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有证据表明,始于细胞表面的基于离子的信号传导可能会影响细胞核中的染色质动态和与染色质结合的蛋白质。

Evidence That Ion-Based Signaling Initiating at the Cell Surface Can Potentially Influence Chromatin Dynamics and Chromatin-Bound Proteins in the Nucleus.

作者信息

Matzke Antonius J M, Lin Wen-Dar, Matzke Marjori

机构信息

Institute of Plant and Microbial Biology, Academia Sinica, Taipei, Taiwan.

出版信息

Front Plant Sci. 2019 Oct 17;10:1267. doi: 10.3389/fpls.2019.01267. eCollection 2019.

Abstract

We have developed tools and performed pilot experiments to test the hypothesis that an intracellular ion-based signaling pathway, provoked by an extracellular stimulus acting at the cell surface, can influence interphase chromosome dynamics and chromatin-bound proteins in the nucleus. The experimental system employs chromosome-specific fluorescent tags and the genome-encoded fluorescent pH sensor SEpHluorinA227D, which has been targeted to various intracellular membranes and soluble compartments in root cells of . We are using this system and three-dimensional live cell imaging to visualize whether fluorescent-tagged interphase chromosome sites undergo changes in constrained motion concurrently with reductions in membrane-associated pH elicited by extracellular ATP, which is known to trigger a cascade of events in plant cells including changes in calcium ion concentrations, pH, and membrane potential. To examine possible effects of the proposed ion-based signaling pathway directly at the chromatin level, we generated a pH-sensitive fluorescent DNA-binding protein that allows pH changes to be monitored at specific genomic sites. Results obtained using these tools support the existence of a rapid, ion-based signaling pathway that initiates at the cell surface and reaches the nucleus to induce alterations in interphase chromatin mobility and the surrounding pH of chromatin-bound proteins. Such a pathway could conceivably act under natural circumstances to allow external stimuli to swiftly influence gene expression by affecting interphase chromosome movement and the structures and/or activities of chromatin-associated proteins.

摘要

我们已经开发了工具并进行了初步实验,以检验以下假设:由作用于细胞表面的细胞外刺激引发的基于细胞内离子的信号通路,可以影响间期染色体动态以及细胞核中与染色质结合的蛋白质。该实验系统采用了染色体特异性荧光标签和基因组编码的荧光pH传感器SEpHluorinA227D,该传感器已靶向于根细胞的各种细胞内膜和可溶性区室。我们正在使用该系统和三维活细胞成像技术,以观察荧光标记的间期染色体位点的受限运动是否会随着细胞外ATP引起的膜相关pH值降低而发生变化,已知细胞外ATP会触发植物细胞中的一系列事件,包括钙离子浓度、pH值和膜电位的变化。为了直接在染色质水平上研究拟议的基于离子的信号通路的可能影响,我们生成了一种pH敏感的荧光DNA结合蛋白,该蛋白可以监测特定基因组位点的pH变化。使用这些工具获得的结果支持存在一种快速的、基于离子的信号通路,该通路始于细胞表面并到达细胞核,以诱导间期染色质迁移率以及染色质结合蛋白周围pH值的改变。可以想象,这样的通路在自然情况下可能起作用,使外部刺激通过影响间期染色体运动以及染色质相关蛋白的结构和/或活性来迅速影响基因表达。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95d2/6811650/e2f0ccc282de/fpls-10-01267-g001.jpg

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