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纤毛内扩散的模拟表明,初级纤毛作为细胞信号增强器具有新的作用。

Simulation of intra-ciliary diffusion suggests a novel role of primary cilia as a cell-signaling enhancer.

作者信息

Takao Daisuke, Kamimura Shinji

机构信息

Department of Molecular Genetics, National Institute of Genetics, 1111 Yata, Mishima, Shizuoka, 411-8540, Japan.

Department of Biological Sciences, Faculty of Science and Engineering, Chuo University, 1-13-27 Kasuga, Bunkyo-ku, Tokyo, 112-8551, Japan.

出版信息

Dev Growth Differ. 2017 Jun;59(5):415-422. doi: 10.1111/dgd.12360. Epub 2017 Jun 2.

Abstract

Besides the role to generate a fluid flow in the surrounding medium, eukaryotic cilia have a crucial function in sensing external signals such as chemical or mechanical stimuli. A large body of work has shown that cilia are frequently found in various types of sensory cells and are closely related to many regulatory mechanisms in differentiation and development. However, we do not yet have a definitive answer to the fundamental question, "why cilia?" It has been a long-standing mystery why cells use cilia for sensing external signals. To shed light on this, we sought to describe the kinetics of signaling with theoretical approaches. Based on the results, here we propose a new role of cilia as a cell-signaling enhancer. The enhancing effect comes from restricted volume for the free intra-ciliary diffusion of molecules due to the cylindrical shape of cilia, which can facilitate quick accumulation of intracellular signaling molecules. Our simulations demonstrate that both the rate and amplitude of response in signal transduction depend on where the membrane receptors or channels are located along the ciliary shaft. In addition, the calculated transfer function of cilia regarded as a transmitter of external signals also suggests the properties of cilia as a signal enhancer. Since such unique composition of receptors and channels in cilia is found in various types of eukaryotic cells, signal enhancing is presumably one of the most essential and conserved roles of cilia.

摘要

除了在周围介质中产生流体流动的作用外,真核生物的纤毛在感知外部信号(如化学或机械刺激)方面具有关键功能。大量研究表明,纤毛常见于各种类型的感觉细胞中,并且与分化和发育中的许多调节机制密切相关。然而,对于“为什么是纤毛?”这个基本问题,我们尚未有明确答案。细胞为何利用纤毛来感知外部信号,这一直是个长期存在的谜团。为了阐明这一点,我们试图用理论方法描述信号传导的动力学。基于这些结果,我们在此提出纤毛作为细胞信号增强器的新作用。这种增强作用源于纤毛的圆柱形形状导致分子在纤毛内自由扩散的体积受限,这有助于细胞内信号分子的快速积累。我们的模拟表明,信号转导中反应的速率和幅度都取决于膜受体或通道沿纤毛轴的位置。此外,将纤毛视为外部信号传递者计算出的传递函数也表明了纤毛作为信号增强器的特性。由于在各种类型的真核细胞中都发现了纤毛中这种独特的受体和通道组成,信号增强大概是纤毛最基本和保守的作用之一。

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