Hypothalamic orexin neurons regulate arousal according to energy balance in mice

被引:707
作者
Yamanaka, A
Beuckmann, CT
Willie, JT
Hara, J
Tsujino, N
Mieda, M
Tominaga, M
Yagami, K
Sugiyama, F
Goto, K
Yanagisawa, M [1 ]
Sakurai, T
机构
[1] Univ Tsukuba, Inst Basic Med Sci, Tsukuba, Ibaraki 3058575, Japan
[2] Univ Tsukuba, Dept Pharmacol, Tsukuba, Ibaraki 3058575, Japan
[3] Univ Tsukuba, Dept Mol Neurobiol, Tsukuba, Ibaraki 3058575, Japan
[4] Univ Tsukuba, Lab Anim Res Ctr, Tsukuba, Ibaraki 3058575, Japan
[5] Japan Sci & Technol Corp, Erato Yanagisawa Orphan Receptor Project, Tokyo 1350064, Japan
[6] Univ Texas, SW Med Ctr, Howard Hughes Med Inst, Dept Mol Genet, Dallas, TX 75390 USA
关键词
D O I
10.1016/S0896-6273(03)00331-3
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Mammals respond to reduced food availability by becoming more wakeful and active, yet the central pathways regulating arousal and instinctual motor programs (such as food seeking) according to homeostatic need are not well understood. We demonstrate that hypothalamic orexin neurons monitor indicators of energy balance and mediate adaptive augmentation of arousal in response to fasting. Activity of isolated orexin neurons is inhibited by glucose and leptin and stimulated by ghrelin. Orexin expression of normal and ob/ob mice correlates negatively with changes in blood glucose, leptin, and food intake. Transgenic mice, in which orexin neurons are ablated, fail to respond to fasting with increased wakefulness and activity. These findings indicate that orexin neurons provide a crucial link between energy balance and arousal.
引用
收藏
页码:701 / 713
页数:13
相关论文
共 68 条
[61]  
Wang LX, 2002, NEUROSCI LETT, V325, P47
[62]   Cardiovascular responses to caloric restriction and thermoneutrality in C57BL/6J mice [J].
Williams, TD ;
Chambers, JB ;
Henderson, RP ;
Rashotte, ME ;
Overton, JM .
AMERICAN JOURNAL OF PHYSIOLOGY-REGULATORY INTEGRATIVE AND COMPARATIVE PHYSIOLOGY, 2002, 282 (05) :R1459-R1467
[63]   Distinct narcolepsy syndromes in Orexin receptor-2 and Orexin null mice:: Molecular genetic dissection of non-REM and REM sleep regulatory processes [J].
Willie, JT ;
Chemelli, RM ;
Sinston, CM ;
Tokita, H ;
Williams, SC ;
Kisanuki, YY ;
Marcus, JN ;
Lee, C ;
Elmquist, JK ;
Kohlmeier, KA ;
Leonard, CS ;
Richardson, JA ;
Hammer, RE ;
Yanagisawa, M .
NEURON, 2003, 38 (05) :715-730
[64]   To eat or to sleep? Orexin in the regulation of feeding and wakefulness [J].
Willie, JT ;
Chemelli, RM ;
Sinton, CM ;
Yanagisawa, M .
ANNUAL REVIEW OF NEUROSCIENCE, 2001, 24 :429-458
[65]   Down regulation of the prepro-orexin gene expression in genetically obese mice [J].
Yamamoto, Y ;
Ueta, Y ;
Date, Y ;
Nakazato, M ;
Hara, Y ;
Serino, R ;
Nomura, M ;
Sibuya, I ;
Matsukura, S ;
Yamashita, H .
MOLECULAR BRAIN RESEARCH, 1999, 65 (01) :14-22
[66]   Orexin-induced food intake involves neuropeptide Y pathway [J].
Yamanaka, A ;
Kunii, K ;
Nambu, T ;
Tsujino, N ;
Sakai, A ;
Matsuzaki, I ;
Miwa, Y ;
Goto, K ;
Sakurai, T .
BRAIN RESEARCH, 2000, 859 (02) :404-409
[67]   Regulation of orexin neurons by the monoaminergic and cholinergic systems [J].
Yamanaka, A ;
Muraki, Y ;
Tsujino, N ;
Goto, K ;
Sakurai, T .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2003, 303 (01) :120-129
[68]   Fluctuation of extracellular hypocretin-1 (orexin A) levels in the rat in relation to the light-dark cycle and sleep-wake activities [J].
Yoshida, Y ;
Fujiki, N ;
Nakajima, T ;
Ripley, B ;
Matsumura, H ;
Yoneda, H ;
Mignot, E ;
Nishino, S .
EUROPEAN JOURNAL OF NEUROSCIENCE, 2001, 14 (07) :1075-1081