mTORC1 in AGRP neurons integrates exteroceptive and interoceptive food-related cues in the modulation of adaptive energy expenditure in mice

被引:36
作者
Burke, Luke K. [1 ,2 ]
Darwish, Tamana [1 ,2 ]
Cavanaugh, Althea R. [3 ,4 ]
Virtue, Sam [1 ,2 ]
Roth, Emma [1 ,2 ]
Morro, Joanna [1 ,2 ]
Liu, Shun-Mei [3 ,4 ]
Xia, Jing [5 ]
Dalley, Jeffrey W. [5 ,6 ]
Burling, Keith [1 ,2 ]
Chua, Streamson [3 ,4 ]
Vidal-Puig, Toni [1 ,2 ]
Schwartz, Gary J. [3 ,4 ]
Blouet, Clemence [1 ,2 ]
机构
[1] Univ Cambridge, Metab Res Labs, MRC Metab Dis Unit, Cambridge, England
[2] Univ Cambridge, WT MRC Inst Metab Sci, Cambridge, England
[3] Albert Einstein Coll Med, Dept Med, New York, NY USA
[4] Albert Einstein Coll Med, Dept Neurosci, New York, NY USA
[5] Univ Cambridge, Dept Psychol, Behav & Clin Neurosci Inst, Cambridge, England
[6] Univ Cambridge, Dept Psychiat, Behav & Clin Neurosci Inst, Cambridge, England
基金
美国国家卫生研究院; 英国生物技术与生命科学研究理事会; 英国医学研究理事会;
关键词
BROWN ADIPOSE-TISSUE; DIET-INDUCED THERMOGENESIS; BODY-WEIGHT HOMEOSTASIS; UCP1; MESSENGER-RNA; ARCUATE NUCLEUS; DORSOMEDIAL HYPOTHALAMUS; REGULATES ADIPOSITY; EXPRESSING NEURONS; FEEDING-BEHAVIOR; LEPTIN;
D O I
10.7554/eLife.22848
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Energy dissipation through interscapular brown adipose tissue (iBAT) thermogenesis is an important contributor to adaptive energy expenditure. However, it remains unresolved how acute and chronic changes in energy availability are detected by the brain to adjust iBAT activity and maintain energy homeostasis. Here, we provide evidence that AGRP inhibitory tone to iBAT represents an energy-sparing circuit that integrates environmental food cues and internal signals of energy availability. We establish a role for the nutrient-sensing mTORC1 signaling pathway within AGRP neurons in the detection of environmental food cues and internal signals of energy availability, and in the bi-directional control of iBAT thermogenesis during nutrient deficiency and excess. Collectively, our findings provide insights into how mTORC1 signaling within AGRP neurons surveys energy availability to engage iBAT thermogenesis, and identify AGRP neurons as a neuronal substrate for the coordination of energy intake and adaptive expenditure under varying physiological and environmental contexts.
引用
收藏
页数:22
相关论文
共 67 条
[51]   O-GlcNAc Transferase Enables AgRP Neurons to Suppress Browning of White Fat [J].
Ruan, Hai-Bin ;
Dietrich, Marcelo O. ;
Liu, Zhong-Wu ;
Zimmer, Marcelo R. ;
Li, Min-Dian ;
Singh, Jay Prakash ;
Zhang, Kaisi ;
Yin, Ruonan ;
Wu, Jing ;
Horvath, Tamas L. ;
Yang, Xiaoyong .
CELL, 2014, 159 (02) :306-317
[52]   Identification of a conserved motif required for mTOR signaling [J].
Schalm, SS ;
Blenis, J .
CURRENT BIOLOGY, 2002, 12 (08) :632-639
[53]   Arcuate NPY Controls Sympathetic Output and BAT Function via a Relay of Tyrosine Hydroxylase Neurons in the PVN [J].
