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首页> 外文期刊>Human gene therapy >Hematopoietic-specific lentiviral vectors circumvent cellular toxicity due to ectopic expression of Wiskott-Aldrich syndrome protein.
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Hematopoietic-specific lentiviral vectors circumvent cellular toxicity due to ectopic expression of Wiskott-Aldrich syndrome protein.

机译:造血特异性的慢病毒载体引起的威斯氏醇综合征蛋白异位表达引起的致细胞毒性。

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摘要

Efficient and safe gene modification of hematopoietic stem cells is a requirement for gene therapy of primary immunodeficiencies such as Wiskott-Aldrich syndrome. However, deregulated expression or ectopic expression in the progeny of transduced nonhematopoietic progenitor cells may lead to unwanted toxicity. We therefore analyzed the effect of ectopic expression of Wiskott-Aldrich syndrome protein (WASp) and the potential benefits of hematopoietic-specific lentiviral vectors (driven by the WAS proximal promoter). Overexpression of WASp by constitutive lentiviral vectors is highly toxic in nonhematopoietic cells because it causes dramatic changes in actin localization and polymerization that result in decreased cell viability, as evidenced by a significant growth disadvantage of WASp-overexpressing nonhematopoietic cells and increased cell death. These toxic effects do not affect cells of hematopoietic origin because, remarkably, we found that WASp cannot be readily overexpressed in T cells, even aftermultiple vector integrations per cell. The adverse cellular effects found after transduction of nonhematopoietic cells with constitutive lentiviral vectors are overcome by the use of transcriptionally targeted lentiviral vectors expressing WASp, which, at the same time, are efficient tools for gene therapy of WAS as demonstrated by their ability to reconstitute cellular defects from WASp-deficient mouse and human cells. We therefore postulate that transcriptionally regulated lentiviral vectors represent a safer and efficient alternative for the development of clinical protocols of WAS gene therapy.
机译:造血干细胞的高效和安全的基因改性是初级免疫缺乏的基因治疗,如Wiskott-Aldrich综合征。然而,转导的非遗产祖细胞的后代的放松管制表达或异位表达可能导致不必要的毒性。因此,我们分析了Wiskott-Aldrich综合征蛋白(WASP)异位表达的影响以及造血特异性慢病毒载体的潜在益处(由近端启动子驱动)。由本构慢病毒载体的过度表达是缺乏的缺乏细胞毒性剧毒,因为它导致肌动蛋白定位和聚合的显着变化导致细胞活力降低,如黄蜂过表现出的非发血细胞的显着增长缺点和细胞死亡增加所证明。这些毒性效应不影响造血的细胞,因为,显着的,我们发现WASP不能在T细胞中容易地过表达,即使是每个细胞的后矢量集成。通过使用具有组成型慢病毒载体的非肝细胞进行转导后发现的不良细胞效应通过使用转录靶向的慢病毒载体来克服,同时,该载体同时是基因治疗的有效工具如其重构细胞的能力所证明的来自缺乏缺乏鼠标和人类细胞的缺陷。因此,我们假设转录调节的慢病毒载体代表了一种更安全,有效的替代方案,用于发展是基因治疗的临床方案。

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