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神经元和神经管的自动融合与塑形。

Auto-fusion and the shaping of neurons and tubes.

作者信息

Soulavie Fabien, Sundaram Meera V

机构信息

Department of Genetics, University of Pennsylvania, Perelman School of Medicine, Philadelphia, PA 19104,United States.

Department of Genetics, University of Pennsylvania, Perelman School of Medicine, Philadelphia, PA 19104,United States.

出版信息

Semin Cell Dev Biol. 2016 Dec;60:136-145. doi: 10.1016/j.semcdb.2016.07.018. Epub 2016 Jul 18.

Abstract

Cells adopt specific shapes that are necessary for specific functions. For example, some neurons extend elaborate arborized dendrites that can contact multiple targets. Epithelial and endothelial cells can form tiny seamless unicellular tubes with an intracellular lumen. Recent advances showed that cells can auto-fuse to acquire those specific shapes. During auto-fusion, a cell merges two parts of its own plasma membrane. In contrast to cell-cell fusion or macropinocytic fission, which result in the merging or formation of two separate membrane bound compartments, auto-fusion preserves one compartment, but changes its shape. The discovery of auto-fusion in C. elegans was enabled by identification of specific protein fusogens, EFF-1 and AFF-1, that mediate cell-cell fusion. Phenotypic characterization of eff-1 and aff-1 mutants revealed that fusogen-mediated fusion of two parts of the same cell can be used to sculpt dendritic arbors, reconnect two parts of an axon after injury, or form a hollow unicellular tube. Similar auto-fusion events recently were detected in vertebrate cells, suggesting that auto-fusion could be a widely used mechanism for shaping neurons and tubes.

摘要

细胞会呈现出特定的形状,这些形状对于特定功能而言是必需的。例如,一些神经元会伸出复杂的分支状树突,能够与多个靶点接触。上皮细胞和内皮细胞可以形成带有细胞内管腔的微小无缝单细胞管。最近的研究进展表明,细胞可以通过自身融合来获得这些特定形状。在自身融合过程中,一个细胞会将其自身质膜的两个部分融合在一起。与细胞间融合或巨吞饮裂变不同,细胞间融合或巨吞饮裂变会导致两个独立的膜结合区室的融合或形成,而自身融合保留了一个区室,但改变了它的形状。秀丽隐杆线虫中自身融合的发现得益于对特定蛋白质融合素EFF-1和AFF-1的鉴定,它们介导细胞间融合。eff-1和aff-1突变体的表型特征表明,融合素介导的同一细胞两个部分的融合可用于塑造树突分支、在损伤后重新连接轴突的两个部分或形成中空的单细胞管。最近在脊椎动物细胞中也检测到了类似的自身融合事件,这表明自身融合可能是一种广泛用于塑造神经元和管道的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2519/5161574/0532cbb40784/nihms-804935-f0001.jpg

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