首页> 美国卫生研究院文献>Biophysical Journal >The nature of rhodopsin-triggered photocurrents in Chlamydomonas. I. Kinetics and influence of divalent ions.
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The nature of rhodopsin-triggered photocurrents in Chlamydomonas. I. Kinetics and influence of divalent ions.

机译:视紫红质触发衣藻的光电流的性质。 I.二价离子的动力学和影响。

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摘要

In the green alga Chlamydomonas chlamyrhodopsin fulfills its role as a light sensor by absorbing light and activating photoreceptor channels within the eyespot area. At intense light stimuli, the photoreceptor (P) current triggers a fast and a slow flagellar current that finally leads to backward swimming (stop response). Here we report about probing the photoreceptor current directly at the eyespot. This allows the detection of the whole P current with a size of above 50 pA. The P current appears with a delay of less than 50 microseconds, suggesting that rhodopsin and the P channel are closely coupled or form one ion channel complex. The Ca2+ dependence of the P current has been demonstrated with the established suction technique in a capacitive mode. The P current shows the maximum amplitude at only 300 nM Ca2+, and it gradually declines at higher Ca2+. In addition to Ca2+, the photoreceptor and the fast flagellar current can be carried by Sr2+ and Ba2+. Mg2+ is conducted less efficiently and at high concentrations blocks the photoreceptor channel. A motion analysis of the cells shows that only Ca2+ and Sr2+ can induce physiological stop responses, whereas the large Ba2+ currents cause abnormal long-lasting cell spiraling.
机译:在绿藻中,衣藻衣藻视紫红质通过吸收光并激活眼点区域内的感光通道来完成其作为光传感器的作用。在强烈的光刺激下,感光器(P)电流触发快速和缓慢的鞭毛电流,最终导致向后游泳(停止响应)。在这里,我们报告有关直接在视点处探测感光器电流的信息。这样就可以检测出大小大于50 pA的整个P电流。 P电流出现的延迟少于50微秒,表明视紫红质和P通道紧密耦合或形成一个离子通道复合物。 P电流对Ca2 +的依赖性已通过在电容模式下建立的抽吸技术得到了证明。 P电流仅在300 nM Ca2 +处显示最大振幅,而在较高Ca2 +处逐渐减小。除Ca2 +外,Sr2 +和Ba2 +还可携带感光体和快速鞭毛电流。 Mg2 +的传导效率较低,并且在高浓度下会阻断感光通道。对细胞的运动分析表明,只有Ca2 +和Sr2 +才能诱导生理停止反应,而较大的Ba2 +电流会导致异常的持久细胞螺旋。

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