Altered glucose homeostasis in proopiomelanocortin-null mouse mutants lacking central and peripheral melanocortin

被引:24
作者
Hochgeschwender, U
Costa, JL
Reed, P
Bui, S
Brennan, MB
机构
[1] Oklahoma Med Res Fdn, Oklahoma City, OK 73104 USA
[2] Univ Denver, Eleanor Roosevelt Inst, Denver, CO 80206 USA
关键词
D O I
10.1210/en.2003-1008
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Prolonged obesity frequently leads to insulin resistance and, eventually, to diabetes. This relationship reflects the integration of fat stores and carbohydrate metabolism and the coordination of central nervous system functions, e. g. appetite, and peripheral metabolism. Recent work suggests that the melanocortin system is involved in this integration; specifically, central administration of melanocyte-stimulating hormone (MSH) decreases, whereas lack of central MSH signaling increases, peripheral insulin resistance. Here we asked whether MSH acting in the periphery has a complementary role in insulin resistance. We tested this in a mouse model where the proopiomelanocortin ( POMC) gene encoding all of the melanocortins has been genetically deleted. The homozygous POMC-null mouse lacks central as well as peripheral MSH signaling; in addition, it lacks adrenal glands and thus is devoid of corticosterone and epinephrine. Here we report that homozygous POMC mutants have normal serum levels of insulin, normal fasting levels of glucose, and normal clearance of glucose in glucose tolerance tests. Thus, insulin production and sensitivity and glucose uptake in peripheral tissues are functioning normally. However, we found a striking inability of the homozygous POMC mutants to recover from insulin-induced hypoglycemia. This defect was in the glucagon-mediated counterregulatory response. Both peripheral administration of an MSH analog and supplementation with corticosterone alleviated the hypoglycemia after insulin challenge, but did not make the obese POMC mutant mice diabetic. We conclude that, similar to the regulation of body weight homeostasis, the regulation of glucose homeostasis requires the integration of both central and peripheral melanocortin signaling systems.
引用
收藏
页码:5194 / 5202
页数:9
相关论文
共 46 条
[1]  
BLAIR SC, 1995, AM J PHYSIOL, V269, P927
[2]  
Butler A A, 2001, Trends Genet, V17, pS50, DOI 10.1016/S0168-9525(01)02481-7
[3]   A unique metabolic syndrome causes obesity in the melanocortin-3 receptor-deficient mouse [J].
Butler, AA ;
Kesterson, RA ;
Khong, K ;
Cullen, MJ ;
Pelleymounter, MA ;
Dekoning, J ;
Baetscher, M ;
Cone, RD .
ENDOCRINOLOGY, 2000, 141 (09) :3518-3521
[4]   Inactivation of the mouse melanocortin-3 receptor results in increased fat mass and reduced lean body mass [J].
Chen, AS ;
Marsh, DJ ;
Trumbauer, ME ;
Frazier, EG ;
Guan, XM ;
Yu, H ;
Rosenblum, CI ;
Vongs, A ;
Feng, Y ;
Cao, LH ;
Metzger, JM ;
Strack, AM ;
Camacho, RE ;
Mellin, TN ;
Nunes, CN ;
Min, W ;
Fisher, J ;
Gopal-Truter, S ;
MacIntyre, DE ;
Chen, HY ;
Van der Ploeg, LHT .
NATURE GENETICS, 2000, 26 (01) :97-102
[5]   Evidence that the diabetes gene encodes the leptin receptor: Identification of a mutation in the leptin receptor gene in db/db mice [J].
Chen, H ;
Charlat, O ;
Tartaglia, LA ;
Woolf, EA ;
Weng, X ;
Ellis, SJ ;
Lakey, ND ;
Culpepper, J ;
Moore, KJ ;
Breitbart, RE ;
Duyk, GM ;
Tepper, RI ;
Morgenstern, JP .
CELL, 1996, 84 (03) :491-495
[6]   CYCLIC MELANOTROPINS .9. 7-D-PHENYLALANINE ANALOGS OF THE ACTIVE-SITE SEQUENCE [J].
CODY, WL ;
MAHONEY, M ;
KNITTEL, JJ ;
HRUBY, VJ ;
CASTRUCCI, AMD ;
HADLEY, ME .
JOURNAL OF MEDICINAL CHEMISTRY, 1985, 28 (05) :583-588
[7]   TARGETED DISRUPTION OF THE GLUCOCORTICOID RECEPTOR GENE BLOCKS ADRENERGIC CHROMAFFIN CELL-DEVELOPMENT AND SEVERELY RETARDS LUNG MATURATION [J].
COLE, TJ ;
BLENDY, JA ;
MONAGHAN, AP ;
KRIEGLSTEIN, K ;
SCHMID, W ;
AGUZZI, A ;
FANTUZZI, G ;
HUMMLER, E ;
UNSICKER, K ;
SCHUTZ, G .
GENES & DEVELOPMENT, 1995, 9 (13) :1608-1621
[8]   PLASMA CORTICOSTERONE CONCENTRATIONS IN DIABETIC (DB) MICE [J].
COLEMAN, DL ;
BURKART, DL .
DIABETOLOGIA, 1977, 13 (01) :25-26
[9]   GLUCOSE COUNTERREGULATION - PREVENTION AND CORRECTION OF HYPOGLYCEMIA IN HUMANS [J].
CRYER, PE .
AMERICAN JOURNAL OF PHYSIOLOGY, 1993, 264 (02) :E149-E155
[10]   The neural network that regulates energy balance is responsive to glucocorticoids and insulin and also regulates HPA axis responsivity at a site proximal to CRF neurons [J].
Dallman, MF ;
Akana, SF ;
Strack, AM ;
Hanson, ES ;
Sebastian, RJ .
STRESS: BASIC MECHANISMS AND CLINICAL IMPLICATIONS, 1995, 771 :730-742