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Comparative study of phototactic and photophobic receptor chromophore properties in Chlamydomonas reinhardtii.

机译:莱茵衣藻光致和疏水受体生色团性质的比较研究。

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摘要

The motile, unicellular, eukaryotic alga Chlamydomonas reinhardtii exhibits two distinct behavioral reactions to light stimuli, phototaxis and the photophobic response. Both are mediated by retinal-containing receptors. This paper focuses on a direct comparison of the two photoresponses and the chromophore requirements for their photoreceptor(s). Using computerized motion analysis assays for phototaxis and photophobic responses by the same populations of cells, we measured the ability of various isomers and analogues of retinal to reconstitute photobehavior in the pigment-deficient mutant FN68. The results indicate that photophobic and phototaxis responses each require chromophores with an all-trans polyene chain configuration, planar ionone ring/polyene chain conformation, and the ability to isomerize around the retinal C13-C14 double bond. One difference between the two behaviors is that the photophobic response becomes highly desensitized after light stimuli to which the phototaxis response does not become desensitized, indicating the existence of at least one distinct step in the photophobic response pathway. A second difference is that the retinal regeneration of the photophobic response but not of phototaxis is inhibited by a 5-membered ring 13-trans-locked analogue. While showing close similarity in the chromophore structural requirements of the two behaviors, the results indicate that differences exist between the two responses at the level of their photoreceptor proteins and/or in their transduction processes.
机译:运动,单细胞,真核藻类衣藻对光刺激表现出两种不同的行为反应:趋光性和趋光性。两者均由含视网膜的受体介导。本文着重于直接比较两种光响应及其生色团对它们的感光体的要求。使用计算机运动分析法测定相同细胞群体的趋光性和疏光反应,我们测量了视网膜的各种异构体和类似物重构色素缺乏突变体FN68中光行为的能力。结果表明,憎光和趋光性响应各自需要具有全反式多烯链构型,平面紫罗兰酮环/多烯链构象以及在视网膜C13-C14双键周围异构化的生色团。两种行为之间的区别是,在光刺激未发生光敏性的光刺激之后,光致反应变得高度脱敏,这表明在光致应答路径中存在至少一个不同的步骤。第二个区别是,由5元环13-反式-锁定类似物抑制了疏水反应的视网膜再生,但没有抑制趋光性。虽然在两种行为的发色团结构要求中显示出非常相似的结果,但结果表明,两种响应在其感光蛋白水平和/或它们的转导过程中存在差异。

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