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肌肉特异性启动子对于腺相关病毒介导的基因转移治疗肌肉萎缩症可能是必要的。

Muscle-specific promoters may be necessary for adeno-associated virus-mediated gene transfer in the treatment of muscular dystrophies.

作者信息

Cordier L, Gao G P, Hack A A, McNally E M, Wilson J M, Chirmule N, Sweeney H L

机构信息

Department of Physiology, University of Pennsylvania School of Medicine, Philadelphia, PA 19104; Cell Genesys, Foster City, CA 94404.

出版信息

Hum Gene Ther. 2001 Jan 20;12(2):205-15. doi: 10.1089/104303401750061267.

Abstract

Recombinant adeno-associated virus (rAAV) vectors allow efficient gene transfer and expression in the muscle; therefore, rAAVs represent a potential gene therapy vector for muscular dystrophies. For further investigations, we used a mouse muscular dystrophy model (gsg(-/-) mice) gamma-sarcoglycan, a subunit of the dystrophin-glycoprotein complex, is missing. gsg(-/-) mice develop progressive dystrophy representative of a severe human phenotype disease. We previously showed high levels and stable expression of gamma-sarcoglycan in myofibers after direct muscle injection into gsg(-/-) mice of a recombinant AAV vector (AAV.dMCK.gSG) carrying the gamma-sarcoglycan cDNA driven by a muscle-specific promoter (truncated version of muscle creatine kinase). Here, we show that when gamma-sarcoglycan expression is driven by the ubiquitous cytomegalovirus (CMV) promoter (AAV.CMV.gSG), lower levels of transgene expression are observed and are associated with a humoral response to gamma-sarcoglycan. When using an rAAV vector, expressing the highly immunogenic product gamma-galactosidase under the CMV promoter (AAV.CMV.LacZ), we measured a strong cellular and humoral immune response to the transgene after intramuscular injection into gsg(-/-) mice. This study suggests that restriction of transgene expression to the muscle is an important criterion for the treatment of muscular dystrophies and will aid in the design of protocols for gene therapy.

摘要

重组腺相关病毒(rAAV)载体可实现基因在肌肉中的高效转移和表达;因此,rAAV代表了一种用于治疗肌营养不良症的潜在基因治疗载体。为了进一步研究,我们使用了一种小鼠肌营养不良模型(gsg(-/-)小鼠),其肌营养不良蛋白-糖蛋白复合物的一个亚基γ-肌聚糖缺失。gsg(-/-)小鼠会发展出代表严重人类表型疾病的进行性肌营养不良。我们之前曾表明,将携带由肌肉特异性启动子(肌肉肌酸激酶的截短版本)驱动的γ-肌聚糖cDNA的重组AAV载体(AAV.dMCK.gSG)直接肌肉注射到gsg(-/-)小鼠体内后,γ-肌聚糖在肌纤维中实现了高水平且稳定的表达。在此,我们表明,当γ-肌聚糖的表达由普遍存在的巨细胞病毒(CMV)启动子驱动时(AAV.CMV.gSG),观察到转基因表达水平较低,并且与对γ-肌聚糖的体液反应相关。当使用一种在CMV启动子(AAV.CMV.LacZ)控制下表达高免疫原性产物γ-半乳糖苷酶的rAAV载体时,我们在将其肌肉注射到gsg(-/-)小鼠体内后,检测到了对该转基因的强烈细胞免疫和体液免疫反应。这项研究表明,将转基因表达限制在肌肉中是治疗肌营养不良症的一个重要标准,并且将有助于基因治疗方案的设计。

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