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首页> 外文期刊>Journal of Lipid Research >Kinetic properties of mouse pancreatic lipase-related protein-2 suggest the mouse may not model human fat digestion.
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Kinetic properties of mouse pancreatic lipase-related protein-2 suggest the mouse may not model human fat digestion.

机译:小鼠胰腺脂肪酶相关蛋白2的动力学特性表明,该小鼠可能无法模拟人的脂肪消化。

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Genetically engineered mice have been employed to understand the role of lipases in dietary fat digestion with the expectation that the results can be extrapolated to humans. However, little is known about the properties of mouse pancreatic triglyceride lipase (mPTL) and pancreatic lipase-related protein-2 (mPLRP2). In this study, both lipases were expressed in Pichia Pastoris GS115, purified to near homogeneity, and their properties were characterized. Mouse PTL displayed the kinetics typical of PTL from other species. Like mPTL, mPLRP2 exhibited strong activity against various triglycerides. In contrast to mPTL, mPLRP2 was not inhibited by increasing bile salt concentration. Colipase stimulated mPLRP2 activity 2- to 4-fold. Additionally, mPTL absolutely required colipase for absorption to a lipid interface, whereas mPLRP2 absorbed fully without colipase. mPLRP2 had full activity in the presence of BSA, whereas BSA completely inhibited mPTL unless colipase was present. All of these properties of mPLRP2 differ from the properties of human PLRP2 (hPLRP2). Furthermore, mPLRP2 appears capable of compensating for mPTL deficiency. These findings suggest that the molecular mechanisms of dietary fat digestion may be different in humans and mice. Thus, extrapolation of dietary fat digestion in mice to humans should be done with care.
机译:基因工程小鼠已被用来了解脂肪酶在饮食脂肪消化中的作用,并期望结果可以推断给人类。但是,关于小鼠胰腺甘油三酸酯脂肪酶(mPTL)和胰腺脂肪酶相关蛋白2(mPLRP2)的性质知之甚少。在这项研究中,两种脂肪酶均在毕赤酵母GS115中表达,并纯化至接近均一,并对其特性进行了表征。小鼠PTL显示了其他物种PTL的典型动力学。像mPTL一样,mPLRP2对各种甘油三酸酯也显示出强大的活性。与mPTL相反,增加胆汁盐浓度不会抑制mPLRP2。固溶酶刺激mPLRP2活性2-4倍。此外,mPTL绝对需要脂酶才能吸收至脂质界面,而mPLRP2则完全吸收而无脂酶。在存在BSA的情况下,mPLRP2具有完全的活性,而BSA完全抑制mPTL,除非存在辅酶。 mPLRP2的所有这些特性都不同于人类PLRP2(hPLRP2)的特性。此外,mPLRP2似乎能够补偿mPTL不足。这些发现表明,饮食脂肪消化的分子机制在人和小鼠中可能不同。因此,应谨慎进行小鼠体内饮食脂肪消化的推断。

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