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首页> 外文期刊>Molecular genetics and metabolism >The upstream enhancer elements of the G6PC promoter are critical for optimal G6PC expression in murine glycogen storage disease type Ia
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The upstream enhancer elements of the G6PC promoter are critical for optimal G6PC expression in murine glycogen storage disease type Ia

机译:G6PC启动子的上游增强子元件对于Ia型鼠糖原贮积病中G6PC的最佳表达至关重要

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摘要

Glycogen storage disease type-Ia (GSD-Ia) patients deficient in glucose-6-phosphatase-α (G6Pase-α or G6PC) manifest impaired glucose homeostasis characterized by fasting hypoglycemia, growth retardation, hepatomegaly, nephromegaly, hyperlipidemia, hyperuricemia, and lactic acidemia. Two efficacious recombinant adeno-associated virus pseudotype 2/8 (rAAV8) vectors expressing human G6Pase-α have been independently developed. One is a single-stranded vector containing a 2864-bp of the G6PC promoter/enhancer (rAAV8-GPE) and the other is a double-stranded vector containing a shorter 382-bp minimal G6PC promoter/enhancer (rAAV8-miGPE). To identify the best construct, a direct comparison of the rAAV8-GPE and the rAAV8-miGPE vectors was initiated to determine the best vector to take forward into clinical trials. We show that the rAAV8-GPE vector directed significantly higher levels of hepatic G6Pase-α expression, achieved greater reduction in hepatic glycogen accumulation, and led to a better toleration of fasting in GSD-Ia mice than the rAAV8-miGPE vector. Our results indicated that additional control elements in the rAAV8-GPE vector outweigh the gains from the double-stranded rAAV8-miGPE transduction efficiency, and that the rAAV8-GPE vector is the current choice for clinical translation in human GSD-Ia.
机译:缺乏葡萄糖-6-磷酸酶-α(G6Pase-α或G6PC)的糖原贮积病Ia型(GSD-Ia)患者表现为葡萄糖稳态下降,其特征在于禁食低血糖,生长迟缓,肝肿大,肾肿大,高脂血症,高尿酸血症和乳酸酸血症。已经独立开发了两种表达人G6Pase-α的有效重组腺相关病毒假型2/8(rAAV8)载体。一个是包含2864-bp的G6PC启动子/增强子(rAAV8-GPE)的单链载体,另一个是包含较短的382-bp最小G6PC启动子/增强子(rAAV8-miGPE)的双链载体。为了确定最佳构建体,开始了rAAV8-GPE和rAAV8-miGPE载体的直接比较,以确定可用于临床试验的最佳载体。我们显示,rAAV8-GPE载体比rAAV8-miGPE载体定向的肝G6Pase-α表达水平明显更高,肝糖原积累的降低更大,并且对GSD-Ia小鼠的禁食耐受性更好。我们的结果表明,rAAV8-GPE载体中的其他控制元件超过了从双链rAAV8-miGPE转导效率中获得的收益,并且rAAV8-GPE载体是在人GSD-Ia中进行临床翻译的当前选择。

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