高氨血症
谷氨酰胺合成酶
肝性脑病
谷氨酰胺
尿素循环
生物
平衡
氨
新陈代谢
体内
内分泌学
内科学
生物化学
氨基酸
精氨酸
医学
遗传学
肝硬化
作者
Natalia Qvartskhava,Philipp A. Lang,Boris Görg,Vitaly I. Pozdeev,Marina Pascual-Ortiz,Karl S. Lang,Hans J. Bidmon,Elisabeth Lang,Christina Leibrock,Diran Herebıan,Johannes G. Bode,Florian Läng,Dieter Häussinger
标识
DOI:10.1073/pnas.1423968112
摘要
Urea cycle defects and acute or chronic liver failure are linked to systemic hyperammonemia and often result in cerebral dysfunction and encephalopathy. Although an important role of the liver in ammonia metabolism is widely accepted, the role of ammonia metabolizing pathways in the liver for maintenance of whole-body ammonia homeostasis in vivo remains ill-defined. Here, we show by generation of liver-specific Gln synthetase (GS)-deficient mice that GS in the liver is critically involved in systemic ammonia homeostasis in vivo. Hepatic deletion of GS triggered systemic hyperammonemia, which was associated with cerebral oxidative stress as indicated by increased levels of oxidized RNA and enhanced protein Tyr nitration. Liver-specific GS-deficient mice showed increased locomotion, impaired fear memory, and a slightly reduced life span. In conclusion, the present observations highlight the importance of hepatic GS for maintenance of ammonia homeostasis and establish the liver-specific GS KO mouse as a model with which to study effects of chronic hyperammonemia.
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