首页> 外文OA文献 >Dystrophin expression in muscle following gene transfer with a fully deleted ('Gutted') adenovirus Is markedly improved by trans-acting adenoviral gene products
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Dystrophin expression in muscle following gene transfer with a fully deleted ('Gutted') adenovirus Is markedly improved by trans-acting adenoviral gene products

机译:通过转移腺病毒基因产物显着改善基因转移后的肌肉中的肌营养不良蛋白表达,该基因被完全缺失(“去掉”)腺病毒转移

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摘要

Helper-dependent adenoviruses (HDAd) are Ad vectors lacking all or most viral genes. They hold great promise for gene therapy of diseases such as Duchenne muscular dystrophy (DMD), because they are less immunogenic than E1/E3-deleted Ad (first-generation Ad or FGAd) and can carry the full-length (Fl) dystrophin (dys) cDNA (12 kb). We have compared the transgene expression of a HDAd (HDAdCMVDysFl) and a FGAd (FGAdCMV-dys) in cell culture (HeLa, C2C12 myotubes) and in the muscle of mdx mice (the mouse model for DMD). Both vectors encoded dystrophin regulated by the same cytomegalovirus (CMV) promoter. We demonstrate that the amount of dystrophin expressed was significantly higher after gene transfer with FGAdCMV-dys compared to HDAdCMVDysFl both in vitro and in vivo. However, gene transfer with HDAdCMVDysFl in the presence of a FGAd resulted in a significant increase of dystrophin expression indicating that gene products synthesized by the FGAd increase, in trans, the amount of dystrophin produced. This enhancement occurred in cell culture and after gene transfer in the muscle of mdx mice and dystrophic golden retriever (GRMD) dogs, another animal model for DMD. The E4 region of Ad is required for the enhancement, because no increase of dystrophin expression from HDAdCMVDysFl was observed in the presence of an E1/E4-deleted Ad in vitro and in vivo. The characterization of these enhancing gene products followed by their inclusion into an HDAd may be required to produce sufficient dystrophin to mitigate the pathology of DMD by HDAd-mediated gene transfer.
机译:辅助依赖性腺病毒(HDAd)是缺乏所有或大多数病毒基因的Ad载体。它们对诸如杜氏肌营养不良(DMD)等疾病的基因治疗具有广阔的前景,因为它们的免疫原性低于E1 / E3缺失的Ad(第一代Ad或FGAd),并且可以携带全长(F1)肌营养不良蛋白( dys)cDNA(12 kb)。我们已经比较了HDAd(HDAdCMVDysF1)和FGAd(FGAdCMV-dys)在细胞培养(HeLa,C2C12肌管)和mdx小鼠肌肉(DMD小鼠模型)的肌肉中的转基因表达。两种载体均编码受同一巨细胞病毒(CMV)启动子调控的肌营养不良蛋白。我们证明在体外和体内,与HDAdCMVDysF1相比,用FGAdCMV-dys进行基因转移后表达的肌营养不良蛋白的量显着更高。然而,在FGAd存在下用HDAdCMVDysF1进行基因转移导致肌营养不良蛋白表达的显着增加,表明由FGAd合成的基因产物反过来增加了产生的肌营养不良蛋白的量。这种增强发生在细胞培养物中,并且是在mdx小鼠和营养不良的金毛寻回犬(GRMD)狗(另一种DMD动物模型)的肌肉中进行基因转移后发生的。 Ad的E4区域是增强所必需的,因为在体内和体外存在E1 / E4缺失的Ad的情况下,未观察到来自HDAdCMVDysF1的肌营养不良蛋白表达的增加。这些增强基因产物的表征,然后将其包含在HDAd中,可能需要产生足够的肌营养不良蛋白,以减轻通过HDAd介导的基因转移引起的DMD病理。

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