Vincent Philippe Fy, Bouleau Yohan, Petit Christine, Dulon Didier
Bordeaux Neurocampus, Equipe Neurophysiologie de la Synapse Auditive, Université de Bordeaux, Bordeaux, France.
Unité de Génétique et Physiologie de l'Audition, Institut Pasteur, Paris, France.
Elife. 2015 Nov 14;4:e10988. doi: 10.7554/eLife.10988.
We show that a cage-shaped F-actin network is essential for maintaining a tight spatial organization of Cav1.3 Ca(2+) channels at the synaptic ribbons of auditory inner hair cells. This F-actin network is also found to provide mechanosensitivity to the Cav1.3 channels when varying intracellular hydrostatic pressure. Furthermore, this F-actin mesh network attached to the synaptic ribbons directly influences the efficiency of otoferlin-dependent exocytosis and its sensitivity to intracellular hydrostatic pressure, independently of its action on the Cav1.3 channels. We propose a new mechanistic model for vesicle exocytosis in auditory hair cells where the rate of vesicle recruitment to the ribbons is directly controlled by a synaptic F-actin network and changes in intracellular hydrostatic pressure.
我们发现,笼状的F-肌动蛋白网络对于维持听觉内毛细胞突触带处Cav1.3钙通道紧密的空间组织至关重要。还发现,当细胞内流体静压变化时,该F-肌动蛋白网络赋予Cav1.3通道机械敏感性。此外,附着于突触带的这种F-肌动蛋白网状网络直接影响 otoferlin 依赖性胞吐作用的效率及其对细胞内流体静压的敏感性,且与其对Cav1.3通道的作用无关。我们提出了一种听觉毛细胞中囊泡胞吐作用的新机制模型,其中囊泡募集到突触带的速率直接受突触F-肌动蛋白网络和细胞内流体静压变化的控制。