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Model systems for studying the assembly trafficking and secretion of apoB lipoproteins using fluorescent fusion proteins

机译:使用荧光融合蛋白研究组装贩运和分泌Apob脂蛋白的模型系统

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摘要

apoB exists as apoB100 and apoB48, which are mainly found in hepatic VLDLs and intestinal chylomicrons, respectively. Elevated plasma levels of apoB-containing lipoproteins (Blps) contribute to coronary artery disease, diabetes, and other cardiometabolic conditions. Studying the mechanisms that drive the assembly, intracellular trafficking, secretion, and function of Blps remains challenging. Our understanding of the intracellular and intraorganism trafficking of Blps can be greatly enhanced, however, with the availability of fusion proteins that can help visualize Blp transport within cells and between tissues. We designed three plasmids expressing human apoB fluorescent fusion proteins: apoB48-GFP, apoB100-GFP, and apoB48-mCherry. In Cos-7 cells, transiently expressed fluorescent apoB proteins colocalized with calnexin and were only secreted if cells were cotransfected with microsomal triglyceride transfer protein. The secreted apoB-fusion proteins retained the fluorescent protein and were secreted as lipoproteins with flotation densities similar to plasma HDL and LDL. In a rat hepatoma McA-RH7777 cell line, the human apoB100 fusion protein was secreted as VLDL- and LDL-sized particles, and the apoB48 fusion proteins were secreted as LDL- and HDL-sized particles. To monitor lipoprotein trafficking in vivo, the apoB48-mCherry construct was transiently expressed in zebrafish larvae and was detected throughout the liver. These experiments show that the addition of fluorescent proteins to the C terminus of apoB does not disrupt their assembly, localization, secretion, or endocytosis. The availability of fluorescently labeled apoB proteins will facilitate the exploration of the assembly, degradation, and transport of Blps and help to identify novel compounds that interfere with these processes via high-throughput screening.
机译:Apob存在于Apob100和Apob48中,分别在肝VLDLs和肠道乳糜微粒中发现。含含脂蛋白脂蛋白(BLPS)的升高的血浆水平有助于冠状动脉疾病,糖尿病和其他心细镜均条件。研究驱动组装,细胞内运输,分泌和BLP的功能的机制仍然具有挑战性。然而,我们对细胞内和血管内贩运BLP的理解可以大大提高,随着融合蛋白的可用性,可以帮助在细胞内和组织之间可视化BLP传输。我们设计了三种表达人ApoB荧光融合蛋白的质粒:Apob48-GFP,Apob100-GFP和Apob48-MCHERRY。在COS-7细胞中,瞬时表达荧光APOB蛋白质与CALNEXIN结合,并且如果用微粒体甘油三酯转移蛋白分泌细胞,则仅分泌。分泌的apob-融合蛋白保留荧光蛋白,并用类似于等离子体HDL和LDL的浮选密度分泌为脂蛋白。在大鼠肝癌MCA-RH7777细胞系中,人Apob100融合蛋白被分泌为VLDL和LDL尺寸的颗粒,并且Apob48融合蛋白分泌为LDL和HDL尺寸的颗粒。为了监测体内脂蛋白贩运,Apob48-MCHERRY构建体在斑马鱼幼虫瞬时表达,并在整个肝脏中检测到。这些实验表明,向ApoB的C末端添加荧光蛋白不会破坏其组装,定位,分泌或内吞作用。荧光标记的Apob蛋白的可用性将有助于探索组装,降解和Blps的运输,并有助于通过高通量筛选识别与这些过程干扰这些过程的新化合物。

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