Louros Susana R, Hooks Bryan M, Litvina Liza, Carvalho Ana Luisa, Chen Chinfei
PhD Program in Experimental Biology and Biomedicine, Center for Neuroscience and Cell Biology, University of Coimbra, 3004-504 Coimbra, Portugal; Center for Neuroscience and Cell Biology, University of Coimbra, 3004-504 Coimbra, Portugal; F.M. Kirby Neurobiology Center, Children's Hospital, Boston, Harvard Medical School, 300 Longwood Avenue, Boston, MA 02115, USA.
F.M. Kirby Neurobiology Center, Children's Hospital, Boston, Harvard Medical School, 300 Longwood Avenue, Boston, MA 02115, USA.
Cell Rep. 2014 Jun 12;7(5):1614-1625. doi: 10.1016/j.celrep.2014.04.054. Epub 2014 May 29.
During development, neurons are constantly refining their connections in response to changes in activity. Experience-dependent plasticity is a key form of synaptic plasticity, involving changes in α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptor (AMPAR) accumulation at synapses. Here, we report a critical role for the AMPAR auxiliary subunit stargazin in this plasticity. We show that stargazin is functional at the retinogeniculate synapse and that in the absence of stargazin, the refinement of the retinogeniculate synapse is specifically disrupted during the experience-dependent phase. Importantly, we found that stargazin expression and phosphorylation increased with visual deprivation and led to reduced AMPAR rectification at the retinogeniculate synapse. To test whether stargazin plays a role in homeostatic plasticity, we turned to cultured neurons and found that stargazin phosphorylation is essential for synaptic scaling. Overall, our data reveal an important role for stargazin in regulating AMPAR abundance and composition at glutamatergic synapses during homeostatic and experience-dependent plasticity.
在发育过程中,神经元会不断根据活动变化来优化其连接。经验依赖性可塑性是突触可塑性的一种关键形式,涉及α-氨基-3-羟基-5-甲基-4-异恶唑丙酸受体(AMPAR)在突触处积累的变化。在此,我们报告了AMPAR辅助亚基stargazin在这种可塑性中的关键作用。我们表明stargazin在视网膜膝状体突触中起作用,并且在没有stargazin的情况下,视网膜膝状体突触的优化在经验依赖阶段会受到特异性破坏。重要的是,我们发现stargazin的表达和磷酸化随着视觉剥夺而增加,并导致视网膜膝状体突触处AMPAR整流减少。为了测试stargazin是否在稳态可塑性中起作用,我们转向培养的神经元,发现stargazin磷酸化对于突触缩放至关重要。总体而言,我们的数据揭示了stargazin在稳态和经验依赖性可塑性过程中调节谷氨酸能突触处AMPAR丰度和组成方面的重要作用。