Hofmann Thomas, Chubanov Vladimir, Gudermann Thomas, Montell Craig
Department of Biological Chemistry, Johns Hopkins University School of Medicine, 725 North Wolfe Street, Baltimore, MD 21215, USA.
Curr Biol. 2003 Jul 1;13(13):1153-8. doi: 10.1016/s0960-9822(03)00431-7.
The TRPM subfamily of mammalian TRP channels displays unusually diverse activation mechanisms and selectivities. One member of this subfamily, TRPM5, functions in taste receptor cells and has been reported to be activated through G protein-coupled receptors linked to phospholipase C. However, the specific mechanisms regulating TRPM5 have not been described. Here, we demonstrate that TRPM5 is a monovalent-specific cation channel with a 23 pS unitary conductance. TRPM5 does not display constitutive activity. Rather, it is activated by stimulation of a receptor pathway coupled to phospholipase C and by IP(3)-mediated Ca(2+) release. Gating of TRPM5 was dependent on a rise in Ca(2+) because it was fully activated by Ca(2+). Unlike any previously described mammalian TRP channel, TRPM5 displayed voltage modulation and rapid activation and deactivation kinetics upon receptor stimulation. The most closely related protein, the Ca(2+)-activated monovalent-selective cation channel TRPM4b, also showed voltage modulation, although with slower relaxation kinetics than TRPM5. Taken together, the data demonstrate that TRPM5 and TRPM4b represent the first examples of voltage-modulated, Ca(2+)-activated, monovalent cation channels (VCAMs). The voltage modulation and rapid kinetics provide TRPM5 with an excellent set of properties for participating in signaling in taste receptors and other excitable cells.
哺乳动物瞬时受体电位(TRP)通道的TRPM亚家族具有异常多样的激活机制和选择性。该亚家族的一个成员TRPM5在味觉受体细胞中发挥作用,据报道它通过与磷脂酶C相连的G蛋白偶联受体被激活。然而,调节TRPM5的具体机制尚未得到描述。在这里,我们证明TRPM5是一种单价特异性阳离子通道,其单位电导为23 pS。TRPM5不表现出组成性活性。相反,它通过刺激与磷脂酶C偶联的受体途径以及IP(3)介导的Ca(2+)释放而被激活。TRPM5的门控依赖于Ca(2+)的升高,因为它被Ca(2+)完全激活。与任何先前描述的哺乳动物TRP通道不同,TRPM5在受体刺激时表现出电压调制以及快速激活和失活动力学。最密切相关的蛋白,即Ca(2+)激活的单价选择性阳离子通道TRPM4b,也表现出电压调制,尽管其弛豫动力学比TRPM5慢。综上所述,这些数据表明TRPM5和TRPM4b代表了电压调制、Ca(2+)激活的单价阳离子通道(VCAMs)的首个实例。电压调制和快速动力学为TRPM5参与味觉受体和其他可兴奋细胞中的信号传导提供了一组优异的特性。