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二价离子对两栖类光感受器分离膜片中cGMP激活电流的影响。

Divalent effects on cGMP-activated currents in excised patches from amphibian photoreceptors.

作者信息

Tanaka J C, Furman R E

机构信息

Department of Biochemistry and Biophysics, University of Pennsylvania Medical School, Philadelphia 19104-6089.

出版信息

J Membr Biol. 1993 Feb;131(3):245-56. doi: 10.1007/BF02260113.

DOI:10.1007/BF02260113
PMID:7684086
Abstract

The light-sensitive current in photoreceptors is conducted by a single class of ion channels gated by the binding of multiple molecules of cytoplasmic cGMP. Both Na and Ca ions enter the outer segment through this channel and Ca behaves as a blocking ion, greatly reducing the influx of Na. Because intracellular Ca functions as the cytosolic messenger for light adaptation, and this channel is the major entry point for Ca into the outer segment, we seek a better understanding of the selectivity properties of the channel and how they affect intracellular Ca levels. In these studies, we added divalent cations to the cytoplasmic face of an excised patch at constant, symmetrical [Na]. Our results suggest a novel high-affinity divalent binding site at the internal face of the channel. At constant low levels of cGMP, the addition of 10-100 nM cytoplasmic Ca or Mg attenuated the current 5- to 10-fold. There is also a low-affinity site, midway through the transmembrane field; saturation of this site reduces the divalent-free current approximately 100-fold. The presence of a high-affinity cytoplasmic site raises the question of whether Ca regulates the photoreceptor current through a direct interaction with the channel perhaps altering the channel selectivity or kinetics.

摘要

光感受器中的光敏电流由一类单一的离子通道传导,该通道由多个细胞质cGMP分子结合门控。Na离子和Ca离子都通过这个通道进入外段,Ca作为一种阻断离子,大大减少了Na的内流。由于细胞内Ca作为光适应的胞质信使,且这个通道是Ca进入外段的主要入口点,我们试图更好地理解该通道的选择性特性以及它们如何影响细胞内Ca水平。在这些研究中,我们在恒定、对称的[Na]条件下,将二价阳离子添加到切除膜片的细胞质面。我们的结果表明,在通道的内表面存在一个新的高亲和力二价结合位点。在恒定的低水平cGMP条件下,添加10 - 100 nM的细胞质Ca或Mg会使电流衰减5至10倍。在跨膜区域的中间还有一个低亲和力位点;该位点饱和会使无二价离子电流降低约100倍。高亲和力细胞质位点的存在提出了一个问题,即Ca是否通过与通道的直接相互作用来调节光感受器电流,也许会改变通道的选择性或动力学。

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