与能量平衡有关的次级β-羟丁酸代谢途径

Maria Dolores Moya-Garzon, Mengjie Wang, Veronica L Li, Wei Wei, Alan Sheng-Hwa Tung, Steffen H Raun, Meng Zhao, Laetitia Coassolo, Hashim Islam, Barbara Oliveira, Yuqin Dai, Jan Spaas, Antonio Delgado-Gonzalez, Kenyi Donoso, Aurora Alvarez-Buylla, Francisco Franco-Montalban, Anudari Letian, Catherine Ward, Lichao Liu, Katrin J Svensson, Emily L Goldberg, Christopher D Gardner, Jonathan P Little, Steven M Banik, Yong Xu, Jonathan Z Long
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摘要

β-羟丁酸(BHB)是一种丰富的酮体。迄今为止,所有已知的 BHB 代谢途径都涉及 BHB 和初级能量中间产物的相互转化。在这里,我们发现 CNDP2 通过 BHB 和游离氨基酸的酶促共轭作用,控制着一种以前未曾描述过的二级 BHB 代谢途径。这种 BHB-酰化反应会产生一系列内源性酮代谢物,即 BHB-氨基酸。小鼠 CNDP2 基因消减会消除组织氨基酸的 BHB-酰化活性并降低 BHB-氨基酸水平。给肥胖小鼠注射 BHB-Phe(最丰富的 BHB-氨基酸)可激活下丘脑和脑干的神经群,抑制摄食和体重。相反,CNDP2-KO 小鼠在酮病刺激下会表现出食物摄入量和体重增加。依赖 CNDP2 的氨基酸 BHB-酰化和 BHB-氨基酸代谢产物在人类中也是保守的。因此,BHB 的代谢途径不仅包括初级代谢,还包括与能量平衡有关的次级酮代谢产物。
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A secondary β-hydroxybutyrate metabolic pathway linked to energy balance
β-hydroxybutyrate (BHB) is an abundant ketone body. To date, all known pathways of BHB metabolism involve interconversion of BHB and primary energy intermediates. Here we show that CNDP2 controls a previously undescribed secondary BHB metabolic pathway via enzymatic conjugation of BHB and free amino acids. This BHB-ylation reaction produces a family of endogenous ketone metabolites, the BHB-amino acids. Genetic ablation of CNDP2 in mice eliminates tissue amino acid BHB-ylation activity and reduces BHB-amino acid levels. Administration of BHB-Phe, the most abundant BHB-amino acid, to obese mice activates neural populations in the hypothalamus and brainstem and suppresses feeding and body weight. Conversely, CNDP2-KO mice exhibit increased food intake and body weight upon ketosis stimuli. CNDP2-dependent amino acid BHB-ylation and BHB-amino acid metabolites are also conserved in humans. Therefore, the metabolic pathways of BHB extend beyond primary metabolism and include secondary ketone metabolites linked to energy balance.
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