收缩性
平衡
内科学
内分泌学
调节器
钙通道
收缩(语法)
血管平滑肌
肌肉收缩
医学
钙
腹主动脉瘤
主动脉瘤
平滑肌
血管
细胞生物学
离子通道
电压依赖性钙通道
细胞
T型钙通道
心肌细胞
化学
心脏病学
下调和上调
钙代谢
循环系统
钙信号传导
生物
解剖
骨骼肌
药品
转录因子
细胞膜
信号转导
作者
Bo Yang,Ting Xu,Qianqian Yang,Long Mo,Jianyi Huo,Taiyang Mu,Yating Zhi,Yun Du,Haojie Wang,Lingchuan Guo,Zhen Wei Zhu,Yulong Feng,Yu Rui,Li Zhu,William A. Coetzee,Qinqin Gao,Hua-Qian Yang
标识
DOI:10.1073/pnas.2509778123
摘要
Ion channels are the second most common clinical drug target besides G protein-coupled receptors. Aneurysmal diseases pose a significant threat to human life. Novel drug targets for its treatment remain to be explored. We investigated the role of an ion channel, calcium homeostasis modulators 5 (CALHM5), on the development of aortic aneurysms. We characterized CALHM5 as a plasma membrane ion channel abundant in smooth muscle cells of both humans and mice, playing a pivotal role in regulating calcium homeostasis. Notably, CALHM5 deficiency suppressed the transcription of the L-type calcium channel (LTCC) pore-forming subunit by downregulating cAMP-response element binding proteins. This in turn diminished blood vessel contractility and decreased blood flow. Intriguingly, CALHM5 expression is downregulated in smooth muscle tissues of aortic aneurysm patients. Furthermore, CALHM5 deficiency was observed to ameliorate the development of abdominal aortic aneurysms in mice, partly by stimulating smooth muscle cell proliferation. CALHM5 emerges as an ion channel prominently expressed in arterial smooth muscles, serving as a physiological regulator of smooth muscle contraction and presenting itself as a promising therapeutic target for aortic aneurysms.
科研通智能强力驱动
Strongly Powered by AbleSci AI