HIMF (Hypoxia-Induced Mitogenic Factor) Signaling Mediates the HMGB1 (High Mobility Group Box 1)-Dependent Endothelial and Smooth Muscle Cell Cross Talk in Pulmonary Hypertension.

Qing Lin, Chunling Fan, J. Gomez-Arroyo, K. van Raemdonck, Lucas W. Meuchel, J. Skinner, A. Everett, Xia Fang, Andrew A. MacDonald, Kazuyo Yamaji-Kegan, R. Johns
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引用次数: 29

Abstract

OBJECTIVE HIMF (hypoxia-induced mitogenic factor; also known as FIZZ1 [found in inflammatory zone-1] or RELM [resistin-like molecule-α]) is an etiological factor of pulmonary hypertension (PH) in rodents, but its underlying mechanism is unclear. We investigated the immunomodulatory properties of HIMF signaling in PH pathogenesis. Approach and Results: Gene-modified mice that lacked HIMF (KO [knockout]) or overexpressed HIMF human homolog of resistin (hResistin) were used for in vivo experiments. The pro-PH role of HIMF was verified in HIMF-KO mice exposed to chronic hypoxia or sugen/hypoxia. Mechanistically, HIMF/hResistin activation triggered the HMGB1 (high mobility group box 1) pathway and RAGE (receptor for advanced glycation end products) in pulmonary endothelial cells (ECs) of hypoxic mouse lungs in vivo and in human pulmonary microvascular ECs in vitro. Treatment with conditioned medium from hResistin-stimulated human pulmonary microvascular ECs induced an autophagic response, BMPR2 (bone morphogenetic protein receptor 2) defects, and subsequent apoptosis-resistant proliferation in human pulmonary artery (vascular) smooth muscle cells in an HMGB1-dependent manner. These effects were confirmed in ECs and smooth muscle cells isolated from pulmonary arteries of patients with idiopathic PH. HIMF/HMGB1/RAGE-mediated autophagy and BMPR2 impairment were also observed in pulmonary artery (vascular) smooth muscle cells of hypoxic mice, effects perhaps related to FoxO1 (forkhead box O1) dampening by HIMF. Experiments in EC-specific hResistin-overexpressing transgenic mice confirmed that EC-derived HMGB1 mediated the hResistin-driven pulmonary vascular remodeling and PH. CONCLUSIONS In HIMF-induced PH, HMGB1-RAGE signaling is pivotal for mediating EC-smooth muscle cell cross talk. The humanized mouse data further support clinical implications for the HIMF/HMGB1 signaling axis and indicate that hResistin and its downstream pathway may constitute targets for the development of novel anti-PH therapeutics in humans.
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缺氧诱导的有丝分裂因子信号介导肺动脉高压中HMGB1依赖性内皮细胞和平滑肌细胞的串扰
目的探讨缺氧诱导的有丝分裂因子;也被称为FIZZ1[存在于炎性区-1]或RELM[抵抗素样分子-α])是啮齿动物肺动脉高压(PH)的病因,但其潜在机制尚不清楚。我们研究了HIMF信号在PH发病中的免疫调节特性。方法与结果:采用缺乏HIMF (KO[敲除])或过表达HIMF人抵抗素同源物(hresisttin)的基因修饰小鼠进行体内实验。在暴露于慢性缺氧或糖/缺氧的HIMF- ko小鼠中,证实了HIMF的促ph作用。在机制上,HIMF/hResistin激活在体内缺氧小鼠肺内皮细胞(ECs)和体外人肺微血管内皮细胞(ECs)中触发HMGB1(高迁移率组1)通路和RAGE(晚期糖基化终产物受体)。hresistin刺激的人肺微血管内皮细胞条件培养基诱导自噬反应,BMPR2(骨形态发生蛋白受体2)缺陷,随后以hmgb1依赖的方式在人肺动脉(血管)平滑肌细胞中诱导抗凋亡增殖。这些作用在特发性ph患者肺动脉分离的内皮细胞和平滑肌细胞中得到证实。缺氧小鼠肺动脉(血管)平滑肌细胞中也观察到HIMF/HMGB1/ rage介导的自噬和BMPR2损伤,其作用可能与HIMF抑制FoxO1 (forkhead box O1)有关。在ec特异性过表达hresistin转基因小鼠中进行的实验证实,ec来源的HMGB1介导了hresistin驱动的肺血管重构和PH。结论在himf诱导的PH中,HMGB1- rage信号在介导ec -平滑肌细胞串音中起关键作用。人源化小鼠数据进一步支持了HIMF/HMGB1信号轴的临床意义,并表明hresisttin及其下游途径可能成为开发新型人类抗ph治疗药物的靶点。
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Editors and Editorial Board. Correction to: Role of LpL (Lipoprotein Lipase) in Macrophage Polarization In Vitro and In Vivo. Tribute to Paul M. Vanhoutte, MD, PhD (1940-2019). Correction to: 18F-Sodium Fluoride Imaging of Coronary Atherosclerosis in Ambulatory Patients With Diabetes Mellitus. Extracellular MicroRNA-92a Mediates Endothelial Cell-Macrophage Communication.
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