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视网膜杆状细胞中天然环核苷酸门控通道的内部质子调节作用。

Modulation by internal protons of native cyclic nucleotide-gated channels from retinal rods.

作者信息

Picco C, Sanfilippo C, Gavazzo P, Menini A

机构信息

Istituto di Cibernetica e Biofisica, C.N.R, Genova, Italy.

出版信息

J Gen Physiol. 1996 Oct;108(4):265-76. doi: 10.1085/jgp.108.4.265.

Abstract

Ion channels directly activated by cyclic nucleotides are present in the plasma membrane of retinal rod outer segments. These channels can be modulated by several factors including internal pH (pH(i)). Native cyclic nucleotide-gated channels were studied in excised membrane patches from the outer segment of retinal rods of the salamander. Channels were activated by cGMP or cAMP and currents as a function of voltage and cyclic nucleotide concentrations were measured as pH(i) was varied between 7.6 and 5.0. Increasing internal proton concentrations reduced the current activated by cGMP without modifying the concentration (K(1/2)) of cGMP necessary for half-activation of the maximal current. This effect could be well described as a reduction of single-channel current by protonation of a single acidic residue with a pK(1) of 5.1. When channels were activated by cAMP a more complex phenomenon was observed. K(1/2) for cAMP decreased by increasing internal proton concentration whereas maximal currents activated by cAMP increased by lowering pH(i) from 7.6 to 5.7-5.5 and then decreased from pH(i) 5.5 to 5.0. This behavior was attributed both to a reduction in single-channel current as measured with cGMP and to an increase in channel open probability induced by the binding of three protons to sites with a pK(2) of 6.

摘要

由环核苷酸直接激活的离子通道存在于视网膜视杆细胞外段的质膜中。这些通道可受多种因素调节,包括细胞内pH值(pH(i))。对蝾螈视网膜视杆细胞外段的膜片进行研究,以探究天然的环核苷酸门控通道。通道由cGMP或cAMP激活,在pH(i)在7.6至5.0之间变化时,测量电流随电压和环核苷酸浓度的变化情况。细胞内质子浓度增加会降低由cGMP激活的电流,而不会改变最大电流半激活所需的cGMP浓度(K(1/2))。这种效应可以很好地描述为单个酸性残基质子化导致单通道电流降低,该酸性残基的pK(1)为5.1。当通道由cAMP激活时,观察到一种更为复杂的现象。cAMP的K(1/2)随着细胞内质子浓度增加而降低,而由cAMP激活的最大电流在pH(i)从7.6降至5.7 - 5.5时增加,然后在pH(i)从5.5降至5.0时降低。这种行为既归因于用cGMP测量时单通道电流的降低,也归因于三个质子与pK(2)为6的位点结合诱导的通道开放概率增加。

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