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长链非编码 RNA Rps4l 介导低氧性肺动脉平滑肌细胞的增殖。

Long Noncoding RNA Rps4l Mediates the Proliferation of Hypoxic Pulmonary Artery Smooth Muscle Cells.

机构信息

From the Biopharmaceutical Key Laboratory of Heilongjiang Province, College of Pharmacy, Harbin Medical University, P.R. China (Y. Liu, H.Z., Y. Li, L. Yan, M.Z., J.Z., J.Q., H.S., D.Z.).

College of Pharmacy, Harbin University of Commerce, Heilongjiang Province, China (W.D., S.W., D.Z.).

出版信息

Hypertension. 2020 Oct;76(4):1124-1133. doi: 10.1161/HYPERTENSIONAHA.120.14644. Epub 2020 Aug 10.

Abstract

Pulmonary hypertension (PH) is a rare and fatal disorder involving the vascular remodeling of pulmonary arteries mediated by the enhanced proliferation of pulmonary artery smooth muscle cells (PASMCs). Long noncoding RNAs are a subclass of regulatory molecules with diverse cellular functions, but their role in PH remains largely unexplored. We aimed to identify and determine the functions of long noncoding RNAs involved in hypoxia-induced PH and PASMC proliferation. RNA sequencing in a hypoxic mouse model identified hypoxia-regulated long noncoding RNAs, including Rps4l. Rps4l expression was significantly reduced in PH-model mice and hypoxic PASMCs. The subcellular localization of Rps4l was detected by RNA fluorescence in situ hybridization and quantification of nuclear/cytoplasmic RNA. Rps4l overexpression rescued pulmonary arterial hypertension features, as demonstrated by right ventricle hypertrophy, right ventricular systolic pressure, hemodynamics, cardiac function, and vascular remodeling. At the cellular level, Rps4l overexpression weakened cell viability and proliferation and suppressed cell cycle progression. Potential Rps4l-binding proteins were identified via RNA pull-down followed by mass spectrometry, RNA immunoprecipitation, and microscale thermophoresis. These results indicated that Rps4l is associated with and affects the stabilization of ILF3 (interleukin enhancer-binding factor 3). Rps41 further regulates the levels of HIF-1α and consequently leads to hypoxia-induced PASMC proliferation and migration. Our results showed that in hypoxic PASMCs, Rps4l expression decreases due to regulation by hypoxia. This decrease affects the proliferation, migration, and cell cycle progression of PASMCs through ILF3/HIF-1α. These results provide a theoretical basis for further investigations into the pathological mechanism of hypoxic PH and may provide insight for the development of novel treatments.

摘要

肺动脉高压(PH)是一种罕见且致命的疾病,涉及肺血管重构,其由肺动脉平滑肌细胞(PASMC)的增殖增强介导。长链非编码 RNA 是一类具有多种细胞功能的调节分子,但它们在 PH 中的作用在很大程度上尚未被探索。我们旨在鉴定和确定参与缺氧诱导的 PH 和 PASMC 增殖的长链非编码 RNA 的功能。在缺氧小鼠模型中的 RNA 测序鉴定了缺氧调节的长链非编码 RNA,包括 Rps4l。在 PH 模型小鼠和缺氧 PASMC 中,Rps4l 的表达显著降低。通过 RNA 荧光原位杂交和核/细胞质 RNA 的定量检测到 Rps4l 的亚细胞定位。Rps4l 的过表达挽救了肺动脉高压的特征,如右心室肥大、右心室收缩压、血液动力学、心功能和血管重构。在细胞水平上,Rps4l 的过表达减弱了细胞活力和增殖,并抑制了细胞周期进程。通过 RNA 下拉 followed by mass spectrometry、RNA 免疫沉淀和微尺度热泳动鉴定了潜在的 Rps4l 结合蛋白。这些结果表明,Rps4l 与 ILF3(白细胞介素增强子结合因子 3)相关并影响其稳定性。Rps41 进一步调节 HIF-1α 的水平,从而导致缺氧诱导的 PASMC 增殖和迁移。我们的结果表明,在缺氧的 PASMC 中,由于缺氧的调节,Rps4l 的表达降低。这种降低通过 ILF3/HIF-1α 影响 PASMC 的增殖、迁移和细胞周期进程。这些结果为进一步研究缺氧性 PH 的病理机制提供了理论依据,并可能为新的治疗方法的开发提供启示。

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