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微粒体甘油三酯转移蛋白的活性对于McA-RH7777细胞微粒体内甘油三酯的积累至关重要。极低密度脂蛋白组装的统一模型。

The activity of microsomal triglyceride transfer protein is essential for accumulation of triglyceride within microsomes in McA-RH7777 cells. A unified model for the assembly of very low density lipoproteins.

作者信息

Wang Y, Tran K, Yao Z

机构信息

Lipoprotein and Atherosclerosis Group, Department of Pathology & Laboratory Medicine and Biochemistry, University of Ottawa Heart Institute, Ottawa, Ontario K1Y 4W7, Canada.

出版信息

J Biol Chem. 1999 Sep 24;274(39):27793-800. doi: 10.1074/jbc.274.39.27793.

Abstract

Previously, based on distinct requirement of microsomal triglyceride transfer protein (MTP) and kinetics of triglyceride (TG) utilization, we concluded that assembly of very low density lipoproteins (VLDL) containing B48 or B100 was achieved through different paths (Wang, Y. , McLeod, R. S., and Yao, Z. (1997) J. Biol. Chem. 272, 12272-12278). To test if the apparent dual mechanisms were accounted for by apolipoprotein B (apoB) length, we studied VLDL assembly using transfected cells expressing various apoB forms (e.g. B64, B72, B80, and B100). For each apoB, enlargement of lipoprotein to form VLDL via bulk TG incorporation was induced by exogenous oleate, which could be blocked by MTP inhibitor BMS-197636 treatment. While particle enlargement was readily demonstrable by density ultracentrifugation for B64- and B72-VLDL, it was not obvious for B80- and B100-VLDL unless the VLDL was further resolved by cumulative rate flotation into VLDL(1) (S(f) > 100) and VLDL(2) (S(f) 20-100). BMS-197636 diminished B100 secretion in a dose-dependent manner (0.05-0.5 microM) and also blocked the particle enlargement from small to large B100-lipoproteins. These results yield a unified model that can accommodate VLDL assembly with all apoB forms, which invalidates our previous conclusion. To gain a better understanding of the MTP action, we examined the effect of BMS-197636 on lipid and apoB synthesis during VLDL assembly. While BMS-197636 (0.2 microM) entirely abolished B100-VLDL(1) assembly/secretion, it did not affect B100 translation or translocation across the microsomal membrane, nor did it affect TG synthesis and cell TG mass. However, BMS-197636 drastically decreased accumulation of [(3)H]glycerol-labeled TG and TG mass within microsomal lumen. The decreased TG accumulation was not a result of impaired B100-VLDL assembly, because in cells treated with brefeldin A (0.2 microgram/ml), the assembly of B100-VLDL was blocked yet lumenal TG accumulation was normal. Thus, MTP plays a role in facilitating accumulation of TG within microsomes, a prerequisite for the post-translational assembly of TG-enriched VLDL.

摘要

此前,基于微粒体甘油三酯转运蛋白(MTP)的不同需求以及甘油三酯(TG)利用的动力学,我们得出结论,含有B48或B100的极低密度脂蛋白(VLDL)的组装是通过不同途径实现的(Wang, Y., McLeod, R. S., and Yao, Z. (1997) J. Biol. Chem. 272, 12272 - 12278)。为了测试这种明显的双重机制是否由载脂蛋白B(apoB)的长度所导致,我们使用表达各种apoB形式(如B64、B72、B80和B100)的转染细胞研究了VLDL的组装。对于每种apoB,通过外源性油酸诱导脂蛋白通过大量TG掺入而扩大形成VLDL,这可被MTP抑制剂BMS - 197636处理所阻断。虽然通过密度超速离心很容易证明B64 - 和B72 - VLDL的颗粒扩大,但对于B80 - 和B100 - VLDL却不明显,除非通过累积速率浮选将VLDL进一步分离为VLDL(1)(S(f) > 100)和VLDL(2)(S(f) 20 - 100)。BMS - 197636以剂量依赖性方式((0.05 - 0.5)微摩尔)减少B100的分泌,并且还阻断了从小的B型100脂蛋白到大型B型100脂蛋白的颗粒扩大。这些结果产生了一个统一的模型,该模型可以适应所有apoB形式的VLDL组装,这使我们之前的结论无效。为了更好地理解MTP的作用,我们研究了BMS - 197636在VLDL组装过程中对脂质和apoB合成的影响。虽然BMS - 197636((0.2)微摩尔)完全消除了B100 - VLDL(1)的组装/分泌,但它不影响B100的翻译或跨微粒体膜的转运,也不影响TG的合成和细胞内TG的含量。然而,BMS - 197636显著降低了微粒体腔内[(3)H]甘油标记的TG的积累和TG含量。TG积累的减少不是B100 - VLDL组装受损的结果,因为在用布雷菲德菌素A((0.2)微克/毫升)处理的细胞中,B100 - VLDL的组装被阻断,但腔内TG积累正常。因此,MTP在促进微粒体内TG的积累中起作用,这是富含TG的VLDL翻译后组装的先决条件。

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