Type 2 inositol 1,4,5-trisphosphate receptor inhibits the progression of pulmonary arterial hypertension via calcium signaling and apoptosis

被引:0
作者
Akimichi Shibata
Keiko Uchida
Kazuki Kodo
Takayuki Miyauchi
Katsuhiko Mikoshiba
Takao Takahashi
Hiroyuki Yamagishi
机构
[1] Keio University School of Medicine,Department of Pediatrics
[2] Keio University School of Medicine,Division of Cardiology
[3] Keio University,Health Center
[4] Keio University,Department of Pharmacology, Keio University School of Medicine and Keio Advanced Research Center for Water Biology and Medicine
[5] RIKEN Center for Brain Science,The Laboratory for Developmental Neurobiology
来源
Heart and Vessels | 2019年 / 34卷
关键词
Pulmonary artery smooth muscle cells; Chronic hypoxia; Store-operated calcium entry; Apoptosis;
D O I
暂无
中图分类号
学科分类号
摘要
Pulmonary arterial hypertension (PAH) is a progressive disease associated with vasoconstriction and remodeling. Intracellular Ca2+ signaling regulates the contraction of pulmonary arteries and the proliferation of pulmonary arterial smooth muscle cells (PASMCs); however, it is not clear which molecules related to Ca2+ signaling contribute to the progression of PAH. In this study, we found the specific expression of type 2 inositol 1,4,5-trisphosphate receptor (IP3R2), which is an intracellular Ca2+ release channel, on the sarco/endoplasmic reticulum in mouse PASMCs, and demonstrated its inhibitory role in the progression of PAH using a chronic hypoxia-induced PAH mouse model. After chronic hypoxia exposure, IP3R2−/− mice exhibited the significant aggravation of PAH, as determined by echocardiography and right ventricular hypertrophy, with significantly greater medial wall thickness by immunohistochemistry than that of wild-type mice. In IP3R2−/− murine PASMCs with chronic hypoxia, a TUNEL assay revealed the significant suppression of apoptosis, whereas there was no significant change in proliferation. Thapsigargin-induced store-operated Ca2+ entry (SOCE) was significantly enhanced in IP3R2−/− PASMCs in both normoxia and hypoxia based on in vitro fluorescent Ca2+ imaging. Furthermore, the enhancement of SOCE in IP3R2−/− PASMCs was remarkably suppressed by the addition of DPB162-AE, an inhibitor of the stromal-interacting molecule (STIM)–Orai complex which is about 100 times more potent than 2-APB. Our results indicate that IP3R2 may inhibit the progression of PAH by promoting apoptosis and inhibiting SOCE via the STIM–Orai pathway in PASMCs. These findings suggest a previously undetermined role of IP3R in the development of PAH and may contribute to the development of targeted therapies.
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页码:724 / 734
页数:10
相关论文
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