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细胞内亚信使网络驱动不同的排斥性诱导的轴突行为。

Subcellular second messenger networks drive distinct repellent-induced axon behaviors.

机构信息

Sorbonne Université, INSERM, CNRS, Institut de la Vision, F-75012, Paris, France.

Department of Cell Biology, Physiology and Immunology, Universitat de Barcelona, 08028, Barcelona, Catalonia, Spain.

出版信息

Nat Commun. 2023 Jun 27;14(1):3809. doi: 10.1038/s41467-023-39516-z.

Abstract

Second messengers, including cAMP, cGMP and Ca are often placed in an integrating position to combine the extracellular cues that orient growing axons in the developing brain. This view suggests that axon repellents share the same set of cellular messenger signals and that axon attractants evoke opposite cAMP, cGMP and Ca changes. Investigating the confinement of these second messengers in cellular nanodomains, we instead demonstrate that two repellent cues, ephrin-A5 and Slit1, induce spatially segregated signals. These guidance molecules activate subcellular-specific second messenger crosstalk, each signaling network controlling distinct axonal morphology changes in vitro and pathfinding decisions in vivo.

摘要

第二信使,包括 cAMP、cGMP 和 Ca2+,通常处于整合位置,以整合引导发育中大脑中生长轴突的细胞外线索。这一观点表明,轴突排斥物共享同一套细胞信使信号,而轴突吸引物则引发相反的 cAMP、cGMP 和 Ca2+变化。在研究这些第二信使在细胞纳米域中的限制时,我们反而证明了两种排斥性信号,即 Ephrin-A5 和 Slit1,会诱导空间分离的信号。这些导向分子激活了亚细胞特异性的第二信使串扰,每个信号网络都控制着体外不同的轴突形态变化和体内的路径选择决策。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1331/10300027/6c74e249c74b/41467_2023_39516_Fig1_HTML.jpg

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