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首页> 外文期刊>Journal of Molecular Biology >Toward Decoding Bioelectric Events in Xenopus Embryogenesis: New Methodology for Tracking Interplay Between Calcium and Resting Potentials In Vivo
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Toward Decoding Bioelectric Events in Xenopus Embryogenesis: New Methodology for Tracking Interplay Between Calcium and Resting Potentials In Vivo

机译:朝向卵宫胚胎发生的生物电事件解码:新方法用于跟踪钙与体内休息电位之间的相互作用

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摘要

Although chemical signaling during embryogenesis is readily addressed by a plethora of available techniques, the developmental functions of ionic signaling are still poorly understood. It is increasingly realized that bioelectric events in nonneural cells are critical for pattern regulation, but their study has been hampered by difficulties in monitoring and manipulating them in vivo. Recent developments in visualizing electrical signaling dynamics in the field of neuroscience have facilitated functional experiments that reveal instructive developmental bioelectric signals. However, there is a pressing need for additional tools to explore time dependent ionic signaling to understand complex endogenous dynamics. Here, we present methodological advances, including 4D imaging and data analysis, for improved tracking of calcium flux in the Xenopus laevis embryo, lowering the barrier for in vivo physiology work in this important model system. Using these techniques, we investigated the relationship between bioelectric ion channel activity and calcium, finding that cell hyperpolarization and depolarization both induce persistent static elevation of cytoplasmic calcium levels that fade over developmental time. These calcium changes correlate with increased cell mobility in early embryos and abnormal craniofacial morphology in later embryos. We thus highlight membrane potential modulation as a tractable tool for modulation of signaling cascades that rely on calcium as a transduction mechanism. The methods we describe facilitate the study of important novel aspects of developmental physiology, are extendable to numerous classes of existing and forthcoming fluorescent physiological reporters, and establish highly accessible, inexpensive protocols for their investigation. (C) 2019 Elsevier Ltd. All rights reserved.
机译:虽然胚胎发育过程中化学信号容易通过的可得技术过多处理,离子信令的发展功能仍然知之甚少。人们越来越意识到,在非神经细胞生物电活动是模式调节的关键,但他们的研究一直在监测和体内操纵他们的困难阻碍。在神经科学领域的可视化电子信号的动态最近的事态发展,揭示指导性发育的生物电信号易化功能实验。然而,有一个迫切需要额外的工具来探索时间相关的离子信号来理解复杂的内生动力。这里,我们提出方法的进步,包括4D成像和数据分析,在非洲爪蟾胚胎的钙流的改进的跟踪,降低屏障用于体内生理学工作在这一重要模型系统。使用这些技术,我们研究了生物电离子通道活性和钙之间的关系,发现细胞超极化和去极化两者诱导褪色随发育时间细胞质钙水平的持续静态的高程。这些钙的变化相关联,在早期胚胎增加细胞运动性和更高的胚胎颅面异常形态。因此,我们强调的膜电位调制作为信号依赖钙的转导机制级联的调制听话的工具。我们描述的方法促进发育生理的重要新颖方面的研究,是扩展到许多类现有的和即将到来的荧光生理记者,建立起非常方便,价廉的协议他们的调查。 (C)2019 Elsevier公司保留所有权利。

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