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Drosophila Photoreceptors and Signaling Mechanisms

机译:果蝇感光体和信号机制

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摘要

Fly eyes have been a useful biological system in which fundamental principles of sensory signaling have been elucidated. The physiological optics of the fly compound eye, which was discovered in the Musca, Calliphora and Drosophila flies, has been widely exploited in pioneering genetic and developmental studies. The detailed photochemical cycle of bistable photopigments has been elucidated in Drosophila using the genetic approach. Studies of Drosophila phototransduction using the genetic approach have led to the discovery of novel proteins crucial to many biological processes. A notable example is the discovery of the inactivation no afterpotential D scaffold protein, which binds the light-activated channel, its activator the phospholipase C and it regulator protein kinase C. An additional protein discovered in the Drosophila eye is the light-activated channel transient receptor potential (TRP), the founding member of the diverse and widely spread TRP channel superfamily. The fly eye has thus played a major role in the molecular identification of processes and proteins with prime importance.
机译:蝇眼已经成为一种有用的生物学系统,其中已经阐明了感觉信号的基本原理。在蝇类,Calliphora和果蝇中发现的复眼复眼的生理光学特性已被广泛用于开创性的遗传和发育研究中。使用遗传方法已经阐明了果蝇中双稳态光色素的详细光化学循环。使用遗传方法对果蝇光转导的研究导致发现了对许多生物学过程至关重要的新型蛋白质。一个显着的例子是发现没有失活的后效D支架蛋白结合了光激活通道,其激活剂磷脂酶C和调节蛋白激酶C。果蝇眼中发现的另一种蛋白是光激活通道瞬变受体电位(TRP),是广泛分布的TRP通道超家族的创始成员。因此,蝇眼在分子鉴定过程和蛋白质中起着重要作用。

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