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AP-1单体pATF2和Fos的反调节:成年听力和耳聋大鼠经耳蜗内电刺激后脑干神经元的分子重新调整。

Counter-regulation of the AP-1 monomers pATF2 and Fos: Molecular readjustment of brainstem neurons in hearing and deaf adult rats after electrical intracochlear stimulation.

作者信息

Rauch A-K, Rosskothen-Kuhl N, Illing R-B

机构信息

Neurobiological Research Laboratory, Department of Otorhinolaryngology, University of Freiburg, Germany.

出版信息

Neuroscience. 2016 Jan 28;313:184-98. doi: 10.1016/j.neuