Burnett School of Biomedical Sciences, College of Medicine, University of Central Florida, Orlando, Florida 32827, USA.
J Biol Chem. 2013 Feb 15;288(7):5157-65. doi: 10.1074/jbc.M112.434258. Epub 2013 Jan 7.
Nascent very low density lipoprotein (VLDL) exits the endoplasmic reticulum (ER) in a specialized ER-derived vesicle, the VLDL transport vesicle (VTV). Similar to protein transport vesicles (PTVs), VTVs require coat complex II (COPII) proteins for their biogenesis from the ER membranes. Because the size of the VTV is large, we hypothesized that protein(s) in addition to COPII components might be required for VTV biogenesis. Our proteomic analysis, supported by Western blotting data, shows that a 26-kDa protein, CideB, is present in the VTV but not in other ER-derived vesicles such as PTV and pre-chylomicron transport vesicle. Western blotting and immunoelectron microscopy analyses suggest that CideB is concentrated in the VTV. Our co-immunoprecipitation data revealed that CideB specifically interacts with VLDL structural protein, apolipoprotein B100 (apoB100), but not with albumin, a PTV cargo protein. Confocal microscopic data indicate that CideB co-localizes with apoB100 in the ER. Additionally, CideB interacts with COPII components, Sar1 and Sec24. To investigate the role of CideB in VTV biogenesis, we performed an in vitro ER budding assay. We show that the blocking of CideB inhibits VTV budding, indicating a direct requirement of CideB in VTV formation. To confirm our findings, we knocked down CideB in primary hepatocytes and isolated ER and cytosol to examine whether they support VTV budding. Our data suggest that CideB knockdown significantly reduces VTV biogenesis. These findings suggest that CideB forms an intricate COPII coat and regulates the VTV biogenesis.
新生极低密度脂蛋白 (VLDL) 从内质网 (ER) 以特殊的 ER 衍生小泡,即 VLDL 转运小泡 (VTV) 的形式输出。与蛋白转运小泡 (PTV) 类似,VTV 的生物发生需要衣被复合体 II (COPII) 蛋白。由于 VTV 的体积较大,我们假设除了 COPII 成分外,可能还需要其他蛋白来进行 VTV 的生物发生。我们的蛋白质组学分析得到 Western blot 数据的支持,表明 26kDa 的蛋白 CideB 存在于 VTV 中,但不存在于其他 ER 衍生小泡中,如 PTV 和前乳糜微粒转运小泡。Western blot 和免疫电镜分析表明,CideB 集中在 VTV 中。我们的共免疫沉淀数据显示,CideB 特异性地与 VLDL 结构蛋白载脂蛋白 B100 (apoB100) 相互作用,但不与 PTV 货物蛋白白蛋白相互作用。共聚焦显微镜数据表明,CideB 在 ER 中与 apoB100 共定位。此外,CideB 与 COPII 成分 Sar1 和 Sec24 相互作用。为了研究 CideB 在 VTV 生物发生中的作用,我们进行了体外 ER 出芽实验。结果表明,CideB 的阻断抑制了 VTV 的出芽,表明 CideB 直接参与了 VTV 的形成。为了证实我们的发现,我们在原代肝细胞中敲低了 CideB,并分离了 ER 和胞质溶胶,以检查它们是否支持 VTV 的出芽。我们的数据表明,CideB 的敲低显著减少了 VTV 的生物发生。这些发现表明,CideB 形成了一种复杂的 COPII 衣被并调节 VTV 的生物发生。