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ERK信号通路通过D-框增强子以差异的、波长依赖性方式调节光诱导的基因表达。

ERK Signaling Regulates Light-Induced Gene Expression via D-Box Enhancers in a Differential, Wavelength-Dependent Manner.

作者信息

Mracek Philipp, Pagano Cristina, Fröhlich Nadine, Idda M Laura, Cuesta Ines H, Lopez-Olmeda Jose Fernando, Sánchez-Vázquez F Javier, Vallone Daniela, Foulkes Nicholas S

机构信息

Institute of Toxicology and Genetics, Karlsruhe Institute of Technology, Eggenstein, Germany.

出版信息

PLoS One. 2013 Jun 26;8(6):e67858. doi: 10.1371/journal.pone.0067858. Print 2013.

Abstract

The day-night and seasonal cycles are dominated by regular changes in the intensity as well as spectral composition of sunlight. In aquatic environments the spectrum of sunlight is also strongly affected by the depth and quality of water. During evolution, organisms have adopted various key strategies in order to adapt to these changes, including the development of clocks and photoreceptor mechanisms. These mechanisms enable the detection and anticipation of regular changes in lighting conditions and thereby direct an appropriate physiological response. In teleosts, a growing body of evidence points to most cell types possessing complex photoreceptive systems. However, our understanding of precisely how these systems are regulated and in turn dictate changes in gene expression remains incomplete. In this manuscript we attempt to unravel this complexity by comparing the effects of two specific wavelengths of light upon signal transduction and gene expression regulatory mechanisms in zebrafish cells. We reveal a significant difference in the kinetics of light-induced gene expression upon blue and red light exposure. Importantly, both red and blue light-induced gene expression relies upon D-box enhancer promoter elements. Using pharmacological and genetic approaches we demonstrate that the ERK/MAPK pathway acts as a negative regulator of blue but not red light activated transcription. Thus, we reveal that D-box-driven gene expression is regulated via ERK/MAPK signaling in a strongly wavelength-dependent manner.

摘要

昼夜和季节循环受阳光强度以及光谱组成的规律性变化主导。在水生环境中,阳光光谱也受到水的深度和质量的强烈影响。在进化过程中,生物体采取了各种关键策略以适应这些变化,包括生物钟和光感受器机制的发展。这些机制能够检测并预测光照条件的规律性变化,从而引导适当的生理反应。在硬骨鱼中,越来越多的证据表明大多数细胞类型都拥有复杂的光感受系统。然而,我们对于这些系统究竟如何被调控以及如何反过来决定基因表达变化的理解仍不完整。在本手稿中,我们试图通过比较两种特定波长的光对斑马鱼细胞信号转导和基因表达调控机制的影响来揭示这种复杂性。我们发现蓝光和红光照射后光诱导基因表达的动力学存在显著差异。重要的是,红光和蓝光诱导的基因表达均依赖于D-box增强子启动子元件。通过药理学和遗传学方法,我们证明ERK/MAPK途径作为蓝光而非红光激活转录的负调节因子。因此,我们揭示D-box驱动的基因表达通过ERK/MAPK信号以强烈的波长依赖性方式受到调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ce2/3694018/e2fb7862060e/pone.0067858.g001.jpg

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