首页> 外文期刊>The Neuroscientist: a review journal bringing neurobiology, neurology and psychiatry >Transducing neuronal activity into dendritic spine morphology: new roles for p38 MAP kinase and N-cadherin.
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Transducing neuronal activity into dendritic spine morphology: new roles for p38 MAP kinase and N-cadherin.

机译:将神经元活动转化为树突棘形态:p38 MAP激酶和N-钙黏着蛋白的新作用。

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摘要

Synaptic plasticity depends on the generation, modification and disconnection of synapses. An excitatory synapse is connected to a specialized dendritic compartment called a spine, which undergoes activity-induced remodeling. Here, we discuss a signaling pathway that transduces neuronal activity into the remodeling of spine through p38 mitogen-activated protein kinase (MAPK) and N-cadherin. Dendritic spines change their morphology and density in response to neuronal activity. In the early phase, posttranslational modifications of synaptic molecules regulate spine morphology, whereas activity-induced gene products reduce spine density in the late phase. One of the targets of these mechanisms is N-cadherin. An activity-induced protocadherin, arcadlin, stimulates thousand and one 2beta (TAO2beta) kinase, which in turn activates p38 MAPK through MAPK kinase 3 (MEK3), resulting in the endocytosis of N-cadherin and the decrease in spine number. This pathway also underlies the mechanism of the spine decrease in neuronal disorders, such as Alzheimer's disease and epilepsy. Development of new p38 MAPK inhibitors brings a ray of hope with respect to the development of more effective therapies for these patients.
机译:突触可塑性取决于突触的产生,修饰和断开。兴奋性突触连接到称为脊柱的专门树突状区室,该区进行活动诱导的重塑。在这里,我们讨论了通过p38丝裂原激活的蛋白激酶(MAPK)和N-钙粘蛋白将神经元活动转导到脊柱重塑的信号通路。树突棘响应神经元活动而改变其形态和密度。在早期阶段,突触分子的翻译后修饰调节脊柱的形态,而活性诱导的基因产物在晚期降低脊柱的密度。这些机制的目标之一是N-钙粘着蛋白。活性诱导的原钙粘蛋白arcadlin刺激了数千个2beta(TAO2beta)激酶,后者又通过MAPK激酶3(MEK3)激活p38 MAPK,导致N-钙粘蛋白的内吞作用和脊柱数目减少。该途径也是神经元疾病如阿尔茨海默氏病和癫痫症中脊柱减少的机制的基础。在开发针对这些患者的更有效疗法方面,新型p38 MAPK抑制剂的开发带来了一线希望。

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