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首页> 外文期刊>Journal of inherited metabolic disease >Hepatic glutamine synthetase augmentation enhances ammonia detoxification
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Hepatic glutamine synthetase augmentation enhances ammonia detoxification

机译:肝谷氨酰胺合成酶增强增强了氨解毒

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摘要

Abstract The urea cycle and glutamine synthetase (GS) are the two main pathways for waste nitrogen removal and their deficiency results in hyperammonemia. Here, we investigated the efficacy of liver‐specific GS overexpression for therapy of hyperammonemia. To achieve hepatic GS overexpression, we generated a helper‐dependent adenoviral (HDAd) vector expressing the murine GS under the control of a liver‐specific expression cassette (HDAd‐GS). Compared to mice injected with a control vector expressing an unrelated reporter gene (HDAd‐alpha‐fetoprotein), wild‐type mice with increased hepatic GS showed reduced blood ammonia levels and a concomitant increase of blood glutamine after intraperitoneal injections of ammonium chloride, whereas blood urea was unaffected. Moreover, injection of HDAd‐GS reduced blood ammonia levels at baseline and protected against acute hyperammonemia following ammonia challenge in a mouse model with conditional hepatic deficiency of carbamoyl phosphate synthetase 1 ( Cps1 ), the initial and rate‐limiting step of ureagenesis. In summary, we found that upregulation of hepatic GS reduced hyperammonemia in wild‐type and Cps1 ‐deficient mice, thus confirming a key role of GS in ammonia detoxification. These results suggest that hepatic GS augmentation therapy has potential for treatment of both primary and secondary forms of hyperammonemia.
机译:摘要尿素循环和谷氨酰胺合成酶(GS)是废氮去除的两个主要途径,其缺乏导致高血肿性。在这里,我们研究了肝脏特异性GS过表达对高血症治疗的疗效。为了实现肝脏GS过表达,我们在肝脏特异性表达盒(HDAD-GS)的控制下产生表达鼠GS的辅助依赖性腺病毒(HDAD)载体。与用表达无关的报告基因的对照载体(HDAD-α-胎儿)的小鼠相比,具有增加的肝GS的野生型小鼠显示出血液氨水量降低,腹腔注射氯化铵后血谷氨酰胺的伴随增加,而血液尿素不受影响。此外,在基线下注射HDAD-GS降低血液氨水量,并在小鼠模型中患有氨基酰磷酸盐合成酶1(CPS1)的条件性肝脏缺乏,对氨症致攻击,尿素缺陷的初始和速率限制步骤。总之,我们发现肝脏GS的上调在野生型和CPS1 -Deficio小鼠中减少了高肝癌,从而证实了GS在氨解毒中的关键作用。这些结果表明,肝GS增强治疗具有治疗初级和二级形式的高产血症的潜力。

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