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α9 亚单位组成的烟碱型乙酰胆碱受体的活性通过双向信号转导程序调节突触稳定。

Activity of nAChRs containing alpha9 subunits modulates synapse stabilization via bidirectional signaling programs.

机构信息

Department of Neuroscience, Tufts University School of Medicine, Boston, Massachusetts, USA.

出版信息

Dev Neurobiol. 2009 Dec;69(14):931-49. doi: 10.1002/dneu.20753.

DOI:10.1002/dneu.20753
PMID:19790106
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2819290/
Abstract

Although the synaptogenic program for cholinergic synapses of the neuromuscular junction is well known, little is known of the identity or dynamic expression patterns of proteins involved in non-neuromuscular nicotinic synapse development. We have previously demonstrated abnormal presynaptic terminal morphology following loss of nicotinic acetylcholine receptor (nAChR) alpha9 subunit expression in adult cochleae. However, the molecular mechanisms underlying these changes have remained obscure. To better understand synapse formation and the role of cholinergic activity in the synaptogenesis of the inner ear, we exploit the nAChR alpha9 subunit null mouse. In this mouse, functional acetylcholine (ACh) neurotransmission to the hair cells is completely silenced. Results demonstrate a premature, effusive innervation to the synaptic pole of the outer hair cells in alpha9 null mice coinciding with delayed expression of cell adhesion proteins during the period of effusive contact. Collapse of the ectopic innervation coincides with an age-related hyperexpression pattern in the null mice. In addition, we document changes in expression of presynaptic vesicle recycling/trafficking machinery in the alpha9 null mice that suggests a bidirectional information flow between the target of the neural innervation (the hair cells) and the presynaptic terminal that is modified by hair cell nAChR activity. Loss of nAChR activity may alter transcriptional activity, as CREB binding protein expression is decreased coincident with the increased expression of N-Cadherin in the adult alpha9 null mice. Finally, by using mice expressing the nondesensitizing alpha9 L9'T point mutant nAChR subunit, we show that increased nAChR activity drives synaptic hyperinnervation.

摘要

尽管神经肌肉接头的胆碱能突触的突触发生程序众所周知,但对于参与非神经肌肉烟碱型突触发育的蛋白质的身份或动态表达模式知之甚少。我们之前已经证明,在成年耳蜗中丧失烟碱型乙酰胆碱受体 (nAChR) alpha9 亚基表达后,突触前终末形态异常。然而,这些变化的分子机制仍然不清楚。为了更好地理解突触形成以及胆碱能活性在内耳突触发生中的作用,我们利用 nAChR alpha9 亚基缺失小鼠。在这种小鼠中,功能性乙酰胆碱 (ACh) 神经递质传递到毛细胞完全沉默。结果表明,alpha9 缺失小鼠的外毛细胞突触极出现过早、渗出性神经支配,同时在渗出性接触期间细胞粘附蛋白的表达延迟。异位神经支配的崩溃与缺失小鼠中与年龄相关的过度表达模式同时发生。此外,我们记录了 alpha9 缺失小鼠中突触前囊泡再循环/运输机制表达的变化,这表明神经支配的靶标(毛细胞)和受毛细胞 nAChR 活性修饰的突触前终末之间存在双向信息流。nAChR 活性的丧失可能会改变转录活性,因为 CREB 结合蛋白的表达减少与成年 alpha9 缺失小鼠中 N-钙粘蛋白表达增加同时发生。最后,通过使用表达非脱敏 alpha9 L9'T 点突变 nAChR 亚基的小鼠,我们表明增加 nAChR 活性会导致突触过度神经支配。

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