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Activity-dependent development of inhibitory synapses and innervation pattern: role of GABA signalling and beyond.

机译:抑制性突触和神经支配模式的活动依赖性发展:GABA信号传导及其他作用。

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摘要

GABA-mediated synaptic inhibition is crucial in neural circuit operations. The development of GABAergic inhibitory synapses and innervation pattern in mammalian neocortex is a prolonged process, extending well into the postnatal period, and is regulated by neural activity and experience. Accumulating evidence supports the hypothesis that GABA signalling acts beyond synaptic transmission and regulates inhibitory synapse development; in other words, similar to glutamate signalling at developing excitatory synapses, GABA may coordinate pre- and post-synaptic maturation at inhibitory synapses. These findings raise numerous questions regarding the underlying mechanisms, including the role of GABA receptors and their link to synaptic adhesion molecules. Since synapse formation is a crucial component of axon growth, GABA signalling may also shape the axon arbor and innervation pattern of inhibitory neurons. A mechanism unique to GABAergic neurons is activity-dependent GABA synthesis, largely mediated through activity-regulated transcription of the rate-limiting enzyme GAD67. Such cell-wide as well as synaptic regulation of GABA signalling may constitute a mechanism by which input levels and patterns onto GABAergic neurons shape their innervation pattern during circuit development.
机译:GABA介导的突触抑制在神经回路操作中至关重要。哺乳动物新皮层中GABA能抑制突触和神经支配方式的发展是一个延长的过程,一直延伸到产后,并受神经活动和经验的调节。越来越多的证据支持以下假设:GABA信号的作用超出突触传递,并调节抑制性突触的发展。换句话说,类似于在发生兴奋性突触时的谷氨酸信号传导,GABA可以在抑制性突触时协调突触前和突触后的成熟。这些发现提出了有关潜在机制的许多问题,包括GABA受体的作用及其与突触粘附分子的联系。由于突触的形成是轴突生长的关键组成部分,GABA信号转导也可能会形成轴突轴和抑制神经元的神经支配模式。 GABA能神经元独有的机制是依赖活性的GABA合成,主要通过限速酶GAD67的活性调节转录介导。 GABA信号的这种全细胞以及突触调节可能构成一种机制,通过该机制,GABA能神经元上的输入水平和模式会在电路发育过程中影响其神经支配模式。

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