Scott J W, Zottoli S J, Beatty N P, Korn H
Department of Anatomy and Cell Biology, Emory University, Atlanta, Georgia 30322.
J Comp Neurol. 1994 Jan 1;339(1):76-90. doi: 10.1002/cne.903390108.
Two neuron types contact the Mauthner cell (M cell) in the axon cap, a specialized region of high electrical resistance surrounding the initial segment of the M cell axon. One type produces a mixed electrical and chemical inhibition of the M cell. The second sends axons into the central core of the axon cap, where they spiral around the initial segment making both conventional synapses and gap junction contacts. The origin and synaptic effects of these spiral fibers have not been studied previously. When goldfish M cells were filled with Lucifer yellow, presynaptic spiral fibers were seen in the axon cap. These fibers could be traced back through the medial longitudinal fasciculus to their somata, near the contralateral fifth nerve motor nucleus. The same somata were labeled by horseradish peroxidase injected extracellularly into the axon cap. Recordings were made in the axon cap and the M cell after stimulation of hindbrain areas near the spiral fiber somata and axons. Extracellularly, a negative potential was observed close to the termination of the spiral fibers and termed the spiral fiber potential (SFP). Intracellularly, a graded, short latency depolarization of the M cell corresponded to the SFP and could cause the M cell to spike. This depolarization did not shunt the membrane, indicating that it may be produced through gap junctions. Intracellular responses to hindbrain stimulation also had a chloride-dependent, second component that shunted the membrane during paired-pulse testing. This inhibitory second component was probably evoked by cells other than the spiral fiber cells themselves.
两种神经元类型与轴突帽中的莫氏细胞(M细胞)相接触,轴突帽是围绕M细胞轴突起始段的一个具有高电阻的特殊区域。一种类型对M细胞产生电抑制和化学抑制的混合作用。第二种类型将轴突发送到轴突帽的中央核心,在那里它们围绕起始段呈螺旋状分布,形成传统突触和缝隙连接。这些螺旋纤维的起源和突触效应此前尚未得到研究。当用荧光黄填充金鱼的M细胞时,在轴突帽中可以看到突触前螺旋纤维。这些纤维可以通过内侧纵束追溯到它们位于对侧第五神经运动核附近的胞体。将辣根过氧化物酶细胞外注射到轴突帽中可标记相同的胞体。在刺激螺旋纤维胞体和轴突附近的后脑区域后,在轴突帽和M细胞中进行记录。在细胞外,在螺旋纤维终止处附近观察到一个负电位,称为螺旋纤维电位(SFP)。在细胞内,M细胞的分级、短潜伏期去极化与SFP相对应,并且可以导致M细胞产生动作电位。这种去极化不会使膜旁路,表明它可能是通过缝隙连接产生的。对后脑刺激的细胞内反应在配对脉冲测试期间还有一个依赖氯化物的第二成分,该成分会使膜旁路。这种抑制性第二成分可能是由螺旋纤维细胞本身以外的细胞诱发的。