Hiesberger Thomas, Igarashi Peter
Department of Internal Medicine, University of Texas Southwestern Medical Center, Dallas, Texas 75390-856, USA.
Curr Opin Nephrol Hypertens. 2005 Jul;14(4):373-7. doi: 10.1097/01.mnh.0000172725.37252.d8.
This review discusses recent experimental approaches to determine the function of primary cilia by conditional inactivation of genes crucial for cilia formation.
A functional role in the sensing of fluid flow was recently assigned to the primary cilia. This discovery shed light onto how cells sense dynamic fluid movements. Conditional inactivation of primary cilia formation in later ontogenic stages demonstrated the crucial role renal primary cilia play in the control of cell proliferation.
Primary cilia can act as flow sensors, transmitting signals by means of calcium influx into the cells. Structures based on primary cilia are also crucial for the function of photoreceptor cells and it can be expected that additional functions of these organelles will be determined in the future. An important experimental approach to elucidate the involvement of primary cilia in other physiological processes is to specifically inactivate genes crucial for formation of primary cilia. Morphological and physiological changes induced by the loss of primary cilia will help determine additional roles primary cilia play in physiology and organ development.
本综述讨论了通过条件性失活对纤毛形成至关重要的基因来确定初级纤毛功能的最新实验方法。
最近已确定初级纤毛在感知流体流动中具有功能作用。这一发现揭示了细胞如何感知动态流体运动。在个体发育后期阶段对初级纤毛形成进行条件性失活,证明了肾初级纤毛在控制细胞增殖中所起的关键作用。
初级纤毛可作为流量传感器,通过钙离子内流进入细胞来传递信号。基于初级纤毛的结构对光感受器细胞的功能也至关重要,预计这些细胞器的其他功能将在未来得到确定。阐明初级纤毛参与其他生理过程的一种重要实验方法是特异性失活对初级纤毛形成至关重要的基因。初级纤毛缺失所诱导的形态和生理变化将有助于确定初级纤毛在生理学和器官发育中所起的其他作用。