SOX9 promotes hypoxic pulmonary hypertension through stabilization of DPP4 in pulmonary artery smooth muscle cells

IF 3.3 3区 生物学 Q3 CELL BIOLOGY
Yan-Zi Guo , Han-Yu Cui , Ming-Yuan Cai , Di Wang , Wei-Ping Deng , Chang-Ping Hu
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引用次数: 0

Abstract

Pulmonary hypertension (PH) is a progressive cardiopulmonary disorder characterized by pulmonary vascular remodeling (PVR), primarily due to the excessive proliferation of pulmonary artery smooth muscle cells (PASMCs). This study aimed to investigate the role and molecular mechanism of SOX9 in hypoxic PH in rats. The findings revealed that SOX9 was upregulated in the pulmonary arteries and PASMCs of hypoxia-exposed rats. SOX9 knockdown inhibited hypoxia-induced proliferation and migration of PASMCs, reduced PVR, and subsequently alleviated hypoxia-induced PH in rats, suggesting that SOX9 plays a critical role in PH. Further investigation demonstrated that SOX9 interacted with DPP4, preventing its ubiquitin degradation in hypoxia-exposed PASMCs. DPP4 knockdown inhibited hypoxia-induced PASMC proliferation and migration, and administration of the DPP4 inhibitor sitagliptin (5 mg/kg) significantly reduced PVR and alleviated hypoxia-induced PH in rats, indicating that SOX9 contributes to PH by stabilizing DPP4. The results also showed that hypoxia induced YAP1 expression and dephosphorylation, leading to YAP1 nuclear localization. YAP1 knockdown promoted the degradation of HIF-1α in hypoxia-exposed PASMCs and inhibited hypoxia-induced proliferation and migration of PASMCs. Additionally, HIF-1α, as a transcription factor, promoted SOX9 expression by binding to the SOX9 promoter in hypoxia-exposed PASMCs. In conclusion, hypoxia promotes the proliferation and migration of PASMCs through the regulation of the YAP1/HIF-1α/SOX9/DPP4 signaling pathway, leading to PH in rats. These findings suggest that SOX9 may serve as a potential prognostic marker and therapeutic target for PH.

SOX9 通过稳定肺动脉平滑肌细胞中的 DPP4 促进缺氧性肺动脉高压的形成
肺动脉高压(PH)是一种以肺血管重塑(PVR)为特征的进行性心肺疾病,其主要原因是肺动脉平滑肌细胞(PASMC)过度增殖。本研究旨在探讨SOX9在大鼠缺氧性PH中的作用和分子机制。结果发现,SOX9在缺氧暴露大鼠的肺动脉和PASMC中上调。敲除SOX9可抑制缺氧诱导的PASMCs增殖和迁移,降低PVR,进而缓解缺氧诱导的大鼠PH,这表明SOX9在PH中起着关键作用。进一步的研究表明,SOX9与DPP4相互作用,阻止其在缺氧暴露的PASMCs中被泛素降解。DPP4敲除抑制了缺氧诱导的PASMC增殖和迁移,服用DPP4抑制剂西他列汀(5毫克/千克)可显著降低大鼠的PVR并缓解缺氧诱导的PH,这表明SOX9通过稳定DPP4促进了PH。结果还显示,缺氧诱导 YAP1 表达和去磷酸化,导致 YAP1 核定位。敲除 YAP1 可促进缺氧暴露的 PASMC 中 HIF-1α 的降解,并抑制缺氧诱导的 PASMC 的增殖和迁移。此外,HIF-1α 作为一种转录因子,通过与缺氧暴露的 PASMCs 中的 SOX9 启动子结合,促进 SOX9 的表达。总之,缺氧通过调节 YAP1/HIF-1α/SOX9/DPP4 信号通路促进 PASMC 的增殖和迁移,从而导致大鼠 PH。这些研究结果表明,SOX9 可作为 PH 的潜在预后标志物和治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Experimental cell research
Experimental cell research 医学-细胞生物学
CiteScore
7.20
自引率
0.00%
发文量
295
审稿时长
30 days
期刊介绍: Our scope includes but is not limited to areas such as: Chromosome biology; Chromatin and epigenetics; DNA repair; Gene regulation; Nuclear import-export; RNA processing; Non-coding RNAs; Organelle biology; The cytoskeleton; Intracellular trafficking; Cell-cell and cell-matrix interactions; Cell motility and migration; Cell proliferation; Cellular differentiation; Signal transduction; Programmed cell death.
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