Obligate Role for Ketone Body Oxidation in Neonatal Metabolic Homeostasis

被引:96
作者
Cotter, David G. [1 ]
d'Avignon, D. Andre [2 ]
Wentz, Anna E. [1 ]
Weber, Mary L. [1 ]
Crawford, Peter A. [1 ]
机构
[1] Washington Univ, Dept Med, Sch Med, St Louis, MO 63110 USA
[2] Washington Univ, Dept Chem, Sch Med, St Louis, MO 63110 USA
基金
美国国家卫生研究院;
关键词
COA TRANSFERASE SCOT; RAT-LIVER MITOCHONDRIA; FATTY-ACID OXIDATION; KETOGENIC DIET; SUCCINYL-COA; ENERGY-METABOLISM; PIG-HEART; AUTOPHAGY; INSULIN; BRAIN;
D O I
10.1074/jbc.M110.192369
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
To compensate for the energetic deficit elicited by reduced carbohydrate intake, mammals convert energy stored in ketone bodies to high energy phosphates. Ketone bodies provide fuel particularly to brain, heart, and skeletal muscle in states that include starvation, adherence to low carbohydrate diets, and the neonatal period. Here, we use novel Oxct1(-/-) mice, which lack the ketolytic enzyme succinyl-CoA:3-oxo-acid CoA-transferase (SCOT), to demonstrate that ketone body oxidation is required for postnatal survival in mice. Although Oxct1(-/-) mice exhibit normal prenatal development, all develop ketoacidosis, hypoglycemia, and reduced plasma lactate concentrations within the first 48 h of birth. In vivo oxidation of C-13-labeled beta-hydroxybutyrate in neonatal Oxct1(-/-) mice, measured using NMR, reveals intact oxidation to acetoacetate but no contribution of ketone bodies to the tricarboxylic acid cycle. Accumulation of acetoacetate yields a markedly reduced beta-hydroxybutyrate:acetoacetate ratio of 1:3, compared with 3:1 in Oxct1(+) littermates. Frequent exogenous glucose administration to actively suckling Oxct1(-/-) mice delayed, but could not prevent, lethality. Brains of newborn SCOT-deficient mice demonstrate evidence of adaptive energy acquisition, with increased phosphorylation of AMP-activated protein kinase alpha, increased autophagy, and 2.4-fold increased in vivo oxidative metabolism of [C-13] glucose. Furthermore, [C-13] lactate oxidation is increased 1.7-fold in skeletal muscle of Oxct1(-/-) mice but not in brain. These results indicate the critical metabolic roles of ketone bodies in neonatal metabolism and suggest that distinct tissues exhibit specific metabolic responses to loss of ketone body oxidation.
引用
收藏
页码:6902 / 6910
页数:9
相关论文
共 64 条
[1]  
Afifi A.K., 2005, Functional Neuroanatomy: Text and Atlas, P326
[2]   ERRγ directs and maintains the transition to oxidative metabolism in the postnatal heart [J].
Alaynick, William A. ;
Kondo, Richard P. ;
Xie, Wen ;
He, Weimin ;
Dufour, Catherine R. ;
Downes, Michael ;
Jonker, Johan W. ;
Giles, Wayne ;
Naviaux, Robert K. ;
Giguere, Vincent ;
Evans, Ronald M. .
CELL METABOLISM, 2007, 6 (01) :13-24
[3]   STUDIES IN HUMAN LACTATION - MILK-COMPOSITION AND DAILY SECRETION RATES OF MACRONUTRIENTS IN THE 1ST YEAR OF LACTATION [J].
ALLEN, JC ;
KELLER, RP ;
ARCHER, P ;
NEVILLE, MC .
AMERICAN JOURNAL OF CLINICAL NUTRITION, 1991, 54 (01) :69-80
[4]  
BARNETT SA, 1971, J REPROD FERTIL, V26, P39, DOI 10.1530/jrf.0.0260039
[5]   Autophagy: assays and artifacts [J].
Barth, Sandra ;
Glick, Danielle ;
Macleod, Kay F. .
JOURNAL OF PATHOLOGY, 2010, 221 (02) :117-124
[6]   Structure of the mammalian CoA transferase from pig heart [J].
Bateman, KS ;
Brownie, ER ;
Wolodko, WT ;
Fraser, ME .
BIOCHEMISTRY, 2002, 41 (49) :14455-14462
[7]   Neonatal hypoglycaemia in severe succinyl-CoA:3-oxoacid CoA-transferase deficiency [J].
Berry, GT ;
Fukao, T ;
Mitchell, GA ;
Mazur, A ;
Ciafre, M ;
Gibson, J ;
Kondo, N ;
Palmieri, MJ .
JOURNAL OF INHERITED METABOLIC DISEASE, 2001, 24 (05) :587-595
[8]   Cardiac complications in pediatric patients on the ketogenic diet [J].
Best, TH ;
Franz, DN ;
Gilbert, DL ;
Nelson, DP ;
Epstein, MR .
NEUROLOGY, 2000, 54 (12) :2328-2330
[9]   KETONE-BODY TRANSPORT IN THE HUMAN NEONATE AND INFANT [J].
BOUGNERES, PF ;
LEMMEL, C ;
FERRE, P ;
BIER, DM .
JOURNAL OF CLINICAL INVESTIGATION, 1986, 77 (01) :42-48
[10]   Diminished hepatic gluconeogenesis via defects in tricarboxylic acid cycle flux in peroxisome proliferator-activated receptor γ coactivator-1α (PGC-1α)-deficient mice [J].
Burgess, Shawn C. ;
Leone, Teresa C. ;
Wende, Adam R. ;
Croce, Michelle A. ;
Chen, Zhouji ;
Sherry, A. Dean ;
Malloy, Craig R. ;
Finck, Brian N. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2006, 281 (28) :19000-19008