Δ32 might be safe in clinical research.
鉴定一种新型锌指核酸酶(ZFN),其靶向接近CCR5基因中32bp缺失多态性序列,并生成对使用CCR5的HIV-1毒株具有抗性的细胞。CCR5Δ32是一种天然存在的缺失,可提供对R5嗜性HIV-1的遗传抗性。评估了在CCR5Δ32序列附近新鉴定的CCR5基因编辑靶点(ZFNCCR5Δ32)的特异性和有效性,以及其产生对HIV感染具有抗性且脱靶效应降低的细胞的能力。
通过人K562细胞中的异源双链体形成评估ZFNCCR5Δ32活性。通过计算机分析评估ZFNCCR5Δ32的特异性。通过荧光激活细胞分选提高ZFNCCR5Δ32在细胞培养中的产量,并在TZM-bl细胞中体外测量ZFNCCR5Δ32对HIV-1毒株的抗HIV效力。
ZFNCCR5Δ32有效识别CCR5Δ32区域,诱导CCR5编码区移码,导致细胞表面mRNA和蛋白质完全不表达CCR5。CCR5基因敲除细胞对使用R5的BaL毒株的HIV-1感染具有抗性。与先前的CCR5 ZFN研究不同,新的ZFN没有可检测到的脱靶活性。
ZFNCCR5Δ32是产生CCR5基因敲除的特异性和有效工具。其在没有相关异位切割事件的情况下模拟天然CCR5Δ32表型的能力表明,ZFNCCR5Δ32在临床研究中可能是安全的。