Pancreatic function in CCK-deficient mice: adaptation to dietary protein does not require CCK

被引:71
作者
Lacourse, KA
Swanberg, LJ
Gillespie, PJ
Rehfeld, JF
Saunders, TL
Samuelson, LC
机构
[1] Univ Michigan, Dept Physiol, Ann Arbor, MI 48109 USA
[2] Rigshosp, Dept Clin Biochem, DK-2100 Copenhagen, Denmark
来源
AMERICAN JOURNAL OF PHYSIOLOGY-GASTROINTESTINAL AND LIVER PHYSIOLOGY | 1999年 / 276卷 / 05期
关键词
gastrointestinal hormones; knockout mice; acinar cells; digestive enzymes; pancreatic hypertrophy;
D O I
10.1152/ajpgi.1999.276.5.G1302
中图分类号
R57 [消化系及腹部疾病];
学科分类号
摘要
A CCK-deficient mouse mutant generated by gene targeting in embryonic stem cells was analyzed to determine the importance of CCK for growth and function of the exocrine pancreas and for pancreatic adaptation to dietary changes. RIAs confirmed the absence of CCK in mutant mice and demonstrated that tissue concentrations of the related peptide gastrin were normal. CCK-deficient mice are viable and fertile and exhibit normal body weight. Pancreas weight and cellular morphology appeared normal, although pancreatic amylase content was elevated in CCK-deficient mice. We found that a high-protein diet increased pancreatic weight, protein, DNA, and chymotrypsinogen content; similarly in CCK-deficient and wild-type mice. This result demonstrates that CCK is not required for protein-induced pancreatic hypertrophy and increased proteolytic enzyme content. This is a novel finding, since CCK has been considered the primary mediator of dietary protein-induced changes in the pancreas. Altered somatostatin concentrations in brain and duodenum of CCK-deficient mice suggest that other regulatory pathways are modified to compensate far the CCK deficiency.
引用
收藏
页码:G1302 / G1309
页数:8
相关论文
共 51 条
[1]   The stomach is a source of leptin [J].
Bado, A ;
Levasseur, S ;
Attoub, S ;
Kermorgant, S ;
Laigneau, JP ;
Bortoluzzi, MN ;
Moizo, L ;
Lehy, T ;
Guerre-Millo, M ;
Le Marchand-Brustel, Y ;
Lewin, MJM .
NATURE, 1998, 394 (6695) :790-793
[2]   Synergistic interaction between leptin and cholecystokinin to reduce short-term food intake in lean mice [J].
Barrachina, MD ;
Martinez, V ;
Wang, LX ;
Wei, JY ;
Tache, Y .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (19) :10455-10460
[3]  
BAUM BJ, 1990, METHOD ENZYMOL, V192, P26
[4]   ADAPTATION OF THE EXOCRINE PANCREAS TO DIET [J].
BRANNON, PM .
ANNUAL REVIEW OF NUTRITION, 1990, 10 :85-105
[5]  
BURNHAM DB, 1982, J BIOL CHEM, V257, P523
[6]   EFFECTS OF NUTRITIONAL STATE AND OF ADMINISTRATION OF GLUCOSE, GLIBENCLAMIDE OR DIAZOXIDE ON STORAGE OF AMYLASE IN MOUSE PANCREAS [J].
DANIELSSON, A .
DIGESTION, 1974, 10 (02) :150-161
[7]   Canine prosomatostatin: Isolation of a cDNA, regulation of gene expression, and characterization of post-translational processing intermediates [J].
Dickinson, CJ ;
DelValle, J ;
Todisco, A ;
Gantz, I ;
Tong, L ;
Finniss, S ;
Yamada, T .
REGULATORY PEPTIDES, 1996, 67 (03) :145-152
[8]   ACTION OF CHYMOTRYPSIN ON 2 NEW CHROMOGENIC SUBSTRATES [J].
ERLANGER, BF ;
EDEL, F ;
COOPER, AG .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1966, 115 (01) :206-&
[9]   Impaired gastric acid secretion in gastrin-deficient mice [J].
Friis-Hansen, L ;
Sundler, F ;
Li, Y ;
Gillespie, PJ ;
Saunders, TL ;
Greenson, JK ;
Owyang, C ;
Rehfeld, JF ;
Samuelson, LC .
AMERICAN JOURNAL OF PHYSIOLOGY-GASTROINTESTINAL AND LIVER PHYSIOLOGY, 1998, 274 (03) :G561-G568
[10]   CHOLECYSTOKININ IS RESPONSIBLE FOR GROWTH OF THE PANCREAS AFTER PANCREATICOBILIARY DIVERSION IN RATS [J].
GASSLANDER, T ;
AXELSON, J ;
HAKANSON, R ;
IHSE, I ;
LILJA, I ;
REHFELD, JF .
SCANDINAVIAN JOURNAL OF GASTROENTEROLOGY, 1990, 25 (10) :1060-1065