首页> 美国卫生研究院文献>The Journal of General Physiology >Photopigment quenching is Ca2+ dependent and controls response duration in salamander L-cone photoreceptors
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Photopigment quenching is Ca2+ dependent and controls response duration in salamander L-cone photoreceptors

机译:光色素猝灭是依赖于Ca2 +的并控制L L-锥体感光细胞的响应持续时间

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摘要

The time scale of the photoresponse in photoreceptor cells is set by the slowest of the steps that quench the light-induced activity of the phototransduction cascade. In vertebrate photoreceptor cells, this rate-limiting reaction is thought to be either shutoff of catalytic activity in the photopigment or shutoff of the pigment's effector, the transducin-GTP–phosphodiesterase complex. In suction pipette recordings from isolated salamander L-cones, we found that preventing changes in internal [Ca2+] delayed the recovery of the light response and prolonged the dominant time constant for recovery. Evidence that the Ca2+-sensitive step involved the pigment itself was provided by the observation that removal of Cl from the pigment's anion-binding site accelerated the dominant time constant for response recovery. Collectively, these observations indicate that in L-cones, unlike amphibian rods where the dominant time constant is insensitive to [Ca2+], pigment quenching rate limits recovery and provides an additional mechanism for modulating the cone response during light adaptation.
机译:感光细胞中光反应的时间尺度是由最慢的步骤来设定的,这些步骤中止了光诱导级联反应的光诱导活性。在脊椎动物的感光细胞中,这种限速反应被认为是关闭了光色素的催化活性,或者关闭了色素的效应子,即转导蛋白-GTP-磷酸二酯酶复合物。在分离的sal L-锥的吸液管记录中,我们发现防止内部[Ca 2 + ]的变化会延迟光响应的恢复,并延长恢复的主要时间常数。 Ca 2 + 敏感步骤涉及颜料本身的证据是通过观察到从颜料的阴离子结合位点除去Cl -可以加速颜料的主时间常数。反应恢复。总的来说,这些观察结果表明,在L锥中,与主要时间常数对[Ca 2 + ]不敏感的两栖动物棒不同,色素猝灭速率限制了回收率,并提供了调节锥体反应的其他机制。在光线适应过程中。

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