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乳糜微粒大小的脂质颗粒在载脂蛋白B缺乏的情况下形成。

Chylomicron-sized lipid particles are formed in the setting of apolipoprotein B deficiency.

作者信息

Hamilton R L, Wong J S, Cham C M, Nielsen L B, Young S G

机构信息

Cardiovascular Research Institute, University of California, San Francisco 94143-0452, USA.

出版信息

J Lipid Res. 1998 Aug;39(8):1543-57.

PMID:9717714
Abstract

The mechanisms for packaging large quantities of neutral lipids into apolipoprotein (apo) B-containing lipoproteins (chylomicrons or VLDL) are incompletely understood. However, several lines of evidence have suggested that the addition of core lipids to apoB to form a lipoprotein particle within the endoplasmic reticulum (ER) may involve two steps: first, the addition of small amounts of core lipids to membrane-bound apoB, generating a lipid-poor, small apoB-containing particle, and second, the fusion of that particle with a larger, independently formed triglyceride-rich and apoB-free "lipid particle." We sought to test this two-step hypothesis of apoB core lipidation by using electron microscopy to compare chylomicron assembly in mice that are genetically deficient in the ability to synthesize apoB in the intestine to control mice. In 19-day gestational mice (fasting setting) that were deficient in intestinal apoB synthesis, chylomicron-sized lipid particles in the lumen of the enterocyte ER were even more abundant and were 2- to 3-fold larger than those in the enterocytes of normal control mice. However, there were fewer lipid-staining particles in the Golgi apparatus, and many fewer particles in the extracellular space, compared with normal control mice. In both types of newborn suckling mice, much larger lipid particles were assembled within the lumen of the ER. They were however, less abundant and rarely reached the Golgi apparatus in fatty enterocytes of intestines deficient in apoB synthesis. These observations provide in vivo evidence that chylomicron formation could involve the synthesis of apoB-free triglyceride-rich particles within the endoplasmic reticulum (ER) lumen, and that the transport of these lipid particles out of the ER to Golgi apparatus and interstitium is facilitated by the acquisition of apoB.

摘要

将大量中性脂质包装到含载脂蛋白(apo)B的脂蛋白(乳糜微粒或极低密度脂蛋白)中的机制尚未完全明确。然而,多项证据表明,在内质网(ER)中向apoB添加核心脂质以形成脂蛋白颗粒可能涉及两个步骤:首先,向膜结合的apoB添加少量核心脂质,生成脂质含量低的、含apoB的小颗粒;其次,该颗粒与一个更大的、独立形成的富含甘油三酯且不含apoB的“脂质颗粒”融合。我们试图通过电子显微镜比较肠道中缺乏合成apoB能力的基因缺陷小鼠与对照小鼠的乳糜微粒组装情况,来验证apoB核心脂化的这一两步假说。在肠道apoB合成缺陷的19天妊娠小鼠(禁食状态)中,肠上皮细胞内质网腔中的乳糜微粒大小的脂质颗粒甚至更为丰富,且比正常对照小鼠肠上皮细胞中的脂质颗粒大2至3倍。然而,与正常对照小鼠相比,高尔基体中的脂质染色颗粒较少,细胞外空间中的颗粒也少得多。在两种新生哺乳小鼠中,内质网腔内都组装了大得多的脂质颗粒。然而,在apoB合成缺陷的肠道脂肪细胞中,这些颗粒数量较少,很少能到达高尔基体。这些观察结果提供了体内证据,表明乳糜微粒的形成可能涉及在内质网(ER)腔内合成不含apoB的富含甘油三酯的颗粒,并且通过获得apoB促进这些脂质颗粒从内质网运输到高尔基体和间质。

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