L-arginine:glycine amidinotransferase deficiency protects from metabolic syndrome

被引:88
作者
Choe, Chi-un [1 ,2 ,3 ]
Nabuurs, Christine [4 ]
Stockebrand, Malte C. [1 ,2 ]
Neu, Axel [1 ,2 ]
Nunes, Patricia [4 ]
Morellini, Fabio [1 ,2 ]
Sauter, Kathrin [1 ,2 ]
Schillemeit, Stefan [1 ,2 ]
Hermans-Borgmeyer, Irm [5 ]
Marescau, Bart [6 ]
Heerschap, Arend [4 ]
Isbrandt, Dirk [1 ,2 ]
机构
[1] Univ Med Ctr Hamburg Eppendorf, Ctr Mol Neurobiol, D-20246 Hamburg, Germany
[2] Univ Med Ctr Hamburg Eppendorf, Dept Pediat, D-20246 Hamburg, Germany
[3] Univ Med Ctr Hamburg Eppendorf, Dept Neurol, D-20246 Hamburg, Germany
[4] Radboud Univ Nijmegen, Med Ctr, Dept Radiol, NL-6525 ED Nijmegen, Netherlands
[5] Univ Med Ctr Hamburg Eppendorf, Transgen Anim Facil, Ctr Mol Neurobiol Hamburg, D-20246 Hamburg, Germany
[6] Univ Antwerp, Lab Neurochem & Behav, Born Bunge Fdn, B-2020 Antwerp, Belgium
关键词
CREATINE-KINASE; SKELETAL-MUSCLE; GUANIDINOACETATE METHYLTRANSFERASE; AMPK ACTIVATION; INBORN ERROR; AGRP NEURONS; BRAIN; MICE; LIVER; RAT;
D O I
10.1093/hmg/dds407
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
070307 [化学生物学]; 071010 [生物化学与分子生物学];
摘要
Phosphorylated creatine (Cr) serves as an energy buffer for ATP replenishment in organs with highly fluctuating energy demand. The central role of Cr in the brain and muscle is emphasized by severe neurometabolic disorders caused by Cr deficiency. Common symptoms of inborn errors of creatine synthesis or distribution include mental retardation and muscular weakness. Human mutations in l-arginine:glycine amidinotransferase (AGAT), the first enzyme of Cr synthesis, lead to severely reduced Cr and guanidinoacetate (GuA) levels. Here, we report the generation and metabolic characterization of AGAT-deficient mice that are devoid of Cr and its precursor GuA. AGAT-deficient mice exhibited decreased fat deposition, attenuated gluconeogenesis, reduced cholesterol levels and enhanced glucose tolerance. Furthermore, Cr deficiency completely protected from the development of metabolic syndrome caused by diet-induced obesity. Biochemical analyses revealed the chronic Cr-dependent activation of AMP-activated protein kinase (AMPK), which stimulates catabolic pathways in metabolically relevant tissues such as the brain, skeletal muscle, adipose tissue and liver, suggesting a mechanism underlying the metabolic phenotype. In summary, our results show marked metabolic effects of Cr deficiency via the chronic activation of AMPK in a first animal model of AGAT deficiency. In addition to insights into metabolic changes in Cr deficiency syndromes, our genetic model reveals a novel mechanism as a potential treatment option for obesity and type 2 diabetes mellitus.
引用
收藏
页码:110 / 123
页数:14
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