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CALCIUM SIGNALING IN NEURONS - MOLECULAR MECHANISMS AND CELLULAR CONSEQUENCES [Review]

机译:神经元中的钙信号传导-分子机制和细胞后果[评论]

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摘要

Neuronal activity can lead to marked increases in the concentration of cytosolic calcium, which then functions as a second messenger that mediates a wide range of cellular responses. Calcium binds to calmodulin and stimulates the activity of a variety of enzymes, including calcium-calmodulin kinases and calcium-sensitive adenylate cyclases. These enzymes transduce the calcium signal and effect short-term biological responses, such as the modification of synaptic proteins and long-lasting neuronal responses that require changes in gene expression. Recent studies of calcium signal-transduction mechanisms have revealed that, depending on the route of entry into a neuron, calcium differentially affects processes that are central to the development and plasticity of the nervous system, including activity-dependent cell survival, modulation of synaptic strength, and calcium-mediated cell death.
机译:神经元活动可导致胞浆钙浓度显着增加,然后其作为第二信使,介导广泛的细胞反应。钙与钙调蛋白结合并刺激多种酶的活性,包括钙钙调蛋白激酶和钙敏感性腺苷酸环化酶。这些酶转导钙信号并影响短期生物学反应,例如突触蛋白的修饰和需要基因表达改变的持久神经元反应。钙信号传导机制的最新研究表明,根据进入神经元的途径,钙差异地影响神经系统发育和可塑性的关键过程,包括活动依赖性细胞存活,突触强度调节和钙介导的细胞死亡。

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