Hematopoietic AMPK β1 reduces mouse adipose tissue macrophage inflammation and insulin resistance in obesity

被引:294
作者
Galic, Sandra [2 ]
Fullerton, Morgan D. [1 ]
Schertzer, Jonathan D. [1 ]
Sikkema, Sarah [1 ]
Marcinko, Katarina [1 ]
Walkley, Carl R. [2 ]
Izon, David [2 ]
Honeyman, Jane [2 ]
Chen, Zhi-Ping [2 ]
van Denderen, Bryce J. [2 ]
Kemp, Bruce E. [2 ]
Steinberg, Gregory R. [1 ,2 ]
机构
[1] McMaster Univ, Dept Med, Div Endocrinol & Metab, Hamilton, ON L8N 3Z5, Canada
[2] Univ Melbourne, St Vincents Inst Med Res, Fitzroy, Vic 3065, Australia
基金
加拿大健康研究院; 英国医学研究理事会;
关键词
ACTIVATED PROTEIN-KINASE; ACETYL-COA CARBOXYLASE; NECROSIS-FACTOR-ALPHA; FATTY-ACID OXIDATION; DIET-INDUCED OBESITY; SKELETAL-MUSCLE; PPAR-GAMMA; ETHIDIUM-BROMIDE; T-CELLS; SENSITIVITY;
D O I
10.1172/JCI58577
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Individuals who are obese are frequently insulin resistant, putting them at increased risk of developing type 2 diabetes and its associated adverse health conditions. The accumulation in adipose tissue of macrophages in an inflammatory state is a hallmark of obesity-induced insulin resistance. Here, we reveal a role for AMPK beta 1 in protecting macrophages from inflammation under high lipid exposure. Genetic deletion of the AMPK beta 1 subunit in mice (referred to herein as beta 1(-/-) mice) reduced macrophage AMPK activity, acetyl-CoA carboxylase phosphorylation, and mitochondrial content, resulting in reduced rates of fatty acid oxidation. beta 1-/- macrophages displayed increased levels of diacylglycerol and markers of inflammation, effects that were reproduced in WT macrophages by inhibiting fatty acid oxidation and, conversely, prevented by pharmacological activatnon of AMPK beta 1-containing complexes. The effect of AMPK beta 1 loss in macrophages was tested in vivo by transplantation of bone marrow from WT or beta 1(-/-) mice into WT recipients. When challenged with a high-fat diet, mice that received beta 1(-/-) bone marrow displayed enhanced adipose tissue macrophage inflammation and liver insulin resistance compared with animals that received WT bone marrow. Thus, activation of AMPK beta 1 and increasing fatty acid oxidation in macrophages may represent a new therapeutic approach for the treatment of insulin resistance.
引用
收藏
页码:4903 / 4915
页数:13
相关论文
共 71 条
[1]   IKK-β links inflammation to obesity-induced insulin resistance [J].
Arkan, MC ;
Hevener, AL ;
Greten, FR ;
Maeda, S ;
Li, ZW ;
Long, JM ;
Wynshaw-Boris, A ;
Poli, G ;
Olefsky, J ;
Karin, M .
NATURE MEDICINE, 2005, 11 (02) :191-198
[2]   Voluntary exercise improves insulin sensitivity and adipose tissue inflammation in diet-induced obese mice [J].
Bradley, Richard L. ;
Jeon, Justin Y. ;
Liu, Fen-Fen ;
Maratos-Flier, Eleftheria .
AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM, 2008, 295 (03) :E586-E594
[3]   Acute exercise activates AMPK and eNOS in the mouse aorta [J].
Cacicedo, Jose M. ;
Gauthier, Marie-Soleil ;
Lebrasseur, Nathan K. ;
Jasuja, Ravi ;
Ruderman, Neil B. ;
Ido, Yasuo .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2011, 301 (04) :H1255-H1265
[4]   Metabolic endotoxemia initiates obesity and insulin resistance [J].
Cani, Patrice D. ;
Amar, Jacques ;
Iglesias, Miguel Angel ;
Poggi, Marjorie ;
Knauf, Claude ;
Bastelica, Delphine ;
Neyrinck, Audrey M. ;
Fava, Francesca ;
Tuohy, Kieran M. ;
Chabo, Chantal ;
Waget, Aurelie ;
Delmee, Evelyne ;
Cousin, Beatrice ;
Sulpice, Thierry ;
Chamontin, Bernard ;
Ferrieres, Jean ;
Tanti, Jean-Francois ;
Gibson, Glenn R. ;
Casteilla, Louis ;
Delzenne, Nathalie M. ;
Alessi, Marie Christine ;
Burcelin, Remy .
DIABETES, 2007, 56 (07) :1761-1772
[5]   AMPK regulates energy expenditure by modulating NAD+ metabolism and SIRT1 activity [J].
Canto, Carles ;
Gerhart-Hines, Zachary ;
Feige, Jerome N. ;
Lagouge, Marie ;
Noriega, Lilia ;
Milne, Jill C. ;
Elliott, Peter J. ;
Puigserver, Pere ;
Auwerx, Johan .
NATURE, 2009, 458 (7241) :1056-U140
[6]   Liver AMP-activated protein kinase and acetyl-CoA carboxylase during and after exercise [J].
Carlson, CL ;
Winder, WW .
JOURNAL OF APPLIED PHYSIOLOGY, 1999, 86 (02) :669-674
[7]   Impaired activation of AMP-kinase and fatty acid oxidation by globular adiponectin in cultured human skeletal muscle of obese type 2 diabetics [J].
Chen, MB ;
McAinch, AJ ;
Macaulay, SL ;
Castelli, LA ;
O'Brien, PE ;
Dixon, JB ;
Cameron-Smith, D ;
Kemp, BE ;
Steinberg, GR .
JOURNAL OF CLINICAL ENDOCRINOLOGY & METABOLISM, 2005, 90 (06) :3665-3672
[8]   Identification and characterization of a small molecule AMPK activator that treats key components of type 2 diabetes and the metabolic syndrome [J].
Cool, Barbara ;
Zinker, Bradley ;
Chiou, William ;
Kifle, Lemma ;
Cao, Ning ;
Perham, Matthew ;
Dickinson, Robert ;
Adler, Andrew ;
Gagne, Gerard ;
Iyengar, Rajesh ;
Zhao, Gang ;
Marsh, Kennan ;
Kym, Philip ;
Jung, Paul ;
Camp, Heidi S. ;
Frevert, Ernst .
CELL METABOLISM, 2006, 3 (06) :403-416
[9]   AMPK β1 Deletion Reduces Appetite, Preventing Obesity and Hepatic Insulin Resistance [J].
Dzamko, Nicolas ;
van Denderen, Bryce J. W. ;
Hevener, Andrea L. ;
Jorgensen, Sebastian Beck ;
Honeyman, Jane ;
Galic, Sandra ;
Chen, Zhi-Ping ;
Watt, Matthew J. ;
Campbell, Duncan J. ;
Steinberg, Gregory R. ;
Kemp, Bruce E. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2010, 285 (01) :115-122
[10]   Lean, but not obese, fat is enriched for a unique population of regulatory T cells that affect metabolic parameters [J].
Feuerer, Markus ;
Herrero, Laura ;
Cipolletta, Daniela ;
Naaz, Afia ;
Wong, Jamie ;
Nayer, Ali ;
Lee, Jongsoon ;
Goldfine, Allison B. ;
Benoist, Christophe ;
Shoelson, Steven ;
Mathis, Diane .
NATURE MEDICINE, 2009, 15 (08) :930-U137