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Effect of dietary docosahexaenoic acid on rhodopsin content and packing inphotoreceptor cell membranes

机译:日粮二十二碳六烯酸对虾视紫红质含量和包装的影响感光细胞膜

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摘要

Docosahexaenoic acid (DHA) is enriched in photoreceptor cell membranes. DHA deficiency impairs vision due to photoreceptor cell dysfunction, which is caused, at least in part, by reduced activity of rhodopsin, the light receptor that initiates phototransduction. It is unclear how the depletion of membrane DHA impacts the structural properties of rhodopsin and, in turn, its activity. Atomic force microscopy (AFM) was used to assess the impact of DHA deficiency on membrane structure and rhodopsin organization. AFM revealed that signaling impairment in photoreceptor cells is independent of the oligomeric status of rhodopsin and causes adaptations in photoreceptor cells where the content and density of rhodopsin in the membrane is increased. Functional and structural changes caused by DHA deficiency were reversible.
机译:二十二碳六烯酸(DHA)富含感光细胞膜。由于光感受器细胞功能障碍,DHA缺乏会损害视力,这至少部分是由视紫红质的活性降低引起的,视紫红质是一种引发光转导的光受体。尚不清楚膜DHA的消耗如何影响视紫红质的结构特性,进而影响其活性。原子力显微镜(AFM)用于评估DHA缺乏对膜结构和视紫红质组织的影响。原子力显微镜显示,感光细胞中的信号传导障碍与视紫红质的寡聚状态无关,并导致感光细胞的适应性增加,其中膜中视紫红质的含量和密度增加。 DHA缺乏引起的功能和结构改变是可逆的。

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