Roth Justin C, Ismail Mourad, Reese Jane S, Lingas Karen T, Ferrari Giuliana, Gerson Stanton L
Division of Infectious Diseases, Department of Pediatrics, The University of Alabama at Birmingham, Birmingham, AL 35294, USA.
ISRN Hematol. 2012;2012:212586. doi: 10.5402/2012/212586. Epub 2012 Jul 19.
The P140K point mutant of MGMT allows robust hematopoietic stem cell (HSC) enrichment in vivo. Thus, dual-gene vectors that couple MGMT and therapeutic gene expression have allowed enrichment of gene-corrected HSCs in animal models. However, expression levels from dual-gene vectors are often reduced for one or both genes. Further, it may be desirable to express selection and therapeutic genes at distinct stages of cell differentiation. In this regard, we evaluated whether hematopoietic cells could be efficiently cotransduced using low MOIs of two separate single-gene lentiviruses, including MGMT for dual-positive cell enrichment. Cotransduction efficiencies were evaluated using a range of MGMT : GFP virus ratios, MOIs, and selection stringencies in vitro. Cotransduction was optimal when equal proportions of each virus were used, but low MGMT : GFP virus ratios resulted in the highest proportion of dual-positive cells after selection. This strategy was then evaluated in murine models for in vivo selection of HSCs cotransduced with a ubiquitous MGMT expression vector and an erythroid-specific GFP vector. Although the MGMT and GFP expression percentages were variable among engrafted recipients, drug selection enriched MGMT-positive leukocyte and GFP-positive erythroid cell populations. These data demonstrate cotransduction as a mean to rapidly enrich and evaluate therapeutic lentivectors in vivo.
MGMT的P140K点突变体能够在体内实现强大的造血干细胞(HSC)富集。因此,将MGMT与治疗性基因表达相结合的双基因载体已在动物模型中实现了基因校正HSC的富集。然而,双基因载体中一个或两个基因的表达水平常常会降低。此外,可能希望在细胞分化的不同阶段表达选择基因和治疗性基因。在这方面,我们评估了使用两种单独的单基因慢病毒低感染复数(MOI)能否有效地共转导造血细胞,其中包括用于双阳性细胞富集的MGMT。在体外,使用一系列MGMT:GFP病毒比例、MOI和选择严格度评估共转导效率。当使用每种病毒的等比例时,共转导效果最佳,但低MGMT:GFP病毒比例在选择后产生的双阳性细胞比例最高。然后在小鼠模型中评估该策略,用于体内选择用遍在性MGMT表达载体和红系特异性GFP载体共转导的HSC。尽管在植入的受体中MGMT和GFP的表达百分比各不相同,但药物选择富集了MGMT阳性白细胞和GFP阳性红细胞群体。这些数据证明共转导是一种在体内快速富集和评估治疗性慢病毒载体的方法。