缺氧诱导的有丝分裂因子/RELM-β与骨形态发生蛋白受体2复合物的结合促进肺动脉高压。

IF 7.4 1区 医学 Q1 HEMATOLOGY
Ting Zhang, Liping Zhu, Bingxun Liu, Jie Liu, Xianqin Zeng, Wenbo Yang, Matthieu Ruiz, Jocelyn Dupuis, Rui Xiao, Qinghua Hu
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引用次数: 0

摘要

背景:缺氧诱导的有丝分裂因子(HIMF)可诱导肺动脉高压;然而,其胞外膜受体的分子性质尚不清楚。方法:采用交叉免疫沉淀法和免疫印迹法、酵母2杂交法和蛋白质组学方法筛选和鉴定候选受体。在慢性缺氧和缺氧肺动脉高压大鼠模型中,通过过表达、沉默、点突变和阻断肽策略进一步评估HIMF与这些候选物质的相互作用,以揭示潜在的病理生理机制。结果:交叉免疫沉淀和免疫印迹鉴定了HIMF与BMPR2(骨形态发生蛋白受体2)复合物的相互作用。酵母2-杂交发现,HIMF与BMPR2异二聚体复合体的一个伙伴BMPR1A(骨形态发生蛋白受体1A)的细胞外区域54 - 58个氨基酸(aa)上的DTLPF motif (aspr - thr -leucine- pro - phe)结合,但不与BMPR2本身结合。HIMF和人类对应的RELM(抵抗素样分子)-β结合BMPR1A破坏了BMPR1A/BMPR2复合物,降低了BMPR2活性,下游事件减少,包括Smad/1/5/9磷酸化下降约43%至56%,Id-1表达下降约41%至60%。这种动态诱导肺动脉平滑肌细胞增殖和肺血管重构,导致肺动脉高压。大鼠中突变的基序或靶向该基序的阻断肽抑制了HIMF与BMPR1A的结合,通过Smad/1/5/9磷酸化增加≈25%和Id-1表达升高≈39%来恢复BMPR2活性,并减轻慢性缺氧或糖/缺氧诱导的肺动脉高压。结论:HIMF通过直接结合BMPR1A外结构域诱导肺动脉高压,随后破坏其与BMPR2的结合和BMPR2的活性。这种HIMF信号通路通过选择性干扰BMPR1A结合而成为潜在的治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Binding of Hypoxia-Induced Mitogenic Factor/RELM-β to Bone Morphogenetic Protein Receptor 2 Complex Promotes Pulmonary Hypertension.

Background: HIMF (hypoxia-induced mitogenic factor) induces pulmonary hypertension; however, the molecular nature of its extracellular membrane receptor(s) remains unknown.

Methods: A combination of cross-immunoprecipitation and immunoblotting, yeast 2-hybrid assays, and proteomics analysis was performed to screen and identify the candidate receptors. The interaction of HIMF with these candidate(s) was further evaluated using overexpression, silencing, point mutation, and blocking peptide strategies in chronic hypoxia and sugen/hypoxia pulmonary hypertension rat models to decipher the underlying pathophysiologic mechanisms.

Results: Cross-immunoprecipitation and immunoblotting identified HIMF interaction with the BMPR2 (bone morphogenetic protein receptor 2) complex. Yeast 2-hybrid revealed HIMF binding to the DTLPF motif (Asp-Thr-leucine-Pro-Phe [aspartic acid-threonine-leucine-proline-phenylalanine]) at the 54 to 58 amino acids (aa) in the extracellular domain of the BMPR1A (bone morphogenetic protein receptor 1A), one partner of the BMPR2 heterodimeric complex, but not BMPR2 itself. HIMF and human counterpart RELM (resistin-like molecule)-β binding to BMPR1A disrupted the BMPR1A/BMPR2 complex and decreased BMPR2 activity as revealed by reduced downstream events including ≈43% to 56% decline in Smad1/5/9 (Sma- and Mad-related protein 1/5/9) phosphorylation and ≈41% to 60% decrease in Id-1 (inhibitor of DNA binding 1) expression. This dynamic induced pulmonary artery smooth muscle cell proliferation and pulmonary vascular remodeling leading to pulmonary hypertension. A mutated motif in rats or a blocking peptide targeting this motif restrained HIMF binding with BMPR1A, rescued BMPR2 activity by ≈25% increase in Smad/1/5/9 phosphorylation and ≈39% elevation in Id-1 expression, and attenuated chronic hypoxia or sugen/hypoxia-induced pulmonary hypertension.

Conclusions: HIMF induced pulmonary hypertension by direct binding to BMPR1A ectodomain, subsequently disrupting its binding to BMPR2 and BMPR2 activity. This HIMF signaling pathway represents a potential therapeutic target by selectively interfering with BMPR1A binding.

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来源期刊
CiteScore
15.60
自引率
2.30%
发文量
337
审稿时长
2-4 weeks
期刊介绍: The journal "Arteriosclerosis, Thrombosis, and Vascular Biology" (ATVB) is a scientific publication that focuses on the fields of vascular biology, atherosclerosis, and thrombosis. It is a peer-reviewed journal that publishes original research articles, reviews, and other scholarly content related to these areas. The journal is published by the American Heart Association (AHA) and the American Stroke Association (ASA). The journal was published bi-monthly until January 1992, after which it transitioned to a monthly publication schedule. The journal is aimed at a professional audience, including academic cardiologists, vascular biologists, physiologists, pharmacologists and hematologists.
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