Ceglia Ilaria, Lee Ko-Woon, Cahill Michael E, Graves Steven M, Dietz David, Surmeier Dalton J, Nestler Eric J, Nairn Angus C, Greengard Paul, Kim Yong
Laboratory of Molecular and Cellular Neuroscience, The Rockefeller University, New York, NY 10065.
Fishberg Department of Neuroscience and Friedman Brain Institute, Icahn School of Medicine at Mount Sinai, New York, NY 10029.
Proc Natl Acad Sci U S A. 2017 Feb 7;114(6):1395-1400. doi: 10.1073/pnas.1621185114. Epub 2017 Jan 23.
Wiskott-Aldrich syndrome protein (WASP) family verprolin homologous protein 1 (WAVE1) regulates actin-related protein 2/3 (Arp2/3) complex-mediated actin polymerization. Our previous studies have found WAVE1 to be inhibited by Cdk5-mediated phosphorylation in brain and to play a role in the regulation of dendritic spine morphology. Here we report that mice in which WAVE1 was knocked out (KO) in neurons expressing the D1 dopamine receptor (D1-KO), but not mice where WAVE1 was knocked out in neurons expressing the D2 dopamine receptor (D2-KO), exhibited a significant decrease in place preference associated with cocaine. In contrast to wild-type (WT) and WAVE1 D2-KO mice, cocaine-induced sensitized locomotor behavior was not maintained in WAVE1 D1-KO mice. After chronic cocaine administration and following withdrawal, an acute cocaine challenge induced WAVE1 activation in striatum, which was assessed by dephosphorylation. The cocaine-induced WAVE1 dephosphorylation was attenuated by coadministration of either a D1 dopamine receptor or NMDA glutamate receptor antagonist. Upon an acute challenge of cocaine following chronic cocaine exposure and withdrawal, we also observed in WT, but not in WAVE1 D1-KO mice, a decrease in dendritic spine density and a decrease in the frequency of excitatory postsynaptic AMPA receptor currents in medium spiny projection neurons expressing the D1 dopamine receptor (D1-MSNs) in the nucleus accumbens. These results suggest that WAVE1 is involved selectively in D1-MSNs in cocaine-evoked neuronal activity-mediated feedback regulation of glutamatergic synapses.
威斯科特-奥尔德里奇综合征蛋白(WASP)家族维普洛林同源蛋白1(WAVE1)调节肌动蛋白相关蛋白2/3(Arp2/3)复合物介导的肌动蛋白聚合。我们之前的研究发现,WAVE1在大脑中受到细胞周期蛋白依赖性激酶5(Cdk5)介导的磷酸化作用的抑制,并在树突棘形态的调节中发挥作用。在此我们报告,在表达D1多巴胺受体的神经元中敲除WAVE1(D1-KO)的小鼠,而非在表达D2多巴胺受体的神经元中敲除WAVE1的小鼠(D2-KO),与可卡因相关的位置偏爱显著降低。与野生型(WT)和WAVE1 D2-KO小鼠不同,可卡因诱导的运动行为敏化在WAVE1 D1-KO小鼠中未得到维持。长期给予可卡因并停药后,急性给予可卡因可诱导纹状体中WAVE1的激活,这通过去磷酸化来评估。同时给予D1多巴胺受体拮抗剂或NMDA谷氨酸受体拮抗剂可减弱可卡因诱导的WAVE1去磷酸化。在长期暴露于可卡因并停药后急性给予可卡因时,我们还观察到,在野生型小鼠而非WAVE1 D1-KO小鼠中,伏隔核中表达D1多巴胺受体的中型多棘投射神经元(D1-MSNs)的树突棘密度降低,兴奋性突触后AMPA受体电流频率降低。这些结果表明,WAVE1选择性地参与D1-MSNs中可卡因诱发的神经元活动介导的谷氨酸能突触的反馈调节。