首页> 外文期刊>Journal of Neurocytology: A Journal of Cellular Neurobiology >Phosphorylation reactions in activity-dependent synapse modification at the neuromuscular junction during development.
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Phosphorylation reactions in activity-dependent synapse modification at the neuromuscular junction during development.

机译:在发育过程中神经肌肉接头的活性依赖性突触修饰中的磷酸化反应。

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摘要

We have studied developmental activity-dependent synapse diminution in both an in vitro tissue culture chamber system and at the intact rodent neuromuscular junction (nmj). In both types of preparations, pre- and postsynaptic alterations in synapse structure and function are produced by manipulations of thrombin (Thr) and protein kinase C (PKC) activity. An opposing postsynaptic effect of PKC and protein kinase A (PKA) action on the acetycholine receptor (AChR) can be shown in vitro with PKA stabilizing and PKC destabilizing the nmj synapses. In vivo studies of normal junctional maturation show that changes in axonal inputs and postsynaptic receptor cluster morphology occur, to a substantial degree, independently of one another. Presynaptic actions of PKA are involved in the activity dependent synapse modulation that can be demonstrated in vitro. Late in the elimination process, (>12 days in vivo ) the process becomes independent of PKC, implying that diverse, redundant mechanisms are involved in this important developmental process.
机译:我们已经研究了在体外组织培养室系统和完整的啮齿类动物神经肌肉接头(nmj)中依赖于发展活动的突触的减少。在两种类型的制剂中,通过操纵凝血酶(Thr)和蛋白激酶C(PKC)活性,可以产生突触前和突触后结构和功能的改变。体外可显示PKC和蛋白激酶A(PKA)对乙酰胆碱受体(AChR)的相反突触后作用,其中PKA稳定且PKC使nmj突触稳定。正常结节成熟的体内研究表明,轴突输入和突触后受体簇形态的变化在很大程度上彼此独立发生。 PKA的突触前作用参与了活性依赖的突触调节,可以在体外证明。在消除过程的后期(体内> 12天),该过程变得与PKC无关,这意味着该重要的发育过程涉及多种冗余机制。

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