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对掺入视网膜视杆细胞质中的钙缓冲剂和环鸟苷酸光反应的影响。

Effects on the photoresponse of calcium buffers and cyclic GMP incorporated into the cytoplasm of retinal rods.

作者信息

Matthews H R, Torre V, Lamb T D

出版信息

Nature. 1985;313(6003):582-5. doi: 10.1038/313582a0.

Abstract

It is generally accepted that the light response in retinal rods involves a reduction of ionic permeability (predominantly to Na+) in the plasma membrane of the outer segment and that this is mediated by an internal messenger which diffuses between the disk and plasma membranes. There is controversy, however, over the identity of the diffusible substance; two alternative schemes have received widespread support (for review see refs 1,2). According to the 'calcium hypothesis', light stimulates the release into the cytoplasm of calcium, leading to the blockage of channels which are normally open in darkness, whereas based on the 'cyclic nucleotide hypothesis', cyclic GMP causes the opening of channels in the dark, but is hydrolysed by a light-activated phosphodiesterase. We report here effects of introducing calcium buffers and cyclic GMP into the rod cytoplasm by means of a patch pipette, which seem to be inconsistent with the calcium hypothesis.

摘要

人们普遍认为,视网膜视杆细胞中的光反应涉及外段质膜中离子通透性(主要是对Na +)的降低,并且这是由一种在盘膜和质膜之间扩散的内部信使介导的。然而,关于可扩散物质的身份存在争议;两种替代方案得到了广泛支持(综述见参考文献1,2)。根据“钙假说”,光刺激钙释放到细胞质中,导致在黑暗中通常开放的通道被阻断,而基于“环核苷酸假说”,环鸟苷酸在黑暗中导致通道开放,但被光激活的磷酸二酯酶水解。我们在此报告通过膜片吸管将钙缓冲剂和环鸟苷酸引入视杆细胞细胞质的作用,这似乎与钙假说不一致。

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