King M, Housley G D, Raybould N P, Greenwood D, Salih S G
Department of Physiology, Faculty of Medicine and Health Science, University of Auckland, New Zealand.
Neuroreport. 1998 Aug 3;9(11):2467-74. doi: 10.1097/00001756-199808030-00008.
Reissner's membrane forms a partition between the endolymphatic and perilymphatic cochlear compartments. Expression of the P2X2 receptor subunit which assembles to form ATP-gated ion channels was detected in guinea-pig Reissner's membrane using the reverse transcription polymerase chain reaction (RT-PCR). The P2X2 receptor subunit protein was localized to the epithelial cells which line the endolymphatic surface of Reissner's membrane using confocal immunofluorescence. The P2X receptor expression in Reissner's membrane was functionally confirmed using whole-cell voltage-clamp. An inwardly rectifying conductance was activated in Reissner's membrane epithelial cells in the presence of extracellular ATP (100 microM). This conductance had a pharmacological profile compatible with the P2X2 receptor designation, but exhibited substantial desensitisation which may be attributable to additional P2X receptor subunits. This study indicates that extracellular ATP, a humoral factor within scala media, acts via ATP-gated ion channels expressed by Reissner's membrane epithelial cells to decrease the driving force for sound transduction.
内耳膜迷路形成了内淋巴和外淋巴耳蜗腔之间的分隔。利用逆转录聚合酶链反应(RT-PCR)在豚鼠内耳膜迷路中检测到了组装形成ATP门控离子通道的P2X2受体亚基的表达。使用共聚焦免疫荧光法将P2X2受体亚基蛋白定位到内耳膜迷路内淋巴表面的上皮细胞。通过全细胞电压钳在功能上证实了内耳膜迷路中P2X受体的表达。在存在细胞外ATP(100微摩尔)的情况下,内耳膜迷路上皮细胞中激活了内向整流电导。这种电导具有与P2X2受体命名相符的药理学特征,但表现出显著的脱敏现象,这可能归因于额外的P2X受体亚基。这项研究表明,细胞外ATP作为中阶内的一种体液因子,通过内耳膜迷路上皮细胞表达的ATP门控离子通道起作用,以降低声音转导的驱动力。