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果蝇中的成肌细胞融合。

Myoblast fusion in Drosophila.

作者信息

Abmayr Susan M, Zhuang Shufei, Geisbrecht Erika R

机构信息

The Stowers Institute for Medical Research, Kansas City, MO, USA.

出版信息

Methods Mol Biol. 2008;475:75-97. doi: 10.1007/978-1-59745-250-2_5.

DOI:10.1007/978-1-59745-250-2_5
PMID:18979239
Abstract

Myogenic differentiation in Drosophila melanogaster, as in many other organisms, involves the generation of multinucleate muscle fibers through the fusion of myoblasts. Prior to fusion, the myoblasts become specified as one of two distinct cell types. They then become competent to fuse and express genes associated with cell recognition and adhesion. Initially, cell-type- specific adhesion molecules mediate recognition and fusion between these two distinct populations of myoblasts. Intracellular proteins that are essential for the fusion process are then recruited to points of cell-cell contact at the membrane, where the cell surface molecules have become localized. Many of these cytosolic proteins contribute to reorganization of the cytoskeleton through activation of small guanosine triphosphatases and recruitment of actin nucleating proteins. Following the initial fusion event, the ultimate size of the syncytia is achieved through multiple rounds of fusion between the developing syncytia and mononucleate myoblasts. Ultrastructural changes associated with cell fusion include recruitment of electron-dense vesicles to points of cell-cell contact, resolution of these vesicles into fusion plaques, fusion pore formation, and membrane vesiculation. This chapter reviews our current understanding of the genes, pathways, and ultrastructural events associated with fusion in the Drosophila embryo, giving rise to multinucleate syncytia that will be used throughout larval life.

摘要

与许多其他生物体一样,果蝇中的成肌分化涉及通过成肌细胞融合产生多核肌纤维。在融合之前,成肌细胞被指定为两种不同细胞类型之一。然后它们具备融合能力并表达与细胞识别和黏附相关的基因。最初,细胞类型特异性黏附分子介导这两种不同类型的成肌细胞之间的识别和融合。然后,融合过程所必需的细胞内蛋白质被招募到细胞膜上细胞 - 细胞接触点,细胞表面分子已在这些点定位。这些胞质蛋白中的许多通过激活小GTP酶和募集肌动蛋白成核蛋白来促进细胞骨架的重组。在最初的融合事件之后,多核体的最终大小通过发育中的多核体与单核成肌细胞之间的多轮融合来实现。与细胞融合相关的超微结构变化包括将电子致密囊泡募集到细胞 - 细胞接触点、这些囊泡分解为融合斑、融合孔形成和膜泡化。本章回顾了我们目前对果蝇胚胎中与融合相关的基因、途径和超微结构事件的理解,这些融合产生了将在整个幼虫期使用的多核体。

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1
Myoblast fusion in Drosophila.果蝇中的成肌细胞融合。
Methods Mol Biol. 2008;475:75-97. doi: 10.1007/978-1-59745-250-2_5.
2
Live imaging provides new insights on dynamic F-actin filopodia and differential endocytosis during myoblast fusion in Drosophila.活细胞成像为研究果蝇肌母细胞融合过程中的 F-actin 丝状伪足的动态变化和差异内吞作用提供了新的见解。
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Drosophila Kette coordinates myoblast junction dissolution and the ratio of Scar-to-WASp during myoblast fusion.果蝇Kette在成肌细胞融合过程中协调成肌细胞连接的溶解以及Scar与WASp的比例。
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Ultrastructural analysis of myoblast fusion in Drosophila.果蝇成肌细胞融合的超微结构分析。
Methods Mol Biol. 2008;475:275-97. doi: 10.1007/978-1-59745-250-2_16.
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Surface apposition and multiple cell contacts promote myoblast fusion in Drosophila flight muscles.表面贴附和多个细胞接触促进果蝇飞行肌中的成肌细胞融合。
J Cell Biol. 2015 Oct 12;211(1):191-203. doi: 10.1083/jcb.201503005.
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kette and blown fuse interact genetically during the second fusion step of myogenesis in Drosophila.在果蝇肌生成的第二次融合步骤中,kette和熔断丝在遗传上相互作用。
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Blown fuse regulates stretching and outgrowth but not myoblast fusion of the circular visceral muscles in Drosophila.熔断丝调节果蝇环形内脏肌的伸展和生长,但不调节成肌细胞融合。
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Adhesion and Fusion of Muscle Cells Are Promoted by Filopodia.肌细胞的黏附和融合由丝状伪足促进。
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Analysis of the cell adhesion molecule sticks-and-stones reveals multiple redundant functional domains, protein-interaction motifs and phosphorylated tyrosines that direct myoblast fusion in Drosophila melanogaster.对细胞黏附分子“sticks-and-stones”的分析揭示了多个冗余的功能结构域、蛋白质相互作用基序以及磷酸化酪氨酸,这些在黑腹果蝇中指导成肌细胞融合。
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FuRMAS: triggering myoblast fusion in Drosophila.FuRMAS:触发果蝇中的成肌细胞融合
Dev Dyn. 2009 Jun;238(6):1513-25. doi: 10.1002/dvdy.21961.

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