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BMPR1A 促进 ID2-ZEB1 相互作用,以抑制过度的内皮到间充质转化。

BMPR1A promotes ID2-ZEB1 interaction to suppress excessive endothelial to mesenchymal transition.

机构信息

Yale Cardiovascular Research Center, Section of Cardiovascular Medicine, Department of Internal Medicine, Yale University School of Medicine, New Haven, CT 06511, USA.

Division of Nephrology, Department of Medicine, Kyoto Prefectural University of Medicine, Kyoto, Japan.

出版信息

Cardiovasc Res. 2023 May 2;119(3):813-825. doi: 10.1093/cvr/cvac159.

Abstract

AIMS

Components of bone morphogenetic protein (BMP) signalling have been implicated in both pathogenesis of pulmonary arterial hypertension (PAH) and endothelial-mesenchymal transition (EndoMT). In particular, the importance of BMP type 2 receptor in these processes has been extensively analysed. However, the contribution of BMP type 1 receptors (BMPR1s) to the onset of PAH and EndoMT remains poorly understood. BMPR1A, one of BMPR1s, was recently implicated in the pathogenesis of PAH, and was found to be down-regulated in the lungs of PAH patients, neither the downstream mechanism nor its contribution to EndoMT has been described. Therefore, we aim to delineate the role of endothelial BMPR1A in modulating EndoMT and pathogenesis of PAH.

METHODS AND RESULTS

We find that BMPR1A knockdown in endothelial cells (ECs) induces hallmarks of EndoMT, and deletion of endothelial Bmpr1a in adult mice (Bmpr1aiECKO) leads to development of PAH-like symptoms due to excessive EndoMT. By lineage tracing, we show that endothelial-derived smooth muscle cells are increased in endothelial Bmpr1a-deleted mice. Mechanistically, we identify ZEB1 as a primary target for BMPR1A in this setting; upon BMPR1A activation, ID2 physically interacts and sequesters ZEB1 to attenuate transcription of Tgfbr2, which in turn lowers the responses of ECs towards transforming growth factor beta (TGFβ) stimulation and prevents excessive EndoMT. In Bmpr1aiECKO mice, administering endothelial targeting lipid nanoparticles containing siRNA against Tgfbr2 effectively ameliorate PAH, reiterating the importance of BMPR1A-ID2/ZEB1-TGFBR2 axis in modulating progression of EndoMT and pathogenesis of PAH.

CONCLUSIONS

We demonstrate that BMPR1A is key to maintain endothelial identity and to prevent excessive EndoMT. We identify BMPR1A-induced interaction between ID2 and ZEB1 is the key regulatory step for onset of EndoMT and pathogenesis of PAH. Our findings indicate that BMPR1A-ID2/ZEB1-TGFBR2 signalling axis could serve as a potential novel therapeutic target for PAH and other EndoMT-related vascular disorders.

摘要

目的

骨形态发生蛋白(BMP)信号的组成部分被认为与肺动脉高压(PAH)和内皮-间质转化(EndoMT)的发病机制有关。特别是,BMP 型 2 受体在这些过程中的重要性已经得到了广泛的分析。然而,BMP 型 1 受体(BMPR1s)对 PAH 和 EndoMT 的发生的贡献仍知之甚少。BMPR1A 是 BMPR1s 之一,最近被牵连到 PAH 的发病机制中,并且在 PAH 患者的肺部中发现其下调,但其下游机制及其对 EndoMT 的贡献尚未描述。因此,我们旨在描绘内皮 BMPR1A 在调节 EndoMT 和 PAH 发病机制中的作用。

方法和结果

我们发现,内皮细胞(ECs)中 BMPR1A 的敲低会诱导 EndoMT 的特征,并且成年小鼠中内皮 Bmpr1a 的缺失(Bmpr1aiECKO)会导致由于过度 EndoMT 而出现类似 PAH 的症状。通过谱系追踪,我们表明内皮衍生的平滑肌细胞在内皮 Bmpr1a 缺失的小鼠中增加。从机制上讲,我们将 ZEB1 鉴定为该环境中 BMPR1A 的主要靶标;在 BMPR1A 激活后,ID2 物理相互作用并隔离 ZEB1 以减弱 Tgfbr2 的转录,从而降低 ECs 对转化生长因子-β(TGFβ)刺激的反应,并防止过度的 EndoMT。在 Bmpr1aiECKO 小鼠中,给予含有针对 Tgfbr2 的 siRNA 的内皮靶向脂质纳米颗粒可有效改善 PAH,再次强调了 BMPR1A-ID2/ZEB1-TGFBR2 轴在调节 EndoMT 进展和 PAH 发病机制中的重要性。

结论

我们证明 BMPR1A 是维持内皮特征和防止过度 EndoMT 的关键。我们确定 BMPR1A 诱导的 ID2 和 ZEB1 之间的相互作用是 EndoMT 发生和 PAH 发病机制的关键调节步骤。我们的发现表明,BMPR1A-ID2/ZEB1-TGFBR2 信号通路可以作为 PAH 和其他与 EndoMT 相关的血管疾病的潜在新型治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09b9/10409893/77576263f6d4/cvac159_ga1.jpg

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