TARGETED DISRUPTION OF THE BETA(3)-ADRENERGIC RECEPTOR GENE

被引:396
作者
SUSULIC, VS
FREDERICH, RC
LAWITTS, J
TOZZO, E
KAHN, BB
HARPER, ME
HIMMSHAGEN, J
FLIER, JS
LOWELL, BB
机构
[1] BETH ISRAEL HOSP, DEPT MED, DIV ENDOCRINOL, BOSTON, MA 02215 USA
[2] BETH ISRAEL HOSP, DEPT PATHOL, BOSTON, MA 02215 USA
[3] UNIV OTTAWA, DEPT BIOCHEM, OTTAWA, ON K1H 8M5, CANADA
[4] HARVARD UNIV, SCH MED, BOSTON, MA 02215 USA
关键词
D O I
10.1074/jbc.270.49.29483
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
beta(3)-Adrenergic receptors (beta(3)-ARs) are expressed predominantly in white and brown adipose tissue, and beta(3)-selective agonists are potential anti-obesity drugs. However, the role of beta(3)-ARs in normal physiology is unknown. To address this issue, homologous recombination was used to generate mice that lack beta(3)-ARs. This was accomplished by direct injection of a DNA-targeting construct into mouse zygotes. Twenty-three transgenic mice were generated, of which two had targeted disruption of the beta(3)-AR gene. Mice that were homozygous for the disrupted allele had undetectable levels of intact beta(3)-AR mRNA, as assessed by RNase protection assay and Northern blotting, and lacked functional beta(3)-ARs, as demonstrated by complete loss of beta(3)-agonist (CL 316,243)-induced stimulation of adenylate cyclase activity and lipolysis. beta(3)-AR-deficient mice had modestly increased fat stores (females more than males), indicating that beta(3)-ARs play a role in regulating energy balance. Importantly, beta(1) but not beta(2)-AR mRNA levels up-regulated in white and brown adipose tissue of beta(3)-AR-deficient mice (brown more than white), strongly implying that beta(3)-ARs mediate physiologically relevant signaling under normal conditions and that ''cross-talk'' exists between beta(3)-ARs and beta(1)-AR gene expression. Finally, acute treatment of normal mice with CL 316,243 increased serum levels of free fatty acids (FFAs) (3.2-fold) and insulin (140-fold), increased energy expenditure (2-fold), and reduced food intake (by 45%). These effects were completely absent in beta(3)-AR-deficient mice, proving that the actions of CL are mediated exclusively by beta(3)-ARs. beta(3)-AR-deficient mice should be useful as a means to a better understanding of the physiology and pharmacology of beta(3)-ARs.
引用
收藏
页码:29483 / 29492
页数:10
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