D'Agostino Dymphna, Cordle Richard A, Kullman John, Erlanson-Albertsson Charlotte, Muglia Louis J, Lowe Mark E
Department of Pediatrics, Washington University School of Medicine, 660 South Euclid Ave., St. Louis, MO 63110, USA.
J Biol Chem. 2002 Mar 1;277(9):7170-7. doi: 10.1074/jbc.M108328200. Epub 2001 Dec 20.
In vitro, pancreatic triglyceride lipase requires colipase to restore activity in the presence of inhibitors, like bile acids. Presumably, colipase performs the same function in vivo, but little data supports that notion. Other studies suggest that colipase or its proform, procolipase, may have additional functions in appetite regulation or in fat digestion during the newborn period when pancreatic triglyceride lipase is not expressed. To identify the physiological role of procolipase, we created a mouse model of procolipase deficiency. The Clps-/- mice appeared normal at birth, but unexpectedly 60% died within the first 2 weeks of life. The survivors had fat malabsorption as newborns and as adults, but only when fed a high fat diet. On a low fat diet, the Clps-/- mice did not have steatorrhea. The Clps-/- pups had impaired weight gain and weighed 30% less than Clps+/+ or Clps+/- littermates. After weaning, the Clps-/- mice had normal rate of weight gain, but they maintained a reduced body weight compared with normal littermates even on a low fat diet. Despite the reduced body weight, the Clps-/- mice had a normal body temperature. To maintain their weight gain in the presence of steatorrhea, the Clps-/- mice had hyperphagia on a high fat diet. Clps-/- mice had normal intake on a low fat diet. We conclude that, in addition to its critical role in fat digestion, procolipase has essential functions in postnatal development and in regulating body weight set point.
在体外,胰腺甘油三酯脂肪酶在存在抑制剂(如胆汁酸)的情况下需要辅脂酶来恢复活性。据推测,辅脂酶在体内执行相同的功能,但几乎没有数据支持这一观点。其他研究表明,辅脂酶或其前体形式——前辅脂酶,在新生儿期胰腺甘油三酯脂肪酶未表达时,可能在食欲调节或脂肪消化中具有额外功能。为了确定前辅脂酶的生理作用,我们创建了一个前辅脂酶缺陷的小鼠模型。Clps-/-小鼠出生时看起来正常,但出乎意料的是,60%在出生后的前2周内死亡。存活下来的小鼠在新生儿期和成年期都有脂肪吸收不良,但仅在喂食高脂肪饮食时出现。在低脂饮食下,Clps-/-小鼠没有脂肪泻。Clps-/-幼崽体重增加受损,比Clps+/+或Clps+/-同窝小鼠轻30%。断奶后,Clps-/-小鼠体重增加率正常,但即使在低脂饮食下,与正常同窝小鼠相比,它们的体重仍有所降低。尽管体重降低,但Clps-/-小鼠体温正常。为了在脂肪泻的情况下维持体重增加,Clps-/-小鼠在高脂肪饮食下出现食欲亢进。Clps-/-小鼠在低脂饮食下摄入量正常。我们得出结论,除了在脂肪消化中的关键作用外,前辅脂酶在出生后发育和调节体重设定点方面具有重要功能。