Modulation of neuropeptide Y expression in adult mice does not affect feeding

被引:54
作者
Marie, LS
Luquet, S
Cole, TB
Palmiter, RD [1 ]
机构
[1] Univ Washington, Howard Hughes Med Inst, Seattle, WA 98195 USA
[2] Univ Washington, Dept Biochem, Seattle, WA 98195 USA
关键词
body weight regulation; conditional knockout; feeding behavior;
D O I
10.1073/pnas.0509240102
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Despite numerous experiments showing that administration of neuropeptide Y (NPY) to rodents stimulates feeding and obesity, whereas acute interference with NPY signaling disrupts feeding and promotes weight loss, NPY-null mice have essentially normal body weight regulation. These conflicting observations suggest that chronic lack of NPY during development may lead to compensatory changes that normalize regulation of food intake and energy expenditure in the absence of NPY. To test this idea, we used gene targeting to introduce a doxycycline (Dox)-regulated cassette into the Npy locus, such that NPY would be expressed until the mice were given Dox, which blocks transcription. Compared with wild-type mice, adult mice bearing this construct expressed approximate to 4-fold more Npy mRNA, which fell to approximate to 20% of control values within 3 days after treatment with Dox. NPY protein also fell approximate to 20-fold, but the half-life of approximate to 5 days was surprisingly long. The biological effectiveness of these manipulations was demonstrated by showing that overexpression of NPY protected against kainate-induced seizures. Mice chronically overexpressing NPY had normal body weight, and administration of Dox to these mice did not suppress feeding. Furthermore, the refeeding response of these mice after a fast was normal. We conclude that, if there is compensation for changes in NPY levels, then it occurs within the time it takes for Dox treatment to deplete NPY levels. These observations suggest that pharmacological inhibition of NPY signaling is unlikely to have long-lasting effects on body weight.
引用
收藏
页码:18632 / 18637
页数:6
相关论文
共 57 条
[1]   Gut hormone PYY3-36 physiologically inhibits food intake [J].
Batterham, RL ;
Cowley, MA ;
Small, CJ ;
Herzog, H ;
Cohen, MA ;
Dakin, CL ;
Wren, AM ;
Brynes, AE ;
Low, MJ ;
Ghatei, MA ;
Cone, RD ;
Bloom, SR .
NATURE, 2002, 418 (6898) :650-654
[2]   Neuropeptides and obesity [J].
Beck, B .
NUTRITION, 2000, 16 (10) :916-923
[3]   Respiration and parturition affected by conditional overexpression of the Ca2+-activated K+ channel subunit, SK3 [J].
Bond, CT ;
Sprengel, R ;
Bissonnette, JM ;
Kaufmann, WA ;
Pribnow, D ;
Neelands, T ;
Storck, T ;
Baetscher, M ;
Jerecic, J ;
Maylie, J ;
Knaus, HG ;
Seeburg, PH ;
Adelman, JP .
SCIENCE, 2000, 289 (5486) :1942-1946
[4]   ALTERED EXPRESSION OF HYPOTHALAMIC NEUROPEPTIDE MESSENGER-RNAS IN FOOD-RESTRICTED AND FOOD-DEPRIVED RATS [J].
BRADY, LS ;
SMITH, MA ;
GOLD, PW ;
HERKENHAM, M .
NEUROENDOCRINOLOGY, 1990, 52 (05) :441-447
[5]   THE IMMUNOLOGICAL IMPAIRMENT OF ARCUATE NEUROPEPTIDE-Y NEURONS BY RICIN-A CHAIN PRODUCES PERSISTENT DECREASE OF FOOD-INTAKE AND BODY-WEIGHT [J].
BURLET, A ;
GROUZMANN, E ;
MUSSE, N ;
FERNETTE, B ;
NICOLAS, JP ;
BURLET, C .
NEUROSCIENCE, 1995, 66 (01) :151-159
[6]   WRYamide, a NPY-based tripeptide that antagonizes feeding in rats [J].
Chance, WT ;
Tao, ZY ;
Sheriff, S ;
Balasubramaniam, A .
BRAIN RESEARCH, 1998, 803 (1-2) :39-43
[7]   Orexigenic action of peripheral ghrelin is mediated by neuropeptide Y and agouti-related protein [J].
Chen, HY ;
Trumbauer, ME ;
Chen, AS ;
Weingarth, DT ;
Adams, JR ;
Frazier, EG ;
Shen, Z ;
Marsh, DJ ;
Feighner, SD ;
Guan, XM ;
Ye, Z ;
Nargund, RP ;
Smith, RG ;
Van Der Ploeg, LHT ;
Howard, AD ;
Macneil, DJ ;
Qian, S .
ENDOCRINOLOGY, 2004, 145 (06) :2607-2612
[8]   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
[9]   EFFECT OF 4TH VENTRICULAR NEUROPEPTIDE-Y AND PEPTIDE-YY ON INGESTIVE AND OTHER BEHAVIORS [J].
CORP, ES ;
MELVILLE, LD ;
GREENBERG, D ;
GIBBS, J ;
SMITH, GP .
AMERICAN JOURNAL OF PHYSIOLOGY, 1990, 259 (02) :R317-R323
[10]   Leptin activates anorexigenic POMC neurons through a neural network in the arcuate nucleus [J].
Cowley, MA ;
Smart, JL ;
Rubinstein, M ;
Cordán, MG ;
Diano, S ;
Horvath, TL ;
Cone, RD ;
Low, MJ .
NATURE, 2001, 411 (6836) :480-484