Cueva Juan G, Mulholland Atticus, Goodman Miriam B
Department of Molecular and Cellular Physiology, Stanford University School of Medicine, Stanford, California 94305, USA.
J Neurosci. 2007 Dec 19;27(51):14089-98. doi: 10.1523/JNEUROSCI.4179-07.2007.
Hearing, touch and proprioception are thought to involve direct activation of mechano-electrical transduction (MeT) channels. In Caenorhabditis elegans touch receptor neurons (TRNs), such channels contain two pore-forming subunits (MEC-4 and MEC-10) and two auxiliary subunits (MEC-2 and MEC-6). MEC-4 and MEC-10 belong to a large superfamily of ion channel proteins (DEG/ENaCs) that form nonvoltage-gated, amiloride-sensitive Na+ channels. In TRNs, unique 15-protofilament microtubules and an electron-dense extracellular matrix have been proposed to serve as gating tethers critical for MeT channel activation. We combined high-pressure freezing and serial-section immunoelectron microscopy to determine the position of MeT channels relative to putative gating tethers. MeT channels were visualized using antibodies against MEC-4 and MEC-2. This nanometer-resolution view of a sensory MeT channel establishes structural constraints on the mechanics of channel gating. We show here that MEC-2 and MEC-5 collagen, a putative extracellular tether, occupy overlapping but distinct domains in TRN neurites. Although channels decorate all sides of TRN neurites; they are not associated with the distal endpoints of 15-protofilament microtubules hypothesized to be gating tethers. These specialized microtubules, which are unique to TRNs, assemble into a cross-linked bundle connected by a network of kinked filaments to the neurite membrane. We speculate that the microtubule bundle converts external point loads into membrane stretch which, in turn, facilitates MeT channel activation.
听觉、触觉和本体感觉被认为涉及机械电转导(MeT)通道的直接激活。在秀丽隐杆线虫的触觉受体神经元(TRN)中,此类通道包含两个成孔亚基(MEC - 4和MEC - 10)和两个辅助亚基(MEC - 2和MEC - 6)。MEC - 4和MEC - 10属于离子通道蛋白的一个大型超家族(DEG/ENaCs),它们形成非电压门控、amiloride敏感的Na⁺通道。在TRN中,独特的15 - 原纤维微管和电子致密的细胞外基质被认为是对MeT通道激活至关重要的门控系链。我们结合高压冷冻和连续切片免疫电子显微镜来确定MeT通道相对于假定门控系链的位置。使用针对MEC - 4和MEC - 2的抗体来可视化MeT通道。这种对感觉MeT通道的纳米级分辨率视图为通道门控机制建立了结构限制。我们在此表明,MEC - 2和MEC - 5胶原蛋白(一种假定的细胞外系链)在TRN神经突中占据重叠但不同的区域。尽管通道分布在TRN神经突的各个侧面;但它们与被假设为门控系链的15 - 原纤维微管的远端端点无关。这些TRN特有的特殊微管组装成一个交联束,通过扭结丝网络与神经突膜相连。我们推测微管束将外部点载荷转化为膜拉伸,进而促进MeT通道的激活。