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Gene Therapy: Lentiviral vectors containing an enhancer-less ubiquitously acting chromatin opening element (UCOE) provide highly reproducible and stable transgene expression in hematopoietic cells

机译:基因治疗:慢病毒载体包含无增强子的染色质开放元件(UCOE)可在造血细胞中提供高度可再现和稳定的转基因表达

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摘要

Ubiquitously acting chromatin opening elements (UCOEs) consist of methylation-free CpG islands encompassing dual divergently transcribed promoters of housekeeping genes that have been shown to confer resistance to transcriptional silencing and to produce consistent and stable transgene expression in tissue culture systems. To develop improved strategies for hematopoietic cell gene therapy, we have assessed the potential of the novel human HNRPA2B1-CBX3 UCOE (A2UCOE) within the context of a self-inactivating (SIN) lentiviral vector. Unlike viral promoters, the enhancer-less A2UCOE gave rise to populations of cells that expressed a reporter transgene at a highly reproducible level. The efficiency of expression per vector genome was also markedly increased in vivo compared with vectors incorporating either spleen focus-forming virus (SFFV) or cytomegalovirus (CMV) promoters, suggesting a relative resistance to silencing. Furthermore, an A2UCOE-IL2RG vector fully restored the IL-2 signaling pathway within IL2RG-deficient human cells in vitro and successfully rescued the X-linked severe combined immunodeficiency (SCID-X1) phenotype in a mouse model of this disease. These data indicate that the A2UCOE displays highly reliable transcriptional activity within a lentiviral vector, largely overcoming insertion-site position effects and giving rise to therapeutically relevant levels of gene expression. These properties are achieved in the absence of classic enhancer activity and therefore may confer a high safety profile.
机译:遍在起作用的染色质开放元件(UCOE)由无甲基化的CpG岛组成,其中包含管家基因的两个发散转录的启动子,这些启动子已显示出赋予转录沉默的抗性并在组织培养系统中产生一致且稳定的转基因表达。为了开发用于造血细胞基因治疗的改良策略,我们在自我灭活(SIN)慢​​病毒载体的背景下评估了新型人类HNRPA2B1-CBX3 UCOE(A2UCOE)的潜力。与病毒启动子不同,无增强子的A2UCOE产生了以高度可复制的水平表达报告基因转基因的细胞群。与掺入脾脏聚焦形成病毒(SFFV)或巨细胞病毒(CMV)启动子的载体相比,体内每个载体基因组的表达效率也显着提高,表明相对沉默。此外,A2UCOE-IL2RG载体在体外完全恢复了IL2RG缺陷型人类细胞内的IL-2信号传导途径,并成功挽救了这种疾病的小鼠模型中的X连锁严重联合免疫缺陷症(SCID-X1)表型。这些数据表明,A2UCOE在慢病毒载体中显示出高度可靠的转录活性,大大克服了插入位点的位置效应,并产生了基因表达的治疗相关水平。这些特性是在没有经典增强剂活性的情况下实现的,因此可以赋予较高的安全性。

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