Neither agouti-related protein nor neuropeptide Y is critically required for the regulation of energy homeostasis in mice

被引:325
作者
Qian, S
Chen, H
Weingarth, D
Trumbauer, ME
Novi, DE
Guan, XM
Yu, H
Shen, Z
Feng, Y
Frazier, E
Chen, AR
Camacho, RE
Shearman, LP
Gopal-Truter, S
MacNeil, DJ
Van der Ploeg, LHT
Marsh, DJ
机构
[1] Merck Res Labs, Dept Obes Res, Rahway, NJ 07065 USA
[2] Merck Res Labs, Dept Anim Pharmacol, Rahway, NJ 07065 USA
[3] Merck Res Labs, Dept Comparat Med, Rahway, NJ 07065 USA
关键词
D O I
10.1128/MCB.22.14.5027-5035.2002
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
Agouti-related protein (AgRP), a neuropeptide abundantly expressed in the arcuate nucleus of the hypothalamus, potently stimulates feeding and body weight gain in rodents. AgRP is believed to exert its effects through the blockade of signaling by alpha-melanocyte-stimulating hormone at central nervous system (CNS) melanocortin-3 receptor (Mc3r) and Mc4r. We generated AgRP-deficient (Agrp(-/-)) mice to examine the physiological role of AgRP. Agrp(-/-) mice are viable and exhibit normal locomotor activity, growth rates, body composition, and food intake. Additionally, Agrp(-/-) mice display normal responses to starvation, diet-induced obesity, and the administration of exogenous leptin or neuropeptide Y (NPY). In situ hybridization failed to detect altered CNS expression levels for proopiomelanocortin, Mc3r, Mc4r, or NPY mRNAs in Agrp(-/-) mice. As AgRP and the orexigenic peptide NPY are coexpressed in neurons of the arcuate nucleus, we generated AgRP and NPY double-knockout (Agrp(-/-); Npy(-/-)) mice to determine whether NPY or AgRP plays a compensatory role in Agrp(-/-) or NPY-deficient (Npy(-/-)) mice, respectively. Similarly to mice deficient in either AgRP or NPY,Agrp(-/-);Npy(-/-) mice suffer no obvious feeding or body weight deficits and maintain a normal response to starvation. Our results demonstrate that neither AgRP nor NPY is a critically required orexigenic factor, suggesting that other pathways capable of regulating energy homeostasis can compensate for the loss of both AgRP and NPY.
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页码:5027 / 5035
页数:9
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