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细胞骨架在单细胞分支形态发生中的作用。

Cytoskeletal players in single-cell branching morphogenesis.

机构信息

Department of Genetics, Microbiology and Statistics, School of Biology, University of Barcelona, 08028, Barcelona, Spain; Institute of Biomedicine University of Barcelona (IBUB), Barcelona, Spain.

Department of Genetics, Microbiology and Statistics, School of Biology, University of Barcelona, 08028, Barcelona, Spain; Institute of Biomedicine University of Barcelona (IBUB), Barcelona, Spain.

出版信息

Dev Biol. 2021 Sep;477:22-34. doi: 10.1016/j.ydbio.2021.05.001. Epub 2021 May 15.

DOI:10.1016/j.ydbio.2021.05.001
PMID:34004181
Abstract

Branching networks are a very common feature of multicellular animals and underlie the formation and function of numerous organs including the nervous system, the respiratory system, the vasculature and many internal glands. These networks range from subcellular structures such as dendritic trees to large multicellular tissues such as the lungs. The production of branched structures by single cells, so called subcellular branching, which has been better described in neurons and in cells of the respiratory and vascular systems, involves complex cytoskeletal remodelling events. In Drosophila, tracheal system terminal cells (TCs) and nervous system dendritic arborisation (da) neurons are good model systems for these subcellular branching processes. During development, the generation of subcellular branches by single-cells is characterized by extensive remodelling of the microtubule (MT) network and actin cytoskeleton, followed by vesicular transport and membrane dynamics. In this review, we describe the current knowledge on cytoskeletal regulation of subcellular branching, based on the terminal cells of the Drosophila tracheal system, but drawing parallels with dendritic branching and vertebrate vascular subcellular branching.

摘要

分支网络是多细胞动物中非常常见的特征,它是许多器官的形成和功能的基础,包括神经系统、呼吸系统、脉管系统和许多内部腺体。这些网络的范围从树突状树等亚细胞结构到肺部等大型多细胞组织。单细胞产生的分支结构,即所谓的亚细胞分支,在神经元和呼吸系统及血管系统的细胞中已有更详细的描述,涉及复杂的细胞骨架重塑事件。在果蝇中,气管系统终端细胞 (TC) 和神经系统树突状分支 (da) 神经元是这些亚细胞分支过程的良好模型系统。在发育过程中,单细胞产生亚细胞分支的特征是微管 (MT) 网络和肌动蛋白细胞骨架的广泛重塑,随后是囊泡运输和膜动力学。在这篇综述中,我们基于果蝇气管系统的终端细胞,描述了当前关于亚细胞分支的细胞骨架调节的知识,但也与树突分支和脊椎动物血管亚细胞分支进行了类比。

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