Nauli Surya M, Pala Rajasekharreddy, Kleene Steven J
Department of Biomedical and Pharmaceutical Sciences, Chapman University, Irvine, California Department of Molecular and Cellular Physiology, University of Cincinnati, Cincinnati, Ohio, USA.
Curr Opin Nephrol Hypertens. 2016 Sep;25(5):452-8. doi: 10.1097/MNH.0000000000000251.
Primary cilia have become important organelles implicated in embryonic development, organogenesis, health, and diseases. Although many studies in cell biology have focused on changes in ciliary length or ciliogenesis, the most common readout for evaluating ciliary function is intracellular calcium.
Recent tools have allowed us to examine intracellular calcium in more precise locations, that is, the cilioplasm and cytoplasm. Advances in calcium imaging have also allowed us to identify which cilia respond to particular stimuli. Furthermore, direct electrophysiological measurement of ionic currents within a cilium has provided a wealth of information for understanding the sensory roles of primary cilia.
Calcium imaging and direct measurement of calcium currents demonstrate that primary cilia are sensory organelles that house several types of functional calcium channels. Although intracellular calcium now allows a functional readout for primary cilia, discussions on the relative contributions of the several channel types have just begun. Perhaps, all of these calcium channels are required and necessary to differentiate stimuli in different microenvironments.
初级纤毛已成为参与胚胎发育、器官形成、健康和疾病的重要细胞器。尽管细胞生物学中的许多研究都集中在纤毛长度的变化或纤毛发生上,但评估纤毛功能最常用的指标是细胞内钙。
最近的工具使我们能够在更精确的位置检测细胞内钙,即纤毛细胞质和细胞质。钙成像技术的进步也使我们能够确定哪些纤毛对特定刺激有反应。此外,对纤毛内离子电流的直接电生理测量为理解初级纤毛的感觉作用提供了丰富的信息。
钙成像和钙电流的直接测量表明,初级纤毛是容纳多种功能性钙通道的感觉细胞器。尽管细胞内钙现在允许对初级纤毛进行功能读数,但关于几种通道类型的相对贡献的讨论才刚刚开始。也许,所有这些钙通道都是区分不同微环境中刺激所必需的。