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首页> 外文期刊>Neurobiology of learning and memory >BDNF-induced synaptic delivery of AMPAR subunits is differentially dependent on NMDA receptors and requires ERK.
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BDNF-induced synaptic delivery of AMPAR subunits is differentially dependent on NMDA receptors and requires ERK.

机译:BDNF诱导的AMPAR亚基的突触传递与NMDA受体不同,需要ERK。

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摘要

Previous studies using an in vitro model of eyeblink classical conditioning in turtles suggest that increased numbers of synaptic AMPARs supports the acquisition and expression of conditioned responses (CRs). Brain-derived neurotrophic factor (BDNF) and its associated receptor tyrosine kinase, TrkB, is also required for acquisition of CRs. Bath application of BDNF alone induces synaptic delivery of GluR1- and GluR4-containing AMPARs that is blocked by coapplication of the receptor tyrosine kinase inhibitor K252a. The molecular mechanisms involved in BDNF-induced AMPAR trafficking remain largely unknown. The aim of this study was to determine whether BDNF-induced synaptic AMPAR incorporation utilizes similar cellular mechanisms as AMPAR trafficking that occurs during in vitro classical conditioning. Using pharmacological blockade and confocal imaging, the results show that synaptic delivery of GluR1 subunits during conditioning or BDNF application does not require activity of NMDARs but is mediated by extracellular signal-regulated kinase (ERK). In contrast, synaptic delivery of GluR4-containing AMPARs during both conditioning and BDNF application is NMDAR- as well as ERK-dependent. These findings indicate that BDNF application mimics AMPAR trafficking observed during conditioning by activation of some of the same intracellular signaling pathways and suggest that BDNF is a key signal transduction element in postsynaptic events that mediate conditioning.
机译:以前使用海龟眨眼经典条件的体外模型进行的研究表明,突触AMPAR数量的增加支持条件反应(CR)的获得和表达。脑源性神经营养因子(BDNF)及其相关的受体酪氨酸激酶TrkB也是获得CR所必需的。单独应用BDNF的浴液可诱导GluR1和含GluR4的AMPAR的突触传递,这可通过共同应用受体酪氨酸激酶抑制剂K252a来阻断。 BDNF诱导的AMPAR交易涉及的分子机制仍然未知。这项研究的目的是确定BDNF诱导的突触AMPAR掺入是否利用了与体外经典条件下发生的AMPAR转运相似的细胞机制。使用药理学封锁和共聚焦成像,结果表明在调节或BDNF应用过程中,GluR1亚基的突触传递不需要NMDAR的活性,而是由细胞外信号调节激酶(ERK)介导的。相反,在调理和BDNF施用过程中,含GluR4的AMPAR的突触传递是依赖于NMDAR以及ERK的。这些发现表明,BDNF的应用模仿了通过调节某些相同的细胞内信号传导途径在调节过程中观察到的AMPAR转运,并且表明BDNF是介导调节的突触后事件中的关键信号转导元件。

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