Shi, Yan-Chuan ;
Lau, Jackie ;
Lin, Zhou ;
Zhang, Hui ;
Zhai, Lei ;
Sperk, Guenther ;
Heilbronn, Regine ;
Mietzsch, Mario ;
Weger, Stefan ;
Huang, Xu-Feng ;
Enriquez, Ronaldo F. ;
Castillo, Lesley ;
Baldock, Paul A. ;
Zhang, Lei ;
Sainsbury, Amanda ;
Herzog, Herbert ;
Lin, Shu .
CELL METABOLISM, 2013, 17 (02) :236-248
[54]   Chronic CNS administration of Agouti-related protein (Agrp) reduces energy expenditure [J].
Small, CJ ;
Liu, YL ;
Stanley, SA ;
Connoley, IP ;
Kennedy, A ;
Stock, MJ ;
Bloom, SR .
INTERNATIONAL JOURNAL OF OBESITY, 2003, 27 (04) :530-533
[55]   Ribosomal S6K1 in POMC and AgRP Neurons Regulates Glucose Homeostasis but Not Feeding Behavior in Mice [J].
Smith, Mark A. ;
Katsouri, Loukia ;
Irvine, Elaine E. ;
Hankir, Mohammed K. ;
Pedroni, Silvia M. A. ;
Voshol, Peter J. ;
Gordon, Matthew W. ;
Choudhury, Agharul I. ;
Woods, Angela ;
Vidal-Puig, Antonio ;
Carling, David ;
Withers, Dominic J. .
Cell Reports, 2015, 11 (03) :335-343
[56]   AgRP Neurons Control Systemic Insulin Sensitivity via Myostatin Expression in Brown Adipose Tissue [J].
Steculorum, Sophie M. ;
Ruud, Johan ;
Karakasilioti, Ismene ;
Backes, Heiko ;
Ruud, Linda Engstroem ;
Timper, Katharina ;
Hess, Martin E. ;
Tsaousidou, Eva ;
Mauer, Jan ;
Vogt, Merly C. ;
Paeger, Lars ;
Bremser, Stephan ;
Klein, Andreas C. ;
Morgan, Donald A. ;
Frommolt, Peter ;
Brinkkoetter, Paul T. ;
Hammerschmidt, Philipp ;
Benzing, Thomas ;
Rahmouni, Kamal ;
Wunderlich, F. Thomas ;
Kloppenburg, Peter ;
Bruening, Jens C. .
CELL, 2016, 165 (01) :125-138
[57]   Third ventricular coinjection of subthreshold doses of NPY and AgRP stimulate food hoarding and intake and neural activation [J].
Teubner, Brett J. W. ;
Keen-Rhinehart, Erin ;
Bartness, Timothy J. .
AMERICAN JOURNAL OF PHYSIOLOGY-REGULATORY INTEGRATIVE AND COMPARATIVE PHYSIOLOGY, 2012, 302 (01) :R37-R48
[58]   Synaptic release of GABA by AgRP neurons is required for normal regulation of energy balance [J].
Tong, Qingchun ;
Ye, Chian-Ping ;
Jones, Juli E. ;
Elmquist, Joel K. ;
Lowell, Bradford B. .
NATURE NEUROSCIENCE, 2008, 11 (09) :998-1000
[59]   Ghrelin regulates adiposity in white adipose tissue and UCP1 mRNA expression in brown adipose tissue in mice [J].
Tsubone, T ;
Masaki, T ;
Katsuragi, I ;
Tanaka, K ;
Kakuma, T ;
Yoshimatsu, H .
REGULATORY PEPTIDES, 2005, 130 (1-2) :97-103
[60]   Complex Regulation of Mammalian Target of Rapamycin Complex 1 in the Basomedial Hypothalamus by Leptin and Nutritional Status [J].
Villanueva, Eneida C. ;
Munzberg, Heike ;
Cota, Daniela ;
Leshan, Rebecca L. ;
Kopp, Keely ;
Ishida-Takahashi, Ryoko ;
Jones, Justin C. ;
Fingar, Diane C. ;
Seeley, Randy J. ;
Myers, Martin G., Jr. .
ENDOCRINOLOGY, 2009, 150 (10) :4541-4551