Jara-Oseguera Andrés, Llorente Itzel, Rosenbaum Tamara, Islas León D
Departamento de Fisiología, Facultad de Medicina, Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, D.F., 04510, México
J Gen Physiol. 2008 Nov;132(5):547-62. doi: 10.1085/jgp.200810051.
The transient receptor potential vanilloid 1 (TRPV1) nonselective cationic channel is a polymodal receptor that activates in response to a wide variety of stimuli. To date, little structural information about this channel is available. Here, we used quaternary ammonium ions (QAs) of different sizes in an effort to gain some insight into the nature and dimensions of the pore of TRPV1. We found that all four QAs used, tetraethylammonium (TEA), tetrapropylammonium (TPrA), tetrabutylammonium, and tetrapentylammonium, block the TRPV1 channel from the intracellular face of the channel in a voltage-dependent manner, and that block by these molecules occurs with different kinetics, with the bigger molecules becoming slower blockers. We also found that TPrA and the larger QAs can only block the channel in the open state, and that they interfere with the channel's activation gate upon closing, which is observed as a slowing of tail current kinetics. TEA does not interfere with the activation gate, indicating that this molecule can reside in its blocking site even when the channel is closed. The dependence of the rate constants on the size of the blocker suggests a size of around 10 A for the inner pore of TRPV1 channels.
瞬时受体电位香草酸亚型1(TRPV1)非选择性阳离子通道是一种多模态受体,可对多种刺激作出反应而激活。迄今为止,关于该通道的结构信息很少。在此,我们使用了不同大小的季铵离子(QAs),以期深入了解TRPV1通道孔的性质和尺寸。我们发现,所使用的四种季铵离子,四乙铵(TEA)、四丙铵(TPrA)、四丁铵和四戊铵,均以电压依赖性方式从通道的胞内面阻断TRPV1通道,并且这些分子的阻断表现出不同的动力学,分子越大,阻断速度越慢。我们还发现,TPrA和较大的季铵离子只能在通道处于开放状态时阻断通道,并且它们在通道关闭时会干扰通道的激活门控,这表现为尾电流动力学减慢。TEA不会干扰激活门控,这表明即使通道关闭,该分子也可以位于其阻断位点。速率常数对阻断剂大小的依赖性表明TRPV1通道的内孔尺寸约为10埃。