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首页> 外文期刊>Arteriosclerosis, thrombosis, and vascular biology >Expression of Sar1b enhances chylomicron assembly and key components of the coat protein complex II system driving vesicle budding.
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Expression of Sar1b enhances chylomicron assembly and key components of the coat protein complex II system driving vesicle budding.

机译:Sar1b的表达增强了乳糜微粒的组装和外壳蛋白复合物II系统驱动囊泡出芽的关键成分。

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OBJECTIVE: SAR1b plays a significant role in the assembly, organization, and function of the coat protein complex II, a critical complex for the transport of proteins from the endoplasmic reticulum to the Golgi. Recently, mutations in SARA2 have been associated with lipid absorption disorders. However, functional studies on Sar1b-mediated lipid synthesis pathways and lipoprotein packaging have not been performed. METHODS AND RESULTS: Sar1b was overexpressed in Caco-2/15 cells and resulted in significantly augmented triacylglycerol, cholesteryl ester, and phospholipid esterification and secretion and markedly enhanced chylomicron production. It also stimulated monoacylglycerol acyltransferase/diacylglycerol acyltransferase activity and enhanced apolipoprotein B-48 protein synthesis, as well as elevated microsomal triglyceride transfer protein activity. Along with the enhanced chylomicrons, microsomes were characterized by abundant Sec12, the guanine exchange factor that promotes the localization of Sar1b in the endoplasmic reticulum. Furthermore, coimmunoprecipitation experiments revealed high levels of the complex components Sec23/Sec24 and p125, the Sec23-interacting protein. Finally, a pronounced interaction of Sec23/Sec24 with sterol regulatory element binding protein (SREBP) cleavage-activating protein and SREBP-1c was noted, thereby permitting the transfer of the transcription factor SREBP-1c to the nucleus for the activation of genes involved in lipid metabolism. CONCLUSION: Our data suggest that Sar1b expression may promote intestinal lipid transport with the involvement of the coat protein complex II network and the processing of SREBP-1c.
机译:目的:SAR1b在外壳蛋白复合物II的组装,组织和功能中起重要作用,外壳蛋白复合物II是蛋白质从内质网向高尔基体运输的关键复合物。最近,SARA2中的突变与脂质吸收障碍有关。但是,尚未进行有关Sar1b介导的脂质合成途径和脂蛋白包装的功能研究。方法和结果:Sar1b在Caco-2 / 15细胞中过表达,导致三酰甘油,胆固醇酯,磷脂酯化和分泌显着增加,并显着提高了乳糜微粒的产生。它还刺激了单酰基甘油酰基转移酶/二酰基甘油酰基转移酶活性,并增强了载脂蛋白B-48蛋白的合成,并提高了微粒体甘油三酸酯转移蛋白的活性。随着乳糜微粒的增强,微粒体的特征还在于丰富的Sec12,鸟嘌呤交换因子可促进Sar1b在内质网中的定位。此外,共免疫沉淀实验显示,高水平的复杂成分Sec23 / Sec24和p125(与Sec23相互作用的蛋白质)。最后,注意到Sec23 / Sec24与固醇调节元件结合蛋白(SREBP)裂解激活蛋白和SREBP-1c的显着相互作用,从而允许转录因子SREBP-1c转移到细胞核,从而激活与脂质代谢。结论:我们的数据表明,Sar1b表达可能通过外壳蛋白复合物II网络和SREBP-1c的加工促进肠道脂质的运输。

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