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光受体蛋白对莱茵衣藻眼点发育和趋光行为调控的影响。

Phototropin influence on eyespot development and regulation of phototactic behavior in Chlamydomonas reinhardtii.

机构信息

Department of Biology, Friedrich-Alexander-University, 91058 Erlangen, Germany.

出版信息

Plant Cell. 2012 Nov;24(11):4687-702. doi: 10.1105/tpc.112.103523. Epub 2012 Nov 30.

Abstract

The eyespot of Chlamydomonas reinhardtii is a light-sensitive organelle important for phototactic orientation of the alga. Here, we found that eyespot size is strain specific and downregulated in light. In a strain in which the blue light photoreceptor phototropin was deleted by homologous recombination, the light regulation of the eyespot size was affected. We restored this dysfunction in different phototropin complementation experiments. Complementation with the phototropin kinase fragment reduced the eyespot size, independent of light. Interestingly, overexpression of the N-terminal light, oxygen or voltage sensing domains (LOV1+LOV2) alone also affected eyespot size and phototaxis, suggesting that aside from activation of the kinase domain, they fulfill an independent signaling function in the cell. Moreover, phototropin is involved in adjusting the level of channelrhodopsin-1, the dominant primary receptor for phototaxis within the eyespot. Both the level of channelrhodopsin-1 at the onset of illumination and its steady state level during the light period are downregulated by phototropin, whereas the level of channelrhodopsin-2 is not significantly altered. Furthermore, a light intensity-dependent formation of a C-terminal truncated phototropin form was observed. We propose that phototropin is a light regulator of phototaxis that desensitizes the eyespot when blue light intensities increase.

摘要

莱茵衣藻的眼点是一种对藻类光向性有重要作用的感光细胞器。在这里,我们发现眼点大小具有菌株特异性,并在光照下下调。在通过同源重组缺失蓝光光受体向光素的菌株中,眼点大小的光调控受到影响。我们在不同的向光素互补实验中恢复了这种功能障碍。与向光素激酶片段的互补减少了眼点大小,而与光照无关。有趣的是,单独过表达 N 端光、氧或电压感应结构域(LOV1+LOV2)也会影响眼点大小和光向性,这表明除了激活激酶结构域外,它们在细胞中还具有独立的信号转导功能。此外,向光素参与调节通道视紫红质-1(channelrhodopsin-1)的水平,后者是眼点中光向性的主要初级受体。向光素下调光照起始时的通道视紫红质-1水平及其在光照期间的稳态水平,而通道视紫红质-2水平没有明显改变。此外,还观察到 C 端截断的向光素形式的光强度依赖性形成。我们提出,向光素是光向性的光调节因子,当蓝光强度增加时,它会使眼点脱敏。

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