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从感觉受体细胞克隆的环核苷酸门控通道的内部质子调节机制。

Mechanisms of modulation by internal protons of cyclic nucleotide-gated channels cloned from sensory receptor cells.

作者信息

Gavazzo P, Picco C, Menini A

机构信息

Istituto di Cibernetica e Biofisica, Consiglio Nazionale delle Ricerche, Genova, Italy.

出版信息

Proc Biol Sci. 1997 Aug 22;264(1385):1157-65. doi: 10.1098/rspb.1997.0160.

Abstract

We have examined the modulation by internal protons of cyclic nucleotide-gated (CNG) channels cloned from bovine olfactory receptor cells and retinal rods. CNG channels were studied in excised inside-out membrane patches from Xenopus laevis oocytes previously injected with the mRNA encoding for the subunit 1 of olfactory or rod channels. Channels were activated by cGMP or cAMP, and currents as a function of cyclic nucleotide concentrations were measured as pHi varied between 7.6 and 5.0. Increasing internal proton concentrations caused a partial blockage of the single-channel current, consistent with protonation of a single acidic site with a pK1 of 4.5-4.7, both in rod and in olfactory CNG channels. Channel gating properties were also affected by internal protons. The open probability at low cyclic nucleotide concentrations was greatly increased by lowering pHi, and the increase was larger when channels were activated by cAMP than by cGMP. Therefore, internal protons affected both channel permeation and gating properties, causing a reduction in single-channel current and an increase in open probability. These effects are likely to be caused by different titratable groups on the channel.

摘要

我们研究了来自牛嗅觉受体细胞和视网膜视杆细胞的环核苷酸门控(CNG)通道内部质子的调节作用。在非洲爪蟾卵母细胞的内向外膜片上研究了CNG通道,这些卵母细胞先前已注射了编码嗅觉或视杆通道亚基1的mRNA。通道由cGMP或cAMP激活,并在细胞内pH值在7.6至5.0之间变化时测量作为环核苷酸浓度函数的电流。细胞内质子浓度增加导致单通道电流部分受阻,这与视杆和嗅觉CNG通道中单个酸性位点的质子化一致,其pK1为4.5 - 4.7。通道门控特性也受细胞内质子影响。在低环核苷酸浓度下,降低细胞内pH值会大大增加开放概率,并且当通道由cAMP激活时增加幅度大于由cGMP激活时。因此,细胞内质子影响通道通透和门控特性,导致单通道电流减少和开放概率增加。这些效应可能由通道上不同的可滴定基团引起。

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