Schmidt Melanie, Gessner Gunther, Luff Matthias, Heiland Ines, Wagner Volker, Kaminski Marc, Geimer Stefan, Eitzinger Nicole, Reissenweber Tobias, Voytsekh Olga, Fiedler Monika, Mittag Maria, Kreimer Georg
Institute of Biology, Friedrich-Alexander-University, D-91058 Erlangen, Germany.
Plant Cell. 2006 Aug;18(8):1908-30. doi: 10.1105/tpc.106.041749. Epub 2006 Jun 23.
Flagellate green algae have developed a visual system, the eyespot apparatus, which allows the cell to phototax. To further understand the molecular organization of the eyespot apparatus and the phototactic movement that is controlled by light and the circadian clock, a detailed understanding of all components of the eyespot apparatus is needed. We developed a procedure to purify the eyespot apparatus from the green model alga Chlamydomonas reinhardtii. Its proteomic analysis resulted in the identification of 202 different proteins with at least two different peptides (984 in total). These data provide new insights into structural components of the eyespot apparatus, photoreceptors, retina(l)-related proteins, members of putative signaling pathways for phototaxis and chemotaxis, and metabolic pathways within an algal visual system. In addition, we have performed a functional analysis of one of the identified putative components of the phototactic signaling pathway, casein kinase 1 (CK1). CK1 is also present in the flagella and thus is a promising candidate for controlling behavioral responses to light. We demonstrate that silencing CK1 by RNA interference reduces its level in both flagella and eyespot. In addition, we show that silencing of CK1 results in severe disturbances in hatching, flagellum formation, and circadian control of phototaxis.
鞭毛绿藻已经进化出一种视觉系统,即眼点器,它能使细胞进行趋光运动。为了进一步了解眼点器的分子组织以及由光和生物钟控制的趋光运动,需要详细了解眼点器的所有组成部分。我们开发了一种从绿色模式藻类莱茵衣藻中纯化眼点器的方法。其蛋白质组学分析鉴定出了202种不同的蛋白质,每种蛋白质至少有两种不同的肽段(总共984种)。这些数据为眼点器的结构成分、光感受器、视网膜相关蛋白、推测的趋光和趋化信号通路成员以及藻类视觉系统内的代谢途径提供了新的见解。此外,我们对鉴定出的趋光信号通路的一个推测成分酪蛋白激酶1(CK1)进行了功能分析。CK1也存在于鞭毛中,因此是控制对光行为反应的一个有前景的候选者。我们证明,通过RNA干扰使CK1沉默会降低其在鞭毛和眼点中的水平。此外,我们表明,CK1沉默会导致孵化、鞭毛形成以及趋光运动的昼夜节律控制出现严重紊乱。