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首页> 外文期刊>The biochemical journal >Adenovirus-mediated delivery into myocytes of muscle glycogen phosphorylase, the enzyme deficient in patients with glycogen-storage disease type V
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Adenovirus-mediated delivery into myocytes of muscle glycogen phosphorylase, the enzyme deficient in patients with glycogen-storage disease type V

机译:腺病毒介导的肌糖原磷酸化酶向肌细胞的传递,该酶是V型糖原贮积病患者的缺陷

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pThe feasibility of using adenovirus as a vector for the introduction of glycogen phosphorylase activity into myocytes has been examined. We used the C2C12 myoblast cell line to assay the impact of phosphorylase gene transfer on myocyte glycogen metabolism and to reproduce iin vitro/i the two strategies proposed for the treatment of muscle genetic diseases, myoblast transplantation and direct DNA delivery. In this study, a recombinant adenovirus containing the muscle glycogen phosphorylase cDNA transcribed from the cytomegalovirus promoter (AdCMV-MGP) was used to transduce both differentiating myoblasts and nondividing mature myotube cells. Muscle glycogen phosphorylase mRNA levels and total phosphorylase activity were increased in both cell types after viral treatment although more efficiently in the differentiated myotubes. The increase in phosphorylase activity was transient (15 days) in myoblasts whereas in myotubes higher levels of phosphorylase gene expression and activity were reached, which remained above control levels for the duration of the study (20 days). The introduction of muscle phosphorylase into myotubes enhanced their glycogenolytic capacity. AdCMV MGP-transduced myotubes had lower glycogen levels under basal conditions. In addition, these engineered cells showed more extensive glycogenolysis in response to both adrenaline, which stimulates glycogen phosphorylase phosphorylation, and carbonyl cyanide m-chlorophenylhydrazone, a metabolic uncoupler. In conclusion, transfer of the muscle glycogen phosphorylase cDNA into myotubes confers an enhanced and regulatable glycogenolytic capacity. Thus this system might be useful for delivery of muscle glycogen phosphorylase and restoration of glycogenolysis in muscle cells from patients with muscle phosphorylase deficiency (McArdle9s disease)./p
机译:>已经研究了使用腺病毒作为载体将糖原磷酸化酶活性引入肌细胞的可行性。我们使用C2C12成肌细胞细胞系分析了磷酸化酶基因转移对肌细胞糖原代谢的影响,并在体外复制了提出的用于治疗肌肉遗传疾病的两种策略,即成肌细胞移植和直接DNA递送。在这项研究中,含有从巨细胞病毒启动子(AdCMV-MGP)转录的肌糖原磷酸化酶cDNA的重组腺病毒被用于转导分化的成肌细胞和未分裂的成熟肌管细胞。病毒处理后,两种细胞类型的肌肉糖原磷酸化酶mRNA水平和总磷酸化酶活性均升高,尽管在分化的肌管中更为有效。在成肌细胞中,磷酸化酶活性的增加是短暂的(15天),而在肌管中则达到了更高水平的磷酸化酶基因表达和活性,在研究期间(20天)一直高于对照水平。将肌肉磷酸化酶引入肌管可增强其糖原分解能力。在基础条件下,AdCMV MGP转导的肌管的糖原水平较低。此外,这些工程改造的细胞对刺激糖原磷酸化酶磷酸化的肾上腺素和新陈代谢解偶联剂羰基氰化物间氯苯hydr均显示出更广泛的糖原分解作用。总之,将肌肉糖原磷酸化酶cDNA转移到肌管中可增强糖原分解能力。因此,该系统可能对肌肉磷酸化酶缺乏症(McArdle9s病)患者的肌肉糖原磷酸化酶的递送和肌肉细胞糖原分解的恢复有用。

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