Maghsoodi Bita, Poon Michael M, Nam Christine I, Aoto Jason, Ting Pamela, Chen Lu
Department of Molecular and Cell Biology, University of California, Berkeley, CA 94720-3200, USA.
Proc Natl Acad Sci U S A. 2008 Oct 14;105(41):16015-20. doi: 10.1073/pnas.0804801105. Epub 2008 Oct 7.
Homeostatic plasticity is thought to play an important role in maintaining the stability of neuronal circuits. During one form of homeostatic plasticity, referred to as synaptic scaling, activity blockade leads to a compensatory increase in synaptic transmission by stimulating in dendrites the local translation and synaptic insertion of the AMPA receptor subunit GluR1. We have previously shown that all-trans retinoic acid (RA) mediates activity blockade-induced synaptic scaling by activating dendritic GluR1 synthesis and that this process requires RARalpha, a member of the nuclear RA receptor family. This result raised the question of where RARalpha is localized in dendrites and whether its localization is regulated by RA and/or activity blockade. Here, we show that activity blockade or RA treatment in neurons enhances the concentration of RARalpha in the dendritic RNA granules and activates local GluR1 synthesis in these RNA granules. Importantly, the same RNA granules that contain RARalpha also exhibit an accumulation of GluR1 protein but with a much slower time course than that of RARalpha, suggesting that the former regulates the latter. Taken together, our results provide a direct link between dendritically localized RARalpha and local GluR1 synthesis in RNA granules during RA-mediated synaptic signaling in homeostatic synaptic plasticity.
稳态可塑性被认为在维持神经回路的稳定性中起重要作用。在一种形式的稳态可塑性,即突触缩放过程中,活动阻断通过刺激树突中AMPA受体亚基GluR1的局部翻译和突触插入,导致突触传递的代偿性增加。我们之前已经表明,全反式维甲酸(RA)通过激活树突状GluR1合成来介导活动阻断诱导的突触缩放,并且这个过程需要核RA受体家族的成员RARα。这个结果提出了RARα在树突中的定位位置以及其定位是否受RA和/或活动阻断调节的问题。在这里,我们表明神经元中的活动阻断或RA处理会增加树突状RNA颗粒中RARα的浓度,并激活这些RNA颗粒中的局部GluR1合成。重要的是,含有RARα的相同RNA颗粒也显示出GluR1蛋白的积累,但时间进程比RARα慢得多,这表明前者调节后者。综上所述,我们的结果在稳态突触可塑性中RA介导的突触信号传导过程中,建立了树突定位的RARα与RNA颗粒中局部GluR1合成之间的直接联系。