首页> 外文期刊>The Journal of biological chemistry >PRAP1 is a novel lipid-binding protein that promotes lipid absorption by facilitating MTTP-mediated lipid transport
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PRAP1 is a novel lipid-binding protein that promotes lipid absorption by facilitating MTTP-mediated lipid transport

机译:PRAP1是一种新型脂质结合蛋白,通过促进MTTP介导的脂质转运来促进脂质吸收

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Microsomal triglyceride transfer protein (MTTP) is an endoplasmic reticulum resident protein that is essential for the assembly and secretion of triglyceride (TG)-rich, apoB-containing lipoproteins. Although the function and structure of mammalian MTTP have been extensively studied, how exactly MTTP transfers lipids to lipid acceptors and whether there are other biomolecules involved in MTTP-mediated lipid transport remain elusive. Here we identify a role in this process for the poorly characterized protein PRAP1. We report that PRAP1 and MTTP are partially colocalized in the endoplasmic reticulum. We observe that PRAP1 directly binds to TG and facilitates MTTP-mediated lipid transfer. A single amino acid mutation at position 85 (E85V) impairs PRAP1's ability to form a ternary complex with TG and MTTP, as well as impairs its ability to facilitate MTTP-mediated apoB-containing lipoprotein assembly and secretion, suggesting that the ternary complex formation is required for PRAP1 to facilitate MTTP-mediated lipid transport. PRAP1 is detectable in chylomicron/VLDL-rich plasma fractions, suggesting that MTTP recognizes PRAP1-bound TG as a cargo and transfers TG along with?PRAP1 to lipid acceptors. Both PRAP1-deficient and E85V knock-in mutant mice fed a chow diet manifested an increase in the length of their small intestines, likely to compensate for challenges in absorbing lipid. Interestingly, both genetically modified mice gained significantly less body weight and fat mass when on high-fat diets compared with littermate controls and were prevented from hepatosteatosis. Together, this study provides evidence that PRAP1 plays an important role in MTTP-mediated lipid transport and lipid absorption.
机译:微粒体甘油三酯转移蛋白(MTTP)是内质网常驻蛋白质,对于甘油三酯(Tg) - 含脂蛋白脂蛋白的组装和分泌至关重要。虽然哺乳动物MTTP的功能和结构已被广泛研究,但是MTTP对脂质受体的含量恰当地转移到脂质受体,以及是否存在参与MTTP介导的脂质传输中的其他生物分子仍然难以捉摸。在这里,我们识别在该过程中表现差的蛋白质PRAP1的过程中的作用。我们报告称PRAP1和MTTP在内质网中部分分开。我们观察到PRAP1直接与TG结合并促进MTTP介导的脂质转移。位置85(E85V)的单个氨基酸突变损害PRAP1与Tg和MTTP形成三元复合物的能力,以及损害其促进含MTTP介导的脂蛋白组装和分泌的能力,表明三元复合物形成是PRAP1需要促进MTTP介导的脂质转运。 PRAP1可在Chylomron / VLDL富含血浆级分中检测到,表明MTTP将PRAP1结合的TG作为货物识别,并将TG与脂质受体一起转移到脂质受体中。 PRAP1缺陷和E85V敲击突变小鼠均喂养味道饮食表现出其小肠长度的增加,可能会弥补吸收脂质的挑战。有趣的是,与枯草窝对照组相比,遗传修饰小鼠在高脂饮食上获得的体重和脂肪质量显着较低,并且被预防来自肝胃癌病变。在一起,本研究提供了证据表明PRAP1在MTTP介导的脂质运输和脂质吸收中起重要作用。

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