The NPY/AgRP neuron and energy homeostasis

被引:173
作者
Morton, GJ [1 ]
Schwartz, MW [1 ]
机构
[1] Univ Washington, Harborview Med Ctr, Dept Med, Seattle, WA 98104 USA
关键词
energy homeostasis; adiposity;
D O I
10.1038/sj.ijo.0801915
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Kennedy hypothesized nearly 50y ago that negative feedback regulation of body fat stores involves hormones that circulate in proportion to adiposity and enter the brain, where they exert inhibitory effects on food intake and energy balance. Recent studies implicate leptin and insulin as 'adiposity signals' to the brain that promote negative energy balance in two ways: by inhibiting 'anabolic' hypothalamic neuronal circuits that stimulate food intake and promote weight gain, and by activating 'catabolic' pathways that reduce food intake and body weight. Chief among candidate 'anabolic' effector pathways is the NPY/AgRP neuron, found only in the hypothalamic arcuate nucleus. These neurons make peptides that potently stimulate food intake not only by increasing neuropeptide Y (NPY) signaling, but by reducing melanocortin signaling via the release of agouti-related peptide (AgRP), an endogenous melanocortin 3/4 receptor antagonist. Since NPY/AgRP neurons express receptors for leptin and insulin and are inhibited by these hormones, they are activated by a decrease of leptin or insulin signaling. Fasting, uncontrolled diabetes and genetic leptin deficiency are examples of conditions in which food intake increases via a mechanism hypothesized to involve NPY/AgRP neurons. Data are reviewed which illustrate the role of these neurons in adaptive and maladaptive states characterized by hyperphagia and weight gain.
引用
收藏
页码:S56 / S62
页数:7
相关论文
共 75 条
[11]   Proopiomelanocortin neurons are direct targets for leptin in the hypothalamus [J].
Cheung, CC ;
Clifton, DK ;
Steiner, RA .
ENDOCRINOLOGY, 1997, 138 (10) :4489-4492
[12]   THE ANATOMY OF NEUROPEPTIDE-Y-CONTAINING NEURONS IN RAT-BRAIN [J].
CHRONWALL, BM ;
DIMAGGIO, DA ;
MASSARI, VJ ;
PICKEL, VM ;
RUGGIERO, DA ;
ODONOHUE, TL .
NEUROSCIENCE, 1985, 15 (04) :1159-1181
[13]   FOOD-DEPRIVATION AND HYPOTHALAMIC NEUROPEPTIDE GENE-EXPRESSION - EFFECTS OF STRAIN BACKGROUND AND THE DIABETES MUTATION [J].
CHUA, SC ;
BROWN, AW ;
KIM, JH ;
HENNESSEY, KL ;
LEIBEL, RL ;
HIRSCH, J .
MOLECULAR BRAIN RESEARCH, 1991, 11 (3-4) :291-299
[14]   Phenotype of fatty due to Gln269Pro mutation in the leptin receptor (Lepr) [J].
Chua, SC ;
White, DW ;
WuPeng, XS ;
Liu, SM ;
Okada, N ;
Kershaw, EE ;
Chung, WK ;
PowerKehoe, L ;
Chua, M ;
Tartaglia, LA ;
Leibel, RL .
DIABETES, 1996, 45 (08) :1141-1143
[15]   NEUROPEPTIDE-Y AND HUMAN PANCREATIC-POLYPEPTIDE STIMULATE FEEDING-BEHAVIOR IN RATS [J].
CLARK, JT ;
KALRA, PS ;
CROWLEY, WR ;
KALRA, SP .
ENDOCRINOLOGY, 1984, 115 (01) :427-429
[16]   EFFECTS OF PARABIOSIS OF OBESE WITH DIABETES AND NORMAL MICE [J].
COLEMAN, DL .
DIABETOLOGIA, 1973, 9 (04) :294-298
[17]   OBESE AND DIABETES - 2 MUTANT-GENES CAUSING DIABETES-OBESITY SYNDROMES IN MICE [J].
COLEMAN, DL .
DIABETOLOGIA, 1978, 14 (03) :141-148
[18]   EVIDENCE AGAINST EITHER A PREMATURE STOP CODON OR THE ABSENCE OF OBESE GENE MESSENGER-RNA IN HUMAN OBESITY [J].
CONSIDINE, RV ;
CONSIDINE, EL ;
WILLIAMS, CJ ;
NYCE, MR ;
MAGOSIN, SA ;
BAUER, TL ;
ROSATO, EL ;
COLBERG, J ;
CARO, JF .
JOURNAL OF CLINICAL INVESTIGATION, 1995, 95 (06) :2986-2988
[19]   Involvement of agouti-related protein, an endogenous antagonist of hypothalamic melanocortin receptor, in leptin action [J].
Ebihara, K ;
Ogawa, Y ;
Katsuura, G ;
Numata, Y ;
Masuzaki, H ;
Satoh, N ;
Tamaki, M ;
Yoshioka, T ;
Hayase, M ;
Matsuoka, N ;
Aizawa-Abe, M ;
Yoshimasa, Y ;
Nakao, K .
DIABETES, 1999, 48 (10) :2028-2033
[20]   EFFECT OF CORTICOTROPIN RELEASING HORMONE AND NEUROPEPTIDE-Y ON ELECTROPHYSIOLOGICAL ACTIVITY OF SYMPATHETIC-NERVES TO INTERSCAPULAR BROWN ADIPOSE-TISSUE [J].
EGAWA, M ;
YOSHIMATSU, H ;
BRAY, GA .
NEUROSCIENCE, 1990, 34 (03) :771-775