Cell Signalling Research Group, Institute of Biochemistry of the Romanian Academy, Bucharest, Romania.
Department of Anatomy, Physiology, and Biophysics, Faculty of Biology, University of Bucharest, Bucharest, Romania.
Br J Pharmacol. 2024 May;181(9):1438-1451. doi: 10.1111/bph.16295. Epub 2024 Jan 25.
The TRPM8 ion channel is involved in innocuous cold sensing and has a potent anti-inflammatory action. Its activation by lower temperature or chemical agonists such as menthol and icilin induces analgesic effects, reversing hypersensitivity and reducing chronic pain. On the other hand, prostacyclin (PGI) enhances pain and inflammation by activating the IP receptors. Due to the critical roles of TRPM8 and IP receptors in the regulation of inflammatory pain, and considering their overlapping expression pattern, we analysed the functional interaction between human TRPM8 and IP receptors.
We transiently expressed human TRPM8 channels and IP receptors in HEK293T cells and carried out intracellular calcium and cAMP measurements. Additionally, we cultured neurons from the dorsal root ganglia (DRGs) of mice and determined the increase in intracellular calcium triggered by the TRPM8 agonist, icilin, in the presence of the IP receptor agonist cicaprost, the IP receptor antagonist Cay10441, and the Gq/11 inhibitor YM254890.
Activation of IP receptors by selective agonists (cicaprost, beraprost, and iloprost) inhibited TRPM8 channel function, independently of the Gs-cAMP pathway. The potent inhibition of TRPM8 channels by IP receptor agonists involved Gq/11 coupling. These effects were also observed in neurons isolated from murine DRGs.
Our results demonstrate an unusual signalling pathway of IP receptors by coupling to Gq/11 proteins to inhibit TRPM8 channel function. This pathway may contribute to a better understanding of the role of TRPM8 channels and IP receptors in regulating pain and inflammation.
瞬时感受器电位阳离子通道亚家族 M8(TRPM8)离子通道参与无害冷觉感知,并具有强大的抗炎作用。其被较低温度或化学激动剂(如薄荷醇和异丁香酚)激活后,会引发镇痛作用,逆转过敏反应并减轻慢性疼痛。另一方面,前列腺素 I2(PGI)通过激活 IP 受体增强疼痛和炎症。由于 TRPM8 和 IP 受体在炎症性疼痛的调节中具有关键作用,并且考虑到它们重叠的表达模式,我们分析了人源 TRPM8 和 IP 受体之间的功能相互作用。
我们在 HEK293T 细胞中瞬时表达人源 TRPM8 通道和 IP 受体,并进行细胞内钙和 cAMP 测量。此外,我们培养来自小鼠背根神经节(DRG)的神经元,并在 IP 受体激动剂 cicaprost、IP 受体拮抗剂 Cay10441 和 Gq/11 抑制剂 YM254890 的存在下,测定 TRPM8 激动剂异丁香酚触发的细胞内钙增加。
选择性激动剂(cicaprost、beraprost 和 iloprost)激活 IP 受体可独立于 Gs-cAMP 途径抑制 TRPM8 通道功能。IP 受体激动剂对 TRPM8 通道的强烈抑制涉及 Gq/11 偶联。这些效应在从小鼠 DRG 分离的神经元中也观察到。
我们的结果表明,IP 受体通过与 Gq/11 蛋白偶联来抑制 TRPM8 通道功能,这是一种不寻常的信号通路。该途径可能有助于更好地理解 TRPM8 通道和 IP 受体在调节疼痛和炎症中的作用。