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埃普辛15同源结构域:在肺动脉高压发病机制中的作用

Epsin15 Homology Domains: Role in the Pathogenesis of Pulmonary Arterial Hypertension.

作者信息

Predescu Dan, Qin Shanshan, Patel Monal, Bardita Cristina, Bhalli Rabia, Predescu Sanda

机构信息

Division of Pulmonary Medicine, Critical Care and Sleep Medicine, Department of Internal Medicine, Rush Medical College, Rush University, Chicago, IL, United States.

出版信息

Front Physiol. 2018 Oct 2;9:1393. doi: 10.3389/fphys.2018.01393. eCollection 2018.

Abstract

Intersectin-1s (ITSN) deficiency and expression of a biologically active ITSN fragment, result of granzyme B cleavage under inflammatory conditions associated with pulmonary arterial hypertension (PAH), are characteristics of lung tissue of human and animal models of PAH. Recently, we have shown that this ITSN fragment comprising two Epsin15 homology domains (EH) triggers endothelial cell (EC) proliferation and the plexiform arteriopathy in PAH. Limited evidence also indicates that the EH domains of endocytic proteins such as ITSN, upregulate compensatory endocytic pathways in cells with impaired vesicular trafficking. Thus, we sought to investigate whether the EH may be involved in this compensatory mechanism for improving the EC endocytic dysfunction induced by ITSN deficiency and possibly contribute to PAH pathogenesis. We used stably-transfected human pulmonary artery ECs expressing the Myc-EH (EC) and ITSN knockout heterozygous mice (K0 ) transduced with the Myc-EH, in conjunction with functional assays: the biotin assay for caveolae internalization and 8 nm gold (Au)- and dinitrophenylated (DNP)-albumin perfusion of murine lung microvasculature. Pulmonary artery ECs of PAH patients (EC), ITSN knockdown ECs (EC), the monocrotaline (MCT)-induced mouse and rat models of PAH, as well as untreated animals, served as controls. ELISA via streptavidin-HRP or anti-DNP antibody (Ab), applied on ECs and lung lysates indicated greater than 30% increase in biotin internalization in EC compared to EC. Despite their endocytic deficiency, EC internalized biotin similar to EC which is twofold higher compared to EC. Moreover, the lung microvascular bed of Myc-EH-transduced mice and MCT-treated animals showed greater than twofold increase in DNP-BSA transendothelial transport, all compared to untreated controls. Electron microscopy (EM) revealed the increased occurrence of non-conventional endocytic/transcytotic structures (i.e., caveolae clusters, tubulo-vesicular and enlarged endocytic structures, membranous rings), usually underrepresented. Most of these structures were labeled by Au-BSA, consistent with their involvement in the transendothelial transport. Furthermore, ITSN deficiency and EH expression alter the subcellular localization of the EH-binding protein 1 (EHBP1) and cortical actin organization, altogether supporting the increase occurrence/trafficking of the alternative endocytic structures. Thus, the EH by shifting the physiological vesicular (caveolae) transport toward the alternative endocytic pathways is a significant contributor to the dysfunctional molecular phenotype of EC.

摘要

在与肺动脉高压(PAH)相关的炎症条件下,颗粒酶B切割导致的相交蛋白-1s(ITSN)缺乏以及生物活性ITSN片段的表达,是人类和PAH动物模型肺组织的特征。最近,我们发现这个包含两个Epsin15同源结构域(EH)的ITSN片段会引发PAH中的内皮细胞(EC)增殖和丛状动脉病。有限的证据还表明,诸如ITSN等内吞蛋白的EH结构域会上调囊泡运输受损细胞中的代偿性内吞途径。因此,我们试图研究EH是否可能参与这种代偿机制,以改善由ITSN缺乏引起的EC内吞功能障碍,并可能促成PAH的发病机制。我们使用稳定转染表达Myc-EH的人肺动脉ECs(EC)和用Myc-EH转导的ITSN基因敲除杂合小鼠(K0),并结合功能测定:用于小窝内化的生物素测定以及对小鼠肺微血管系统进行8纳米金(Au)和二硝基苯基化(DNP)白蛋白灌注。PAH患者的肺动脉ECs(EC)、ITSN敲低的ECs(EC)、野百合碱(MCT)诱导的PAH小鼠和大鼠模型以及未治疗的动物作为对照。通过链霉亲和素-HRP或抗DNP抗体(Ab)对ECs和肺裂解物进行ELISA检测表明,与EC相比,EC中生物素内化增加了30%以上。尽管它们存在内吞缺陷,但EC内化生物素的情况与EC相似,而EC内化生物素的量是EC的两倍。此外,与未治疗的对照相比,转导Myc-EH的小鼠和MCT处理动物的肺微血管床中DNP-BSA跨内皮运输增加了两倍以上。电子显微镜(EM)显示非常规内吞/转胞吞结构(即小窝簇、管状小泡和扩大的内吞结构、膜环)的出现增加,这些结构通常较少见。这些结构大多被Au-BSA标记,这与它们参与跨内皮运输一致。此外,ITSN缺乏和EH表达改变了EH结合蛋白1(EHBP1)的亚细胞定位和皮质肌动蛋白组织,共同支持了替代内吞结构的出现/运输增加。因此,EH通过将生理性囊泡(小窝)运输转向替代内吞途径,是EC功能失调分子表型的重要促成因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/184d/6176378/6ba2c3c10eda/fphys-09-01393-g001.jpg

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