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通过Gsα的信号传导是果蝇神经肌肉突触生长和功能所必需的。

Signaling through Gs alpha is required for the growth and function of neuromuscular synapses in Drosophila.

作者信息

Wolfgang William J, Clay Catherine, Parker Jacqueline, Delgado Ricardo, Labarca Pedro, Kidokoro Yoshiaki, Forte Michael

机构信息

Vollum Institute, Oregon Health and Science University, Portland, OR 97239, USA.

出版信息

Dev Biol. 2004 Apr 15;268(2):295-311. doi: 10.1016/j.ydbio.2004.01.007.

Abstract

Although synapses are assembled in a highly regulated fashion, synapses once formed are not static structures but continue to expand and retract throughout the life of an organism. One second messenger that has been demonstrated to play a critical role in synaptic growth and function is cAMP. Here, we have tested the idea that signaling through the heterotrimeric G protein, Gs, plays a coincident role with increases in intracellular Ca(+2) in the regulation of adenylyl cyclases (ACs) during synaptic growth and in the function of synapses. In larvae containing a hypomorphic mutation in the dgs gene encoding the Drosophila Gs alpha protein, there is a significant decrease in the number of synaptic boutons and extent of synaptic arborization, as well as defects in the facilitation of synaptic transmission. Microscopic analysis confirmed that Gs alpha is localized at synapses both pre- and postsynaptically. Restricted expression of wild-type Gs alpha either pre- or postsynaptically rescued the mutational defects in bouton formation and defects in the facilitation of synaptic transmission, indicating that pathways activated by Gs alpha are likely to be involved in the reciprocal interactions between pre- and postsynaptic cells required for the development of mature synapses. In addition, this Gs alpha mutation interacted with fasII, dnc, and hyperexcitability mutants in a manner that revealed a coincident role for Gs alpha in the regulation of cAMP and FASII levels required during growth of these synapses. Our results demonstrate that Gs alpha-dependent signaling plays a role in the dynamic cellular reorganization that underlies synaptic growth.

摘要

尽管突触是以高度有序的方式组装而成,但一旦形成,突触并非静态结构,而是在生物体的整个生命周期中持续扩张和收缩。已证明一种第二信使环磷酸腺苷(cAMP)在突触生长和功能中起关键作用。在此,我们测试了这样一种观点,即在突触生长和突触功能过程中,通过异源三聚体G蛋白Gs进行的信号传导,在腺苷酸环化酶(ACs)的调节中与细胞内Ca(+2)的增加发挥着协同作用。在编码果蝇Gsα蛋白的dgs基因存在亚效突变的幼虫中,突触小体的数量和突触分支的范围显著减少,同时突触传递的易化也存在缺陷。显微镜分析证实,Gsα在突触前和突触后均有定位。在突触前或突触后限制表达野生型Gsα可挽救小体形成中的突变缺陷以及突触传递易化方面的缺陷,这表明由Gsα激活的信号通路可能参与了成熟突触发育所需的突触前和突触后细胞之间的相互作用。此外,这种Gsα突变与fasII、dnc和兴奋性过高的突变体相互作用,揭示了Gsα在调节这些突触生长过程中所需的cAMP和FASII水平方面的协同作用。我们的结果表明,Gsα依赖性信号传导在突触生长所依赖的动态细胞重组中发挥作用。

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