L-arginine homeostasis governs adult neural stem cell activation by modulating energy metabolism in vivo

L-精氨酸稳态通过调节体内能量代谢来调控成年神经干细胞的活化。

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作者:Mingyue Xu ,Ye Guo ,Min Wang ,Xing Luo ,Xuning Shen ,Zhimin Li ,Lei Wang ,Weixiang Guo

Abstract

Neurogenesis in the developing and adult brain is intimately linked to remodeling of cellular metabolism. However, it is still unclear how distinct metabolic programs and energy sources govern neural stem cell (NSC) behavior and subsequent neuronal differentiation. Here, we found that adult mice lacking the mitochondrial urea metabolism enzyme, Arginase-II (Arg-II), exhibited NSC overactivation, thereby leading to accelerated NSC pool depletion and decreased hippocampal neurogenesis over time. Mechanistically, Arg-II deficiency resulted in elevated L-arginine levels and induction of a metabolic shift from glycolysis to oxidative phosphorylation (OXPHOS) caused by impaired attachment of hexokinase-I to mitochondria. Notably, selective inhibition of OXPHOS ameliorated NSC overactivation and restored abnormal neurogenesis in Arg-II deficient mice. Therefore, Arg-II-mediated intracellular L-arginine homeostasis directly influences the metabolic fitness of neural stem cells that is essential to maintain neurogenesis with age. Keywords: Adult neurogenesis; Arginase-II; Hexokinase; L-arginine; NSC pool.

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