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A quantitative account of the activation steps involved in phototransduction in amphibian photoreceptors.

机译:两栖动物感光器中涉及光转导的激活步骤的定量说明。

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摘要

1. We have undertaken a theoretical analysis of the steps contributing to the phototransduction cascade in vertebrate photoreceptors. We have explicitly considered only the activation steps, i.e. we have not dealt with the inactivation reactions. 2. From the theoretical analysis we conclude that a single photoisomerization leads to activation of the phosphodiesterase (PDE) with a time course which approximates a delayed ramp; the delay is contributed by several short first-order delay stages. 3. We derive a method for extracting the time course of PDE activation from the measured electrical response, and we apply this method to recordings of the photoresponse from salamander rods. The results confirm the prediction that the time course of PDE activation is a delayed ramp, with slope proportional to light intensity; the initial delay is about 10-20 ms. 4. We derive approximate analytical solutions for the electrical response of the photoreceptor to light, both for bright flashes (isotropic conditions) and for single photons (involving longitudinal diffusion of cyclic GMP in the outer segment). The response to a brief flash is predicted to follow a delayed Gaussian function of time, i.e. after an initial short delay the response should begin rising in proportion to t2. Further, the response-intensity relation is predicted to obey an exponential saturation. 5. These predictions are compared with experiment, and it is shown that the rising phase of the flash response is accurately described over a very wide range of intensities. We conclude that the model provides a comprehensive description of the activation steps of phototransduction at a molecular level.
机译:1.我们对造成脊椎动物感光器中光转导级联反应的步骤进行了理论分析。我们明确地只考虑了活化步骤,即我们没有处理失活反应。 2.从理论分析中我们得出结论,单个光异构化会导致磷酸二酯酶(PDE)活化,其时程接近延迟的斜坡;延迟是由几个短的一阶延迟阶段造成的。 3.我们推导了一种从测得的电响应中提取PDE活化时间过程的方法,并将该方法应用于sal棒的光响应记录。结果证实了以下预测:PDE激活的时间过程是延迟的斜坡,其斜率与光强度成正比。初始延迟约为10-20毫秒。 4.对于明亮的闪光(各向同性条件)和单个光子(涉及外部GG环GMP的纵向扩散),我们得出了感光器对光的电响应的近似解析解。预计对短暂闪光的响应将遵循时间的延迟高斯函数,即,在最初的短暂延迟之后,响应应开始与t2成比例地上升。此外,预测响应强度关系服从指数饱和。 5.将这些预测与实验进行了比较,结果表明,闪光响应的上升阶段可以在很宽的强度范围内准确描述。我们得出结论,该模型在分子水平上提供了光转导激活步骤的全面描述。

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