三十年 Ca2+ 火花研究:揭示细胞信号传递的数字原理。

Fujian Lu, Pengcheng Yang, Donghui Zhang, Xianhua Wang, Heping Cheng
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引用次数: 0

摘要

钙离子(Ca2+)是几乎所有细胞类型中最典型、最通用的第二信使。受 20 世纪 90 年代钙离子火花发现的启发,过去 30 年来活跃的研究揭示了作为钙离子信号传导基本事件的钙离子微域群,更重要的是,揭示了作为钙离子信号传导系统设计原理的数字模拟二元论。在这篇简短的综述中,我们简要总结了火花学领域的进展,并讨论了数字子系统如何发挥模拟系统不可能发挥的生理作用。此外,我们还试图探讨数字模拟二元论如何赋予简单阳离子信使以信号传递的速度、特异性、效率、稳定性和无与伦比的多功能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thirty years of Ca2+ spark research: digital principle of cell signaling unveiled.

Calcium ions (Ca2+) are an archetypical and most versatile second messenger in virtually all cell types. Inspired by the discovery of Ca2+ sparks in the 1990s, vibrant research over the last three decades has unveiled a constellation of Ca2+ microdomains as elementary events of Ca2+ signaling and, more importantly, a digital-analog dualism as the system design principle of Ca2+ signaling. In this brief review, we present a sketchy summary on advances in the field of sparkology, and discuss how the digital subsystem can fulfill physiological roles otherwise impossible for any analog system. In addition, we attempt to address how the digital-analog dualism endows the simple cation messenger with signaling speediness, specificity, efficiency, stability, and unparalleled versatility.

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