Beurg Maryline, Hafidi Aziz, Skinner Liam J, Ruel Jérome, Nouvian Régis, Henaff Morgana, Puel Jean-Luc, Aran Jean-Marie, Dulon Didier
Laboratoire de Biologie Cellulaire et Moléculaire de l'Audition, EA 3665 Université Victor Segalen Bordeaux 2, CHU Hôpital Pellegrin, 33076 Bordeaux, France.
Eur J Neurosci. 2005 Sep;22(5):1109-19. doi: 10.1111/j.1460-9568.2005.04310.x.
Ryanodine receptors (RyRs) are known to contribute to the regulation of free cytosolic calcium concentration. This family of intracellular calcium channels plays a significant role in calcium-induced-calcium-release (CICR), and have been implicated in calcium-dependent processes requiring exquisite spatio-temporal regulation. In order to characterize the importance of these intracellular calcium channels in cochlear physiology, we perfused the guinea pig cochlea with antagonistic concentrations of ryanodine. The distortion products of the cochlear microphonic and the compound action potential of the auditory nerve were reversibly inhibited by ryanodine (IC(50)=27.3 microm, Hill coefficient=1.9), indicating an action at the cochlear amplifier. Single auditory nerve fibre recordings showed that ryanodine slightly increased spontaneous firing rates by 22%, suggesting an excitatory effect of ryanodine. This paradoxical effect could be explained by an inhibitory action of ryanodine on presynaptic BK channels of inner hair cells (IHC). Indeed, perfusing iberiotoxin also increased the spontaneous firing activity of the auditory nerve fibres. Furthermore, whole-cell patch-clamp recordings demonstrated that ryanodine inhibits BK currents at the IHC level. Conversely, immunohistochemistry demonstrated a strong expression of RyR in IHCs and, more particularly, below the cuticular plate where membranous BK channels are highly expressed. Overall, the study demonstrated a key role for RyR and CICR in signal transduction at the IHCs. We therefore propose that coupled RyR--BK channels act to suppress the fast neurotransmission in IHCs.
已知兰尼碱受体(RyRs)有助于调节胞质游离钙浓度。这一家族的细胞内钙通道在钙诱导钙释放(CICR)中起重要作用,并参与了需要精确时空调节的钙依赖性过程。为了确定这些细胞内钙通道在耳蜗生理学中的重要性,我们用拮抗浓度的兰尼碱灌注豚鼠耳蜗。耳蜗微音器电位的畸变产物和听神经复合动作电位受到兰尼碱的可逆性抑制(IC(50)=27.3微摩尔,希尔系数=1.9),表明其作用于耳蜗放大器。单根听神经纤维记录显示,兰尼碱使自发放电率略有增加,增幅为22%,提示兰尼碱具有兴奋作用。这种矛盾的效应可以用兰尼碱对内毛细胞(IHC)突触前BK通道的抑制作用来解释。事实上,灌注埃博毒素也增加了听神经纤维的自发放电活动。此外,全细胞膜片钳记录表明,兰尼碱在IHC水平抑制BK电流。相反,免疫组织化学显示RyR在IHC中强烈表达,尤其是在角质膜下方,那里膜性BK通道高度表达。总体而言,该研究证明了RyR和CICR在IHC信号转导中的关键作用。因此,我们提出耦合的RyR-BK通道起到抑制IHC快速神经传递的作用。