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胞体和神经突膜中的不同电势。

Distinct electric potentials in soma and neurite membranes.

作者信息

Bedlack R S, Wei M D, Fox S H, Gross E, Loew L M

机构信息

Department of Physiology, University of Connecticut Health Center, Farmington 06030.

出版信息

Neuron. 1994 Nov;13(5):1187-93. doi: 10.1016/0896-6273(94)90056-6.

Abstract

Structurally similar voltage-dependent ion channels may behave differently in different locations along the surface of a neuron. A possible reason could be that channels experience nonuniform electrical potentials along the plasmalemma. Here, we map the electrical potentials along the membrane of differentiated N1E-115 neuroblastoma cells with a potential-sensitive dye. We find that the intramembrane potential gradient is indeed more positive in the membranes of neurites than in the membranes of somata. This is not attributable to differences in ion conductances or surface charge densities between the membranes of neurites and somata; instead, it can be explained by differences in lipid composition. The spatial variation in intramembrane electrical potential may help account for electrophysiological and functional differences between neurites and somata.

摘要

结构相似的电压依赖性离子通道在神经元表面的不同位置可能表现不同。一个可能的原因是通道在质膜上经历不均匀的电势。在这里,我们用一种电位敏感染料绘制分化的N1E - 115神经母细胞瘤细胞膜上的电势图。我们发现,神经突膜内的膜电位梯度确实比胞体膜内的更正。这并非归因于神经突膜和胞体膜之间离子电导率或表面电荷密度的差异;相反,它可以用脂质组成的差异来解释。膜内电势的空间变化可能有助于解释神经突和胞体之间的电生理和功能差异。

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