Phamluong Khanhky, Darcq Emmanuel, Wu Su, Sakhai Samuel A, Ron Dorit
Department of Neurology, University of California San FranciscoSan Francisco, CA, United States.
Front Mol Neurosci. 2017 Aug 31;10:273. doi: 10.3389/fnmol.2017.00273. eCollection 2017.
The tyrosine kinase Fyn plays an important role in synaptic plasticity, learning, and memory. Here we report that Fyn is activated in response to 15 min D1 receptor (D1R) but not D2 receptor (D2R) stimulation specifically in the dorsomedial striatum (DMS) of mice but not in the other substriatal regions, the dorsolateral striatum (DLS), and the nucleus accumbens (NAc). Once activated Fyn phosphorylates its substrate GluN2B, and we show that GluN2B is phosphorylated only in the DMS but not in the other striatal regions. Striatal neurons are divided into D1R expressing medium spiny neurons (MSNs) and D2R expressing MSNs. Thus, to explore the cell-type specificity of this signaling pathway in the DMS, we developed a Cre-dependent Flip Excision (FLEX) approach to knockdown Fyn in D1R MSNs or D2R MSNs, and proved that the D1R-dependent Fyn activation is localized to DMS D1R MSNs. Importantly, we provide evidence to suggest that the differential association of Fyn and GluN2B with the scaffolding RACK1 is due to the differential localization of Fyn in lipid rafts.Our data further suggest that the differential cholesterol content in the three striatal regions may determine the region specificity of this signaling pathway. Together, our data show that the D1R-dependent Fyn/GluN2B pathway is selectively activated in D1R expressing MSNs in the DMS, and that the brain region specificity of pathway depends on the molecular and cellular compartmentalization of Fyn and GluN2B.
酪氨酸激酶Fyn在突触可塑性、学习和记忆中发挥着重要作用。在此我们报告,Fyn在小鼠背内侧纹状体(DMS)中,对15分钟的D1受体(D1R)刺激而非D2受体(D2R)刺激产生特异性激活反应,而在其他纹状体下区域,即背外侧纹状体(DLS)和伏隔核(NAc)中则无此反应。一旦被激活,Fyn会使其底物GluN2B磷酸化,并且我们发现GluN2B仅在DMS中被磷酸化,而在其他纹状体区域则未被磷酸化。纹状体神经元分为表达D1R的中型多棘神经元(MSNs)和表达D2R的MSNs。因此,为了探究该信号通路在DMS中的细胞类型特异性,我们开发了一种依赖于Cre的翻转切除(FLEX)方法,以敲低D1R MSNs或D2R MSNs中的Fyn,并证明D1R依赖性Fyn激活定位于DMS的D1R MSNs。重要的是,我们提供的证据表明,Fyn和GluN2B与支架蛋白RACK1的差异结合是由于Fyn在脂筏中的差异定位所致。我们的数据进一步表明,三个纹状体区域中胆固醇含量的差异可能决定了该信号通路的区域特异性。总之,我们的数据表明,D1R依赖性Fyn/GluN2B通路在DMS中表达D1R的MSNs中被选择性激活,并且该通路的脑区特异性取决于Fyn和GluNN的分子和细胞分隔。