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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Protein kinase C-dependent and independent signaling pathways regulate synaptic GluR1 and GluR4 AMPAR subunits during in vitro classical conditioning.
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Protein kinase C-dependent and independent signaling pathways regulate synaptic GluR1 and GluR4 AMPAR subunits during in vitro classical conditioning.

机译:蛋白激酶C依赖和独立的信号通路在体外经典条件下调节突触GluR1和GluR4 AMPAR亚基。

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Protein kinase C (PKC) signal transduction pathways have been implicated in mechanisms of synaptic plasticity and learning, however, the roles of the different PKC family isoforms remain to be clarified. Previous studies showed that NMDAR-mediated trafficking of GluR4-containing AMPARs supports conditioning and that the mitogen-activated protein kinases (MAPKs) have a central role in the synaptic delivery of GluR4 subunits. Here, an in vitro model of classical conditioning in pond turtles, Pseudemys scripta elegans, was used to assess the role of PKC isoforms in mechanisms underlying this form of learning. We show that the PKC antagonists chelerythrine and bisindolylmaleimide I attenuated conditioned response (CR) acquisition and expression, as did the PKCzeta pseudosubstrate peptide inhibitor ZIP. Analysis of protein expression revealed that PKCzeta is activated in early stages of conditioning followed shortly afterward by increased levels of PKCalpha/beta and activation of ERK MAPK. Data also suggestthat PKCzeta is upstream from and activates ERK. Finally, protein localization studies using confocal imaging indicate that inhibitors of ERK, but not PKC, suppress colocalization of GluR1 with synaptophysin while inhibitors of PKC and ERK attenuate colocalization of GluR4 with synaptophysin. Together, these data suggest that acquisition of conditioning proceeds by two stages of AMPAR trafficking. The first is PKC-independent and ERK-dependent synaptic delivery of GluR1 subunits to activate silent synapses. This is followed by PKC-dependent and ERK-dependent synthesis and delivery of GluR4 subunits that supports the acquisition of CRs. Therefore, there is a selective role for PKC and MAPK signaling pathways in multistep AMPAR trafficking that mediates acquisition of classical conditioning.
机译:蛋白激酶C(PKC)信号转导通路已牵涉到突触可塑性和学习的机制,但是,不同的PKC家族同工型的作用仍有待阐明。先前的研究表明,NMDAR介导的含GluR4的AMPAR的运输支持调节作用,而丝裂原激活的蛋白激酶(MAPK)在GluR4亚基的突触传递中起着核心作用。在这里,池塘乌龟,Pseudemys scripta elegans,经典条件的体外模型用于评估PKC亚型在这种学习形式的基础机制中的作用。我们显示,PKC拮抗剂白屈菜红碱和双吲哚基马来酰亚胺I减弱了条件反应(CR)的获得和表达,与PKCzeta伪底物肽抑制剂ZIP一样。蛋白质表达分析表明,PKCzeta在条件调节的早期被激活,随后不久,PKCalpha / beta的水平增加,ERK MAPK激活。数据还表明,PKCzeta位于ERK的上游并激活ERK。最后,使用共聚焦成像的蛋白质定位研究表明,ERK抑制剂而非PKC抑制GluR1与突触素的共定位,而PKC和ERK抑制剂则减弱GluR4与突触素的共定位。这些数据加在一起表明,调理的获得是通过AMPAR贩运的两个阶段进行的。首先是GluR1亚基的PKC依赖性和ERK依赖性突触传递,以激活沉默突触。接下来是依赖PKC和ERK的GluR4亚基的合成和传递,支持CR的获得。因此,在介导经典条件获得的多步AMPAR运输中,PKC和MAPK信号通路具有选择性作用。

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