载脂蛋白E4表达导致等基因人诱导多能干细胞衍生内皮细胞毒性功能的增加。

Claus Rieker, E. Migliavacca, Angélique Vaucher, F. C. Mayer, Gilles Baud, Julien Marquis, A. Charpagne, Nagabhooshan Hegde, Laurence Guignard, Michael J Mclachlan, A. Pooler
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引用次数: 31

摘要

ApoE(载脂蛋白)等位基因epsilon 4是阿尔茨海默病、心血管疾病和中风的主要遗传危险因素,表明它显著影响大脑和血管系统。然而,我们对APOE基因型如何影响脑内皮细胞知之甚少,而脑内皮细胞形成一个紧密连接网络,调节大脑和循环血液因子之间的交流。方法和结果:在这里,我们提出了一种新的内皮功能障碍模型,使用具有不同APOE基因等位基因的人诱导多能干细胞来源的细胞,特别是APOE 3/ 3,3 /4和4/4。我们首次表明,ApoE4在内皮细胞中的表达足以引起细胞功能障碍的毒性增益。使用RNAseq,我们发现ApoE4对参与血液凝固和屏障功能的信号通路有显著影响。这些变化与细胞功能改变有关,包括3/4或4/4基因型的血小板与内皮细胞结合增加。apoe4阳性细胞表现出促炎状态和血栓形成状态,表现为a β(淀粉样蛋白-β) 40和42的分泌增加,细胞因子的释放增加,凝血蛋白VWF (vonWillebrand因子)的过度表达。阿尔茨海默病人脑免疫组化也显示ApoE4/4基因型VWF表达增加。最后,celastrol对ECs炎症的药理学抑制挽救了表达ApoE4细胞中VWF的过表达。结论这些细胞为研究apoe4介导的内皮功能障碍提供了新的视角,并为检测血管疾病的潜在治疗方法提供了新的平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Apolipoprotein E4 Expression Causes Gain of Toxic Function in Isogenic Human Induced Pluripotent Stem Cell-Derived Endothelial Cells.
OBJECTIVE The ApoE (apolipoprotein) allele epsilon 4 is a major genetic risk factor for Alzheimer disease, cardiovascular disorders, and stroke, indicating that it significantly impacts cerebral and vascular systems. However, very little is known about how APOE genotype affects brain endothelial cells, which form a network of tight junctions to regulate communication between the brain and circulating blood factors. Approach and Results: Here, we present a novel model of endothelial dysfunction using isogenic human induced pluripotent stem cell-derived cells harboring different alleles of the APOE gene, specifically ApoE 3/3, 3/4, and 4/4. We show for the first time that ApoE4 expression by endothelial cells is sufficient to cause a toxic gain of cellular dysfunction. Using RNAseq, we found significant effects of ApoE4 on signaling pathways involved in blood coagulation and barrier function. These changes were associated with altered cell function, including increased binding of platelets to ECs with the 3/4 or 4/4 genotype. ApoE4-positive cells exhibited a proinflammatory state and prothrombotic state, evidenced by higher secretion of Aβ (amyloid-β) 40 and 42, increased release of cytokines, and overexpression of the blood clotting protein VWF (vonWillebrand factor). Immunohistochemistry of human brain Alzheimer disease brains also showed increased VWF expression with the ApoE4/4 genotype. Finally, pharmacological inhibition of inflammation in ECs by celastrol rescued overexpression of VWF in cells expressing ApoE4. CONCLUSIONS These cells provide novel insight into ApoE4-mediated endothelial dysfunction and provide a new platform to test potential therapies for vascular disorders.
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