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从受体移植心脏中分离的人心微血管内皮细胞中 von Willebrand 因子的存储和功能改变。

Altered Storage and Function of von Willebrand Factor in Human Cardiac Microvascular Endothelial Cells Isolated from Recipient Transplant Hearts.

机构信息

Transplant Immunology, Heart Science Centre, Harefield Hospital, Hill End Road, Harefield UB9 6JH, UK.

Molecular and Clinical Sciences Research Institute, St Georges University of London, London SW17 0RE, UK.

出版信息

Int J Mol Sci. 2023 Feb 25;24(5):4553. doi: 10.3390/ijms24054553.

Abstract

The assembly of von Willebrand factor (VWF) into ordered helical tubules within endothelial Weibel-Palade bodies (WPBs) is required for the efficient deployment of the protein at sites of vascular injury. VWF trafficking and storage are sensitive to cellular and environmental stresses that are associated with heart disease and heart failure. Altered storage of VWF manifests as a change in WPB morphology from a rod shape to a rounded shape and is associated with impaired VWF deployment during secretion. In this study, we examined the morphology, ultrastructure, molecular composition and kinetics of exocytosis of WPBs in cardiac microvascular endothelial cells isolated from explanted hearts of patients with a common form of heart failure, dilated cardiomyopathy (DCM; HCMEC), or from nominally healthy donors (controls; HCMEC). Using fluorescence microscopy, WPBs in HCMEC (n = 3 donors) showed the typical rod-shaped morphology containing VWF, P-selectin and tPA. In contrast, WPBs in primary cultures of HCMEC (n = 6 donors) were predominantly rounded in shape and lacked tissue plasminogen activator (t-PA). Ultrastructural analysis of HCMEC revealed a disordered arrangement of VWF tubules in nascent WPBs emerging from the trans-Golgi network. HCMEC WPBs still recruited Rab27A, Rab3B, Myosin-Rab Interacting Protein (MyRIP) and Synaptotagmin-like protein 4a (Slp4-a) and underwent regulated exocytosis with kinetics similar to that seen in HCMECc. However, secreted extracellular VWF strings from HCMEC were significantly shorter than for endothelial cells with rod-shaped WPBs, although VWF platelet binding was similar. Our observations suggest that VWF trafficking, storage and haemostatic potential are perturbed in HCMEC from DCM hearts.

摘要

血管性血友病因子(VWF)在血管内皮 Weibel-Palade 体(WPB)中组装成有序的螺旋管对于蛋白质在血管损伤部位的有效释放是必需的。VWF 的运输和储存对与心脏病和心力衰竭相关的细胞和环境压力敏感。VWF 储存的改变表现为 WPB 形态从杆状变为圆形,并且与分泌过程中 VWF 释放受损有关。在这项研究中,我们检查了从扩张型心肌病(DCM;HCMEC)患者或名义上健康供体(对照;HCMEC)心脏中分离的心脏微血管内皮细胞中 WPB 的形态、超微结构、分子组成和胞吐动力学。使用荧光显微镜,HCMEC(n = 3 个供体)中的 WPB 显示出典型的杆状形态,包含 VWF、P-选择素和 tPA。相比之下,HCMEC 的原代培养物(n = 6 个供体)中的 WPB 主要呈圆形,缺乏组织纤溶酶原激活物(t-PA)。HCMEC 的超微结构分析显示,从 Trans-Golgi 网络中出现的新生 WPB 中 VWF 小管的排列无序。HCMEC WPB 仍然募集 Rab27A、Rab3B、肌球蛋白-Rab 相互作用蛋白(MyRIP)和突触结合蛋白样蛋白 4a(Slp4-a),并经历具有与 HCMECc 相似动力学的调节性胞吐作用。然而,从 DCM 心脏的 HCMEC 中分泌的细胞外 VWF 串明显短于具有杆状 WPB 的内皮细胞,尽管 VWF 血小板结合相似。我们的观察表明,DCM 心脏来源的 HCMEC 中 VWF 运输、储存和止血潜能受到干扰。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c45/10003102/cb0a8741ef5e/ijms-24-04553-g001.jpg

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