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微粒体三酰甘油转移蛋白的磷脂转移活性足以支持载脂蛋白B脂蛋白的组装和分泌。

Phospholipid transfer activity of microsomal triacylglycerol transfer protein is sufficient for the assembly and secretion of apolipoprotein B lipoproteins.

作者信息

Rava Paul, Ojakian George K, Shelness Gregory S, Hussain M Mahmood

机构信息

Department of Anatomy and Cell Biology, SUNY Downstate Medical Center, Brooklyn, New York 11203, USA.

出版信息

J Biol Chem. 2006 Apr 21;281(16):11019-27. doi: 10.1074/jbc.M512823200. Epub 2006 Feb 13.

Abstract

Human microsomal triacylglycerol transfer protein (hMTP) is essential for apolipoprotein B (apoB)-lipoprotein assembly and secretion and is known to transfer triacylglycerols, cholesterol esters, and phospholipids. To understand the relative importance of each lipid transfer activity, we compared the ability of hMTP and its Drosophila ortholog (dMTP) to assemble apoB lipoproteins and to transfer various lipids. apoB48 secretion was induced when co-expressed with either hMTP or dMTP in COS cells, and oleic acid supplementation further augmented secretion without altering particle density. C-terminal epitope-tagged dMTP (dMTP-FLAG) facilitated the secretion of apoB polypeptides in the range of apoB48 to apoB72 but was approximately 50% as efficient as hMTP-FLAG. Comparison of lipid transfer activities revealed that although phospholipid transfer was similar in both orthologs, dMTP was unable to transfer neutral lipids. We conclude that the phospholipid transfer activity of MTP is sufficient for the assembly and secretion of primordial apoB lipoproteins and may represent its earliest function evolved for the mobilization of lipid in invertebrates. Identification of MTP inhibitors, which selectively affect transfer of a specific lipid class, may have therapeutic potential.

摘要

人微粒体三酰甘油转移蛋白(hMTP)对于载脂蛋白B(apoB)-脂蛋白的组装和分泌至关重要,并且已知其能转移三酰甘油、胆固醇酯和磷脂。为了解每种脂质转移活性的相对重要性,我们比较了hMTP及其果蝇直系同源物(dMTP)组装apoB脂蛋白和转移各种脂质的能力。当在COS细胞中与hMTP或dMTP共表达时,apoB48的分泌被诱导,补充油酸进一步增加了分泌,而不改变颗粒密度。C端表位标记的dMTP(dMTP-FLAG)促进了apoB48至apoB72范围内的apoB多肽的分泌,但效率约为hMTP-FLAG的50%。脂质转移活性的比较表明,虽然两种直系同源物中的磷脂转移相似,但dMTP无法转移中性脂质。我们得出结论,MTP的磷脂转移活性足以进行原始apoB脂蛋白的组装和分泌,并且可能代表了其在无脊椎动物中脂质动员方面最早进化出的功能。鉴定选择性影响特定脂质类转移的MTP抑制剂可能具有治疗潜力。

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