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钙作为发育中上皮组织的信号整合器。

Calcium as a signal integrator in developing epithelial tissues.

作者信息

Brodskiy Pavel A, Zartman Jeremiah J

机构信息

Department of Chemical and Biomolecular Engineering, University of Notre Dame, 205 McCourtney Hall, Notre Dame, IN 46556, United States of America.

出版信息

Phys Biol. 2018 May 16;15(5):051001. doi: 10.1088/1478-3975/aabb18.

Abstract

Decoding how tissue properties emerge across multiple spatial and temporal scales from the integration of local signals is a grand challenge in quantitative biology. For example, the collective behavior of epithelial cells is critical for shaping developing embryos. Understanding how epithelial cells interpret a diverse range of local signals to coordinate tissue-level processes requires a systems-level understanding of development. Integration of multiple signaling pathways that specify cell signaling information requires second messengers such as calcium ions. Increasingly, specific roles have been uncovered for calcium signaling throughout development. Calcium signaling regulates many processes including division, migration, death, and differentiation. However, the pleiotropic and ubiquitous nature of calcium signaling implies that many additional functions remain to be discovered. Here we review a selection of recent studies to highlight important insights into how multiple signals are transduced by calcium transients in developing epithelial tissues. Quantitative imaging and computational modeling have provided important insights into how calcium signaling integration occurs. Reverse-engineering the conserved features of signal integration mediated by calcium signaling will enable novel approaches in regenerative medicine and synthetic control of morphogenesis.

摘要

解读组织特性如何通过整合局部信号在多个空间和时间尺度上形成,是定量生物学中的一项重大挑战。例如,上皮细胞的集体行为对于塑造发育中的胚胎至关重要。了解上皮细胞如何解读各种局部信号以协调组织水平的过程,需要从系统层面理解发育。整合指定细胞信号信息的多种信号通路需要诸如钙离子等第二信使。在整个发育过程中,钙离子信号的特定作用越来越多地被揭示出来。钙离子信号调节许多过程,包括分裂、迁移、死亡和分化。然而,钙离子信号的多效性和普遍性意味着许多其他功能仍有待发现。在这里,我们回顾了一些近期的研究,以突出对发育中的上皮组织中钙离子瞬变如何转导多种信号的重要见解。定量成像和计算建模为钙离子信号整合的发生方式提供了重要见解。对由钙离子信号介导的信号整合的保守特征进行逆向工程,将为再生医学和形态发生的合成控制带来新方法。

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