Kulinski Agnes, Rustaeus Sabina, Vance Jean E
Canadian Institutes for Health Research Group in Molecular and Cell Biology of Lipids, and the Department of Medicine, University of Alberta, Edmonton, Alberta T6G 2S2, Canada.
J Biol Chem. 2002 Aug 30;277(35):31516-25. doi: 10.1074/jbc.M202015200. Epub 2002 Jun 18.
The assembly of very low density lipoproteins in hepatocytes requires the microsomal triacylglycerol transfer protein (MTP). This microsomal lumenal protein transfers lipids, particularly triacylglycerols (TG), between membranes in vitro and has been proposed to transfer TG to nascent apolipoprotein (apo) B in vivo. We examined the role of MTP in the assembly of apoB-containing lipoproteins in cultured murine primary hepatocytes using an inhibitor of MTP. The MTP inhibitor reduced TG secretion from hepatocytes by 85% and decreased the amount of apoB100 in the microsomal lumen, as well as that secreted into the medium, by 70 and 90%, respectively, whereas the secretion of apoB48 was only slightly decreased and the amount of lumenal apoB48 was unaffected. However, apoB48-containing particles formed in the presence of inhibitor were lipid-poor compared with those produced in the absence of inhibitor. We also isolated a pool of apoB-free TG from the microsomal lumen and showed that inhibition of MTP decreased the amount of TG in this pool by approximately 45%. The pool of TG associated with apoB was similarly reduced. However, inhibition of MTP did not directly block TG transfer from the apoB-independent TG pool to partially lipidated apoB in the microsomal lumen. We conclude that MTP is required for TG accumulation in the microsomal lumen and as a source of TG for assembly with apoB, but normal levels of MTP are not required for transferring the bulk of TG to apoB during VLDL assembly in murine hepatocytes.
肝细胞中极低密度脂蛋白的组装需要微粒体三酰甘油转移蛋白(MTP)。这种微粒体腔蛋白在体外可在膜之间转移脂质,尤其是三酰甘油(TG),并且有人提出它在体内可将TG转移至新生载脂蛋白(apo)B。我们使用MTP抑制剂研究了MTP在培养的小鼠原代肝细胞中含apoB脂蛋白组装过程中的作用。MTP抑制剂使肝细胞的TG分泌减少了85%,使微粒体腔中以及分泌到培养基中的apoB100量分别减少了70%和90%,而apoB48的分泌仅略有减少,且腔中apoB48的量未受影响。然而,与无抑制剂时产生的含apoB48颗粒相比,有抑制剂存在时形成的颗粒脂质含量较低。我们还从微粒体腔中分离出了一批不含apoB的TG,并表明抑制MTP可使该批次TG的量减少约45%。与apoB相关的TG批次也同样减少。然而,抑制MTP并未直接阻止TG从独立于apoB的TG批次转移至微粒体腔中部分脂化的apoB。我们得出结论,MTP是微粒体腔中TG积累所必需的,并且是与apoB组装时TG的来源,但在小鼠肝细胞极低密度脂蛋白组装过程中,将大部分TG转移至apoB并不需要正常水平的MTP。