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首页> 外文期刊>Trends in Neurosciences >FAK and PYK2/CAKbeta in the nervous system: a link between neuronal activity, plasticity and survival?
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FAK and PYK2/CAKbeta in the nervous system: a link between neuronal activity, plasticity and survival?

机译:神经系统中的FAK和PYK2 / CAKbeta:神经元活动,可塑性和存活之间的联系?

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A major aim of neurobiology today is to improve understanding of the signaling pathways that couple rapid events, such as the action potential and neurotransmitter release, to long-lasting changes in synaptic strength and increased neuronal survival. These adaptations involve interactions of neurons with other cells and with the extracellular matrix. They use, in part, the same molecular machinery that controls adhesion, motility or survival in non-neuronal cells. This machinery includes two homologous non-receptor tyrosine kinases, FAK and PYK2/CAKbeta, and the associated SRC-family tyrosine kinases. Specific brain isoforms of FAK with distinct properties are regulated by neurotransmitters, whereas PYK2/CAKbeta is highly sensitive to depolarization. The multiplicity of the pathways that can be activated by these tyrosine kinases indicates their importance in signal transduction in the adult brain.
机译:如今,神经生物学的主要目标是增进对将快速事件(如动作电位和神经递质释放)与突触强度的持久变化和神经元存活率增加联系在一起的信号传导途径的了解。这些适应涉及神经元与其他细胞以及与细胞外基质的相互作用。它们部分使用相同的分子机制来控制非神经元细胞的粘附,运动或存活。该机制包括两个同源的非受体酪氨酸激酶FAK和PYK2 / CAKbeta,以及相关的SRC家族酪氨酸激酶。具有不同特性的FAK的特定脑同工型受神经递质调控,而PYK2 / CAKbeta对去极化高度敏感。这些酪氨酸激酶可以激活多种途径,表明它们在成人大脑信号转导中的重要性。

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