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果蝇翅膀 imaginal discs 通过慢 InsP3R 介导的细胞间钙波对机械损伤作出反应。

Drosophila wing imaginal discs respond to mechanical injury via slow InsP3R-mediated intercellular calcium waves.

机构信息

Institute of Molecular Life Sciences, University of Zurich, Winterthurerstrasse 190, Zurich CH-8057, Switzerland.

出版信息

Nat Commun. 2016 Aug 9;7:12450. doi: 10.1038/ncomms12450.

Abstract

Calcium signalling is a highly versatile cellular communication system that modulates basic functions such as cell contractility, essential steps of animal development such as fertilization and higher-order processes such as memory. We probed the function of calcium signalling in Drosophila wing imaginal discs through a combination of ex vivo and in vivo imaging and genetic analysis. Here we discover that wing discs display slow, long-range intercellular calcium waves (ICWs) when mechanically stressed in vivo or cultured ex vivo. These slow imaginal disc intercellular calcium waves (SIDICs) are mediated by the inositol-3-phosphate receptor, the endoplasmic reticulum (ER) calcium pump SERCA and the key gap junction component Inx2. The knockdown of genes required for SIDIC formation and propagation negatively affects wing disc recovery after mechanical injury. Our results reveal a role for ICWs in wing disc homoeostasis and highlight the utility of the wing disc as a model for calcium signalling studies.

摘要

钙信号是一种高度多样的细胞通讯系统,调节细胞收缩等基本功能、受精等动物发育的基本步骤以及记忆等更高阶的过程。我们通过离体和体内成像以及遗传分析的组合,探究了钙信号在果蝇翅imaginal 盘(wing imaginal discs)中的功能。在这里,我们发现当体内机械应激或离体培养时,翅盘会显示出缓慢的、长程的细胞间钙波(ICWs)。这些缓慢的 imaginal 盘细胞间钙波(SIDICs)由肌醇-3-磷酸受体、内质网(ER)钙泵 SERCA 和关键间隙连接成分 Inx2 介导。SIDIC 形成和传播所需基因的敲低会对机械损伤后的翅盘恢复产生负面影响。我们的结果揭示了 ICWs 在翅盘同型性中的作用,并强调了翅盘作为钙信号研究模型的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbf4/4980486/53cdf712a16d/ncomms12450-f1.jpg

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