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听觉脑干中GABA/甘氨酸能连接的超极化非依赖性成熟与精细化

Hyperpolarization-independent maturation and refinement of GABA/glycinergic connections in the auditory brain stem.

作者信息

Lee Hanmi, Bach Eva, Noh Jihyun, Delpire Eric, Kandler Karl

机构信息

Departments of Otolaryngology, Neurobiology, and Bioengineering, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania;

Department of Science Education, College of Education, Dankook University, Yongin-si, Gyeonggi-do, Republic of Korea;

出版信息

J Neurophysiol. 2016 Mar;115(3):1170-82. doi: 10.1152/jn.00926.2015. Epub 2015 Dec 9.

Abstract

During development GABA and glycine synapses are initially excitatory before they gradually become inhibitory. This transition is due to a developmental increase in the activity of neuronal potassium-chloride cotransporter 2 (KCC2), which shifts the chloride equilibrium potential (ECl) to values more negative than the resting membrane potential. While the role of early GABA and glycine depolarizations in neuronal development has become increasingly clear, the role of the transition to hyperpolarization in synapse maturation and circuit refinement has remained an open question. Here we investigated this question by examining the maturation and developmental refinement of GABA/glycinergic and glutamatergic synapses in the lateral superior olive (LSO), a binaural auditory brain stem nucleus, in KCC2-knockdown mice, in which GABA and glycine remain depolarizing. We found that many key events in the development of synaptic inputs to the LSO, such as changes in neurotransmitter phenotype, strengthening and elimination of GABA/glycinergic connection, and maturation of glutamatergic synapses, occur undisturbed in KCC2-knockdown mice compared with wild-type mice. These results indicate that maturation of inhibitory and excitatory synapses in the LSO is independent of the GABA and glycine depolarization-to-hyperpolarization transition.

摘要

在发育过程中,γ-氨基丁酸(GABA)和甘氨酸突触最初是兴奋性的,之后才逐渐转变为抑制性。这种转变是由于神经元钾-氯协同转运蛋白2(KCC2)的活性在发育过程中增加,从而使氯离子平衡电位(ECl)向比静息膜电位更负的值偏移。虽然早期GABA和甘氨酸去极化在神经元发育中的作用已越来越清晰,但向超极化转变在突触成熟和回路精细化中的作用仍是一个悬而未决的问题。在这里,我们通过研究KCC2基因敲低小鼠外侧上橄榄核(LSO,一个双耳听觉脑干核团)中GABA/甘氨酸能和谷氨酸能突触的成熟和发育精细化来探究这个问题,在KCC2基因敲低小鼠中,GABA和甘氨酸仍保持去极化状态。我们发现,与野生型小鼠相比,LSO突触输入发育过程中的许多关键事件,如神经递质表型的变化、GABA/甘氨酸能连接的增强和消除以及谷氨酸能突触的成熟,在KCC2基因敲低小鼠中不受干扰地发生。这些结果表明,LSO中抑制性和兴奋性突触的成熟独立于GABA和甘氨酸从去极化到超极化的转变。

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