Smith E S, Cadiou H, McNaughton P A
Department of Pharmacology, University of Cambridge, Tennis Court Road, Cambridge CB2 1PD, UK.
Neuroscience. 2007 Mar 16;145(2):686-98. doi: 10.1016/j.neuroscience.2006.12.024. Epub 2007 Jan 29.
Acid-sensing ion channels (ASICs) are activated by a decrease in extracellular pH. ASICs are expressed in nociceptive sensory neurons, and several lines of evidence suggest that they are responsible for signaling the pain caused by extracellular acidification, but little is understood of the modulation of ASICs by pro-inflammatory factors. Using whole-cell patch clamp we demonstrate that low pH evokes three distinct inward currents in rat dorsal root ganglion neurons: a slowly inactivating transient current, a rapidly inactivating transient current, and a sustained current. All three currents were potentiated by arachidonic acid (AA), to 123%, 171%, and 264% of peak current, respectively. Membrane stretch had no effect on proton-gated currents, implying that AA is unlikely to act via local membrane deformation. The current carried by heterologously expressed ASIC1a and ASIC3 was also potentiated by AA. AA potentiates ASIC activation by a direct mechanism, because inhibition of AA metabolism had no effect on potentiation, and potentiation of single ASIC2a channels could be observed in cell-free patches. Potentiation by lipids with the same chain length as AA increased as the number of double bonds was increased. AA is known to be released in inflammation and the results suggest that AA may be an important pro-inflammatory agent responsible for enhancing acid-mediated pain.
酸敏感离子通道(ASICs)由细胞外pH值降低激活。ASICs在伤害性感觉神经元中表达,多项证据表明它们负责传递细胞外酸化引起的疼痛信号,但对促炎因子对ASICs的调节了解甚少。我们使用全细胞膜片钳技术证明,低pH值在大鼠背根神经节神经元中引发三种不同的内向电流:一种缓慢失活的瞬态电流、一种快速失活的瞬态电流和一种持续电流。所有这三种电流都被花生四烯酸(AA)增强,分别达到峰值电流的123%、171%和264%。膜拉伸对质子门控电流没有影响,这意味着AA不太可能通过局部膜变形起作用。异源表达的ASIC1a和ASIC3所携带的电流也被AA增强。AA通过直接机制增强ASIC激活,因为抑制AA代谢对增强作用没有影响,并且在无细胞贴片实验中可以观察到单个ASIC2a通道的增强作用。与AA具有相同链长的脂质的增强作用随着双键数量的增加而增加。已知AA在炎症中释放,结果表明AA可能是一种重要的促炎剂,负责增强酸介导的疼痛。