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光线适应和细胞外游离钙浓度降低通过不同机制使蟾蜍光感受器脱敏。

Adapting lights and lowered extracellular free calcium desensitize toad photoreceptors by differing mechanisms.

作者信息

Greenblatt R E

出版信息

J Physiol. 1983 Mar;336:579-605. doi: 10.1113/jphysiol.1983.sp014599.

Abstract

Extracellular recordings were made across the outer segment layer of isolated, superfused toad retinas. Under these recording conditions, the photovoltage reflects primarily the current flowing through the outer-segment membrane of red rods. In normal toad Ringer solution, a dim conditioning flash desensitized a test flash response. The desensitization reached a peak 1.8-2.0 s after the conditioning flash and then declined approximately as an exponential with time constant 6 s. Lowered extracellular calcium, [Ca2+]o, desensitized the photoresponse. It required approximately ten times more light to reach a half-maximal response for each ten-fold change in [Ca2+]o from 10(-6) to 10(-9) M. When [Ca2+]o was less than 10(-7) M, substitution of Li+ for Na+ as the predominant monovalent cation in the superfusate permitted responses to continue and a resensitization of up to approximately 1 log unit was observed. The effects of lowered [Ca2+]o on response kinetics were markedly different from the effects of background lights producing a comparable desensitization. Low [Ca2+]o increased absolute latency and time-to-peak of the flash response. Background lights decreased time-to-peak, leaving latency unchanged. The effects of background lights and lowered [Ca2+]o are not additive. Moderate backgrounds had little effect on the intensity/response function in low [Ca2+]o. Conditioning flashes facilitated the test flash response in 10(-7) M-[Ca2+]o superfusate. These results can be understood in terms of the Ca2+ hypothesis of transduction (Hagins & Yoshikami, 1974) if it is assumed that lowered [Ca2+]o exposes an endogenous Ca2+ buffer. The data also provide evidence for a role of Na+/Ca2+ exchange in regulating intracellular Ca2+ concentration in the toad photoreceptor. A quantitative model based on these assumptions is derived and compared with the experimental data.

摘要

在分离的、经灌注的蟾蜍视网膜外段层进行细胞外记录。在这些记录条件下,光电压主要反映流经红色视杆细胞外段膜的电流。在正常的蟾蜍林格氏液中,一个昏暗的条件闪光会使测试闪光反应脱敏。脱敏在条件闪光后1.8 - 2.0秒达到峰值,然后大约以时间常数为6秒的指数形式下降。细胞外钙浓度([Ca2+]o)降低会使光反应脱敏。从10(-6) M到10(-9) M,[Ca2+]o每变化10倍,达到半最大反应所需的光量大约增加10倍。当[Ca2+]o小于10(-7) M时,用Li+替代灌注液中作为主要单价阳离子的Na+可使反应继续,并观察到高达约1个对数单位的再敏化。[Ca2+]o降低对反应动力学的影响与产生类似脱敏作用的背景光的影响明显不同。低[Ca2+]o会增加闪光反应的绝对潜伏期和峰值时间。背景光会缩短峰值时间,而潜伏期不变。背景光和[Ca2+]o降低的影响不是相加的。适度的背景光对低[Ca2+]o时的强度/反应函数影响很小。在10(-7) M - [Ca2+]o的灌注液中,条件闪光会促进测试闪光反应。如果假设[Ca2+]o降低会暴露内源性Ca2+缓冲剂,那么这些结果可以根据转导的Ca2+假说(哈金斯和吉kami,1974)来理解。这些数据也为Na+/Ca2+交换在调节蟾蜍光感受器细胞内Ca2+浓度中的作用提供了证据。基于这些假设推导了一个定量模型,并与实验数据进行了比较。

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本文引用的文献

10
Membrane conductances of photoreceptors.光感受器的膜电导
Prog Biophys Mol Biol. 1981;37(2):91-147. doi: 10.1016/0079-6107(82)90021-9.

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