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Am J Physiol Gastrointest Liver Physiol 288: G48-G53, 2005. First published August 26, 2004; doi:10.1152/ajpgi.00064.2004
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HORMONES AND SIGNALING

Diurnal changes in intestinal apolipoprotein A-IV and its relation to food intake and corticosterone in rats

Ling Shen,1 Li-yun Ma,2 Xiao-fa Qin,1 Ronald Jandacek,1 Randall Sakai,2 and Min Liu1

1Department of Pathology and Laboratory Medicine, 2Department of Psychiatry, University of Cincinnati College of Medicine, Cincinnati, Ohio

Submitted 9 February 2004 ; accepted in final form 17 August 2004

To further investigate the role of intestinal aplipoprotein A-IV (apo A-IV) in the management of daily food intake, we examined the diurnal patterns in apo A-IV gene and protein expression in freely feeding (FF) and food-restricted (FR; food provided 4 h daily for 4 wk) rats that were killed at 3-h intervals throughout the 24-h diurnal cycle. In FF rats, the intestinal apo A-IV mRNA and protein levels showed a circadian rhythm concomitant with the feeding pettern. The daily pattern of fluctuation of apo A-IV, however, was altered in FR rats, which had a marked increase in intestinal apo A-IV levels during the 4-h feeding period of light phase. In both FF and FR rats, increased plasma corticosterone (Cort) levels temporally coincided with the increasing phase of intestinal apo A-IV mRNA and protein expression. Depletion of Cort by adrenalectomy abolished the diurnal rhythm by decreasing the apo A-IV expression during the dark period but did not change the feeding rhythm. Exposure of adrenalectomized rats to consistent Cort level (50-mg continuous release Cort pellet) resulted in fixed apo A-IV levels throughout the day. These results indicate that intestinal apo A-IV exhibits a diurnal rhythm, which can be regulated by endogenous Cort independently of the light-dark cue. The fact that intestinal apo A-IV levels were consistent with the food intake during the normal diurnal cycle as well as during the cycle of 4-h feeding each day suggests that intestinal apo A-IV is involved in the regulation of daily food intake.

circadian rhythm; intestine



Address for reprint requests and other correspondence: M. Liu, Dept. of Pathology and Laboratory Medicine, Univ. of Cincinnati College of Medicine, Cincinnati, OH 45237–0507 (E-mail: lium{at}uc.edu)




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