首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Brain-derived neurotrophic factor and epidermal growth factor activate neuronal m-calpain via mitogen-activated protein kinase-dependent phosphorylation.
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Brain-derived neurotrophic factor and epidermal growth factor activate neuronal m-calpain via mitogen-activated protein kinase-dependent phosphorylation.

机译:脑源性神经营养因子和表皮生长因子通过有丝分裂原激活的蛋白激酶依赖性磷酸化激活神经元间钙蛋白酶。

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摘要

Calpain is a calcium-dependent protease that plays a significant role in synaptic plasticity, cell motility, and neurodegeneration. Two major calpain isoforms are present in brain, with mu-calpain (calpain1) requiring micromolar calcium concentrations for activation and m-calpain (calpain2) needing millimolar concentrations. Recent studies in fibroblasts indicate that epidermal growth factor (EGF) can activate m-calpain independently of calcium via mitogen-activated protein kinase (MAPK)-mediated phosphorylation. In neurons, MAPK is activated by both brain-derived neurotrophic factor (BDNF) and EGF. We therefore examined whether these growth factors could activate m-calpain by MAPK-dependent phosphorylation using cultured primary neurons and HEK-TrkB cells, both of which express BDNF and EGF receptors. Calpain activation was monitored by quantitative analysis of spectrin degradation and by a fluorescence resonance energy transfer (FRET)-based assay, which assessed the truncation of a calpain-specific peptide flanked by the FRET fluorophore pair DABCYL and EDANS. In both cell types, BDNF and EGF rapidly elicited calpain activation, which was completely blocked by MAPK and calpain inhibitors. BDNF stimulated m-calpain but not mu-calpain serine phosphorylation, an effect also blocked by MAPK inhibitors. Remarkably, BDNF- and EGF-induced calpain activation was preferentially localized in dendrites and dendritic spines of hippocampal neurons and was associated with actin polymerization, which was prevented by calpain inhibition. Our results indicate that, in cultured neurons, both BDNF and EGF activate m-calpain by MAPK-mediated phosphorylation. These results strongly support a role for calpain in synaptic plasticity and may explain why m-calpain, although widely expressed in CNS, requires nonphysiological calcium levels for activation.
机译:钙蛋白酶是一种钙依赖性蛋白酶,在突触可塑性,细胞运动性和神经变性中起重要作用。脑中存在两种主要的钙蛋白酶同工型,其中mu-calpain(calpain1)需要微摩尔钙浓度来激活,而m-calpain(calpain2)需要毫摩尔浓度。对成纤维细胞的最新研究表明,表皮生长因子(EGF)可以通过促分裂原活化的蛋白激酶(MAPK)介导的磷酸化,独立于钙激活m-钙蛋白酶。在神经元中,MAPK被脑源性神经营养因子(BDNF)和EGF激活。因此,我们使用培养的表达BDNF和EGF受体的原代神经元和HEK-TrkB细胞,检查了这些生长因子是否可以通过MAPK依赖性磷酸化激活m-钙蛋白酶。通过对血影蛋白降解的定量分析和基于荧光共振能量转移(FRET)的分析来监测钙蛋白酶的活化,该分析评估了FRET荧光团DABCYL和EDANS侧接的钙蛋白酶特异性肽的截短。在这两种细胞类型中,BDNF和EGF都会迅速引起钙蛋白酶激活,这被MAPK和钙蛋白酶抑制剂完全阻断。 BDNF刺激m-钙蛋白酶但不刺激mu-钙蛋白酶的丝氨酸磷酸化,这一作用也被MAPK抑制剂阻断。值得注意的是,BDNF和EGF诱导的钙蛋白酶激活优先位于海马神经元的树突和树突棘中,并与肌动蛋白聚合相关,这被钙蛋白酶抑制所阻止。我们的结果表明,在培养的神经元中,BDNF和EGF都通过MAPK介导的磷酸化激活m-钙蛋白酶。这些结果强烈支持钙蛋白酶在突触可塑性中的作用,并且可以解释为什么尽管钙蛋白酶在中枢神经系统中广泛表达,但其需要非生理性钙水平来激活。

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