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视网膜视杆和视锥细胞外段中的钙离子通量:环鸟苷酸门控离子通道的钙离子选择性及钙离子清除率的差异

Ca2+ flux in retinal rod and cone outer segments: differences in Ca2+ selectivity of the cGMP-gated ion channels and Ca2+ clearance rates.

作者信息

Korenbrot J I

机构信息

Department of Physiology, School of Medicine, University of California at San Francisco, USA.

出版信息

Cell Calcium. 1995 Oct;18(4):285-300. doi: 10.1016/0143-4160(95)90025-x.

Abstract

In intact rod and cone photoreceptors of various vertebrate species, depolarization in the dark to > or = +20 mV specifically activates the cGMP-dependent conductance in the outer segment. This activation reflects a voltage-dependent decrease in cytoplasmic Ca2+ and the consequent activation of a Ca(2+)-dependent guanylyl cyclase. The conductance activation in cones is much faster in time course and larger in extent than that in rods. Simulations of the experimental results suggest that these differences arise from differences in Ca2+ homeostasis in the rod and cone outer segments. Direct measurements demonstrate that, indeed, the Ca2+ permeability of the cGMP-gated channels is higher in cones than in rods. Also, as was previously known, the rate of Ca2+ efflux from cone outer segments is higher than that in rods. Therefore, a given light-dependent change in membrane current should cause a much larger and much quicker decrease in Ca2+ concentration in cones than in rods. The activity of every Ca(2+)-dependent biochemical event in the outer segment should, hence, change more rapidly and to a larger extent in cones than in rods. We propose that these kinetic and stoichiometric differences in the function of Ca(2+)-dependent processes is important in explaining the difference in the transduction signal of the two receptor types.

摘要

在各种脊椎动物物种完整的视杆和视锥光感受器中,黑暗中去极化至大于或等于+20 mV会特异性激活外段中的环鸟苷酸(cGMP)依赖性电导。这种激活反映了细胞质中Ca2+的电压依赖性降低以及随之而来的Ca2+依赖性鸟苷酸环化酶的激活。视锥中的电导激活在时间进程上比视杆中的快得多,且程度上也更大。对实验结果的模拟表明,这些差异源于视杆和视锥外段中Ca2+稳态的差异。直接测量表明,事实上,cGMP门控通道的Ca2+通透性在视锥中比在视杆中更高。此外,如先前所知,视锥外段中Ca2+外流的速率高于视杆中的。因此,给定的光依赖性膜电流变化在视锥中引起的Ca2+浓度降低应比在视杆中更大、更快。因此,外段中每个Ca2+依赖性生化事件的活性在视锥中应比在视杆中变化得更快、程度更大。我们提出,Ca2+依赖性过程功能上的这些动力学和化学计量学差异对于解释两种受体类型转导信号的差异很重要。

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