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成像哺乳动物初级纤毛中的鞭毛内运输。

Imaging intraflagellar transport in mammalian primary cilia.

作者信息

Besschetnova Tatiana Y, Roy Barnali, Shah Jagesh V

机构信息

Renal Division, Department of Medicine, Brigham and Women's Hospital and Department of SystemsBiology, Harvard Medical School, Boston, Massachusetts 02115, USA.

出版信息

Methods Cell Biol. 2009;93:331-46. doi: 10.1016/S0091-679X(08)93016-8. Epub 2009 Dec 4.

Abstract

The primary cilium is a specialized organelle that projects from the surface of many cell types. Unlike its motile counterpart it cannot beat but does transduce extracellular stimuli into intracellular signals and acts as a specialized subcellular compartment. The cilium is built and maintained by the transport of proteins and other biomolecules into and out of this compartment. The trafficking machinery for the cilium is referred to as IFT or intraflagellar transport. It was originally identified in the green algae Chlamydomonas and has been discovered throughout the evolutionary tree. The IFT machinery is widely conserved and acts to establish, maintain, and disassemble cilia and flagella. Understanding the role of IFT in cilium signaling and regulation requires a methodology for observing it directly. Here we describe current methods for observing the IFT process in mammalian primary cilia through the generation of fluorescent protein fusions and their expression in ciliated cell lines. The observation protocol uses high-resolution time-lapse microscopy to provide detailed quantitative measurements of IFT particle velocities in wild-type cells or in the context of genetic or other perturbations. Direct observation of IFT trafficking will provide a unique tool to dissect the processes that govern cilium regulation and signaling.

摘要

初级纤毛是一种从多种细胞类型表面伸出的特殊细胞器。与它的运动性对应物不同,它不能摆动,但能将细胞外刺激转化为细胞内信号,并作为一个特殊的亚细胞区室发挥作用。纤毛是通过蛋白质和其他生物分子进出这个区室的运输来构建和维持的。用于纤毛的运输机制被称为IFT或鞭毛内运输。它最初是在绿藻衣藻中被鉴定出来的,并且在整个进化树中都有发现。IFT机制广泛保守,作用是建立、维持和拆解纤毛和鞭毛。了解IFT在纤毛信号传导和调节中的作用需要一种直接观察它的方法。在这里,我们描述了通过生成荧光蛋白融合体并在纤毛细胞系中表达来观察哺乳动物初级纤毛中IFT过程的当前方法。观察方案使用高分辨率延时显微镜来提供野生型细胞中或在基因或其他扰动情况下IFT颗粒速度的详细定量测量。对IFT运输的直接观察将为剖析控制纤毛调节和信号传导的过程提供一个独特的工具。

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