老鼠基底上的引物。

Q2 Biochemistry, Genetics and Molecular Biology Cilia Pub Date : 2016-04-25 eCollection Date: 2016-01-01 DOI:10.1186/s13630-016-0038-0
Galo Garcia, Jeremy F Reiter
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引用次数: 44

摘要

基体是一个高度组织化的结构,对纤毛的形成至关重要。基底体通过其远端附属物(也称为过渡纤维)与细胞膜对接,并为纤毛轴突微管的构建提供了基础。因此,基底的位置和方向决定了其纤毛的位置和方向。基底体的心脏是母中心粒,是有丝分裂过程中遗传的两个中心粒中较老的一个,由9个排列成圆柱体的三重微管组成。与所有纤毛生物一样,小鼠也具有基础体,对小鼠基础体结构的研究为了解基础体结构对纤毛功能的影响做出了多种重要贡献。小鼠基底体的附属物和相关结构在结构上与其他生物不同,甚至在小鼠细胞类型之间也不同。例如,不运动的初级纤毛的基基体与子中心粒相连,而运动的多纤毛细胞则不是这样。在过去的几年里,我们已经发现了许多基础身体的组成部分,老鼠将继续是一个非常有价值的系统,可以从基因上定义它们的功能。
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A primer on the mouse basal body.

The basal body is a highly organized structure essential for the formation of cilia. Basal bodies dock to a cellular membrane through their distal appendages (also known as transition fibers) and provide the foundation on which the microtubules of the ciliary axoneme are built. Consequently, basal body position and orientation dictates the position and orientation of its cilium. The heart of the basal body is the mother centriole, the older of the two centrioles inherited during mitosis and which is comprised of  nine triplet microtubules arranged in a cylinder. Like all ciliated organisms, mice possess basal bodies, and studies of mouse basal body structure have made diverse important contributions to the understanding of how basal body structure impacts the function of cilia. The appendages and associated structures of mouse basal bodies can differ in their architecture from those of other organisms, and even between murine cell types. For example, basal bodies of immotile primary cilia are connected to daughter centrioles, whereas those of motile multiciliated cells are not. The last few years have seen the identification of many components of the basal body, and the mouse will continue to be an extremely valuable system for genetically defining their functions.

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来源期刊
Cilia
Cilia Biochemistry, Genetics and Molecular Biology-Cell Biology
CiteScore
6.40
自引率
0.00%
发文量
0
期刊最新文献
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