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Blue Light Increases Neuronal Activity-Regulated Gene Expression in the Absence of Optogenetic Proteins

机译:蓝光增加了光遗传学蛋白缺乏时神经元活动调节的基因表达。

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摘要

Optogenetics is widely used to control diverse cellular functions with light, requiring experimenters to expose cells to bright light. Because extended exposure to visible light can be toxic to cells, it is important to characterize the effects of light stimulation on cellular function in the absence of optogenetic proteins. Here we exposed mouse cortical cultures with no exogenous optogenetic proteins to several hours of flashing blue, red, or green light. We found that exposing these cultures to as short as 1 h of blue light, but not red or green light, results in an increase in the expression of neuronal activity-regulated genes. Our findings suggest that blue light stimulation is ill suited to long-term optogenetic experiments, especially those that measure transcription, and they emphasize the importance of performing light-only control experiments in samples without optogenetic proteins.
机译:光遗传学被广泛用于控制光的多种细胞功能,要求实验者将细胞暴露于强光下。由于长时间暴露于可见光可能对细胞有毒,因此在不存在光遗传蛋白的情况下表征光刺激对细胞功能的影响就很重要。在这里,我们将没有外源光遗传蛋白的小鼠皮质培养物暴露于数小时闪烁的蓝色,红色或绿色光下。我们发现,将这些培养物暴露在短短1 h的蓝光下,而不是红色或绿色的光下,会导致神经元活性调节基因的表达增加。我们的发现表明,蓝光刺激不适用于长期的光遗传学实验,尤其是那些测量转录的实验,并且它们强调了在没有光遗传蛋白的样品中进行仅光对照实验的重要性。

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