Davies Shireen A, Terhzaz Selim
University of Glasgow, Glasgow G11 6NU, UK.
J Exp Biol. 2009 Feb;212(Pt 3):387-400. doi: 10.1242/jeb.024513.
Calcium signalling and calcium homeostasis are essential for life. Studies of calcium signalling thus constitute a major proportion of research in the life sciences, although the majority of these studies are based in cell lines or isolated cells. Epithelial cells and tissues are essential in the regulation of critical physiological processes, including fluid transport; and so the modulation of such processes in vivo by cell-specific calcium signalling is thus of interest. In this review, we describe the approaches to measuring intracellular calcium in the genetically tractable fluid-transporting tissue, the Drosophila Malpighian tubule by targeting cell-specific protein-based calcium reporters to defined regions, cells and intracellular compartments of the intact Malpighian tubule. We also discuss recent findings on the roles of plasma membrane and intracellular calcium channels; and on organellar stores - including mitochondria, Golgi and peroxisomes - in Malpighian tubule function.
钙信号传导和钙稳态对生命至关重要。因此,钙信号传导的研究构成了生命科学研究的主要部分,尽管这些研究大多基于细胞系或分离的细胞。上皮细胞和组织在包括液体运输在内的关键生理过程的调节中至关重要;因此,细胞特异性钙信号传导在体内对这些过程的调节备受关注。在本综述中,我们描述了通过将基于细胞特异性蛋白质的钙报告基因靶向完整马氏管的特定区域、细胞和细胞内区室来测量遗传易处理的液体运输组织——果蝇马氏管中细胞内钙的方法。我们还讨论了关于质膜和细胞内钙通道的作用,以及包括线粒体、高尔基体和过氧化物酶体在内的细胞器钙库在马氏管功能中的最新发现。