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首页> 外文期刊>Human Molecular Genetics >Stable micro-dystrophin gene transfer using an integrating adeno-retroviral hybrid vector ameliorates the dystrophic pathology in mdx mouse muscle.
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Stable micro-dystrophin gene transfer using an integrating adeno-retroviral hybrid vector ameliorates the dystrophic pathology in mdx mouse muscle.

机译:使用整合的腺病毒-逆转录病毒杂交载体稳定的微抗肌营养不良蛋白基因转移改善了mdx小鼠肌肉的营养不良性病理。

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摘要

The ability to transfer the dystrophin gene stably to the skeletal muscle of DMD patients is a major confounding issue in establishing an effective gene therapy for this disease. To overcome this problem, we have examined the ability of muscle fibres from mdx mice to act as in situ factories of retroviral vector production. Tibialis anterior (TA) muscles from 4-week-old mdx mice were injected with an adenoviral vector expressing LacZ within a retroviral expression cassette (AdLZIN). Retroviral vector production was induced by the inclusion of two additional adenoviral vectors expressing retroviral gag-pol (AdGagPol) and 10A1 env genes (Ad10A1). Upon introduction of infected muscles into cell culture, colonies of beta-galactosidase-expressing myotubes formed only in cultures where the muscle was injected with AdLZIN, AdGagPol and Ad10A1, but not from muscle injected with AdLZIN only. Muscles from mdxude mice producing retroviral vector displayed a 4.6-fold increase in beta-galactosidase-positive myofibres after 1 month, compared with contralateral muscle in the same animal injected with AdLZIN and AdGagPol only. By constructing a hybrid adeno-retroviral vector expressing a truncated micro-dystrophin construct (AdmicroDyIN), we were able to partially correct the mdx dystrophic phenotype. AdmicroDyIN-mediated expression of micro-dystrophin in mdx TA muscle restored the formation of the dystrophin-associated glycoprotein complex and significantly reduced the level of muscle degeneration over uninjected controls. By stimulating in situ production of retroviral vector expressing micro-dystrophin, we achieved 92%+/-6% transduction of myofibres in the TA muscle by 4 weeks. Strikingly, by 3 months post injection, micro-dystrophin was still expressed to high levels in nearly all the myofibres of the TA muscle. By comparison, there was a pronounced drop in the levels of micro-dystrophin expressed by muscles injected with AdmicroDyIN only. Finally, using a novel PCR approach, we detected reverse-transcribed, integrated proviral sequences in TA muscle genomic DNA by 4 weeks post injection, the levels of which were found to increase after 3 months.
机译:将抗肌萎缩蛋白基因稳定转移至DMD患者骨骼肌的能力是建立针对该疾病的有效基因疗法的主要难题。为克服此问题,我们检查了mdx小鼠的肌纤维作为逆转录病毒载体生产的原位工厂的能力。向来自4周龄mdx小鼠的胫前肌(TA)肌肉注射在逆转录病毒表达盒(AdLZIN)中表达LacZ的腺病毒载体。通过包含另外两个表达逆转录病毒gag-pol(AdGagPol)和10A1 env基因(Ad10A1)的腺病毒载体来诱导逆转录病毒载体的产生。将受感染的肌肉引入细胞培养物中后,表达β-半乳糖苷酶的肌管仅在肌肉注射了AdLZIN,AdGagPol和Ad10A1的培养物中形成菌落,而并非仅注射了AdLZIN的肌肉形成。与仅注射AdLZIN和AdGagPol的同一只动物的对侧肌肉相比,来自产生逆转录病毒载体的mdx / nude小鼠的肌肉在1个月后显示出β-半乳糖苷酶阳性肌纤维的增加4.6倍。通过构建表达截短的微肌营养不良蛋白构建体(AdmicroDyIN)的杂交腺逆转录病毒载体,我们能够部分纠正mdx营养不良的表型。 AdmicroDyIN介导的mdx TA肌肉中微肌营养不良蛋白的表达恢复了肌营养不良蛋白相关糖蛋白复合物的形成,并且与未注射的对照相比,明显降低了肌肉变性的水平。通过刺激表达微肌营养不良蛋白的逆转录病毒载体的原位产生,我们在4周内实现了TA肌肉中肌原纤维的92%+ /-6%的转导。令人惊讶的是,到注射后3个月,微肌营养不良蛋白仍在几乎所有TA肌肉的肌纤维中高水平表达。相比之下,仅注射AdmicroDyIN的肌肉表达的微肌营养不良蛋白水平显着下降。最后,使用新颖的PCR方法,我们在注射后4周时检测到了TA肌肉基因组DNA中逆转录的整合前病毒序列,发现其水平在3个月后增加。

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