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TRPM4 在钙信号放大和血管收缩中的核心作用。

A Central Role for TRPM4 in Ca-Signal Amplification and Vasoconstriction.

机构信息

Division of Clinical Physiology, Department of Cardiology, Faculty of Medicine, University of Debrecen, 4032 Debrecen, Hungary.

Doctoral School of Kálmán Laki, University of Debrecen, 4032 Debrecen, Hungary.

出版信息

Int J Mol Sci. 2022 Jan 27;23(3):1465. doi: 10.3390/ijms23031465.

Abstract

Transient receptor potential melastatin-4 (TRPM4) is activated by an increase in intracellular Ca concentration and is expressed on smooth muscle cells (SMCs). It is implicated in the myogenic constriction of cerebral arteries. We hypothesized that TRPM4 has a general role in intracellular Ca signal amplification in a wide range of blood vessels. TRPM4 function was tested with the TRPM4 antagonist 9-phenanthrol and the TRPM4 activator A23187 on the cardiovascular responses of the rat, in vivo and in isolated basilar, mesenteric, and skeletal muscle arteries. TRPM4 inhibition by 9-phenanthrol resulted in hypotension and a decreased heart rate in the rat. TRPM4 inhibition completely antagonized myogenic tone development and norepinephrine-evoked vasoconstriction, and depolarization (high extracellular KCl concentration) evoked vasoconstriction in a wide range of peripheral arteries. Vasorelaxation caused by TRPM4 inhibition was accompanied by a significant decrease in intracellular Ca concentration, suggesting an inhibition of Ca signal amplification. Immunohistochemistry confirmed TRPM4 expression in the smooth muscle cells of the peripheral arteries. Finally, TRPM4 activation by the Ca ionophore A23187 was competitively inhibited by 9-phenanthrol. In summary, TRPM4 was identified as an essential Ca-amplifying channel in peripheral arteries, contributing to both myogenic tone and agonist responses. These results suggest an important role for TRPM4 in the circulation. The modulation of TRPM4 activity may be a therapeutic target for hypertension. Furthermore, the Ca ionophore A23187 was identified as the first high-affinity (nanomolar) direct activator of TRPM4, acting on the 9-phenanthrol binding site.

摘要

瞬时受体电位 melastatin-4(TRPM4)被细胞内 Ca 浓度的增加激活,并在平滑肌细胞(SMCs)上表达。它参与脑动脉的肌源性收缩。我们假设 TRPM4 在广泛的血管中对细胞内 Ca 信号放大具有普遍作用。使用 TRPM4 拮抗剂 9-菲咯啉和 TRPM4 激活剂 A23187 在体内和离体基底动脉、肠系膜和骨骼肌动脉上测试了 TRPM4 的功能对大鼠心血管反应的影响。9-菲咯啉对 TRPM4 的抑制导致大鼠低血压和心率降低。TRPM4 抑制完全拮抗肌源性张力发展和去甲肾上腺素引起的血管收缩,以及高细胞外 KCl 浓度引起的广泛外周动脉血管收缩。TRPM4 抑制引起的血管舒张伴随着细胞内 Ca 浓度的显著降低,表明 Ca 信号放大的抑制。免疫组织化学证实了外周动脉平滑肌细胞中 TRPM4 的表达。最后,Ca 离子载体 A23187 对 TRPM4 的激活被 9-菲咯啉竞争性抑制。总之,TRPM4 被鉴定为外周动脉中必不可少的 Ca 放大通道,参与肌源性张力和激动剂反应。这些结果表明 TRPM4 在循环中具有重要作用。TRPM4 活性的调节可能是治疗高血压的一个治疗靶点。此外,Ca 离子载体 A23187 被鉴定为第一个高亲和力(纳摩尔)直接激活剂 TRPM4,作用于 9-菲咯啉结合位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f50/8836177/a3e2b902a7cc/ijms-23-01465-g001.jpg

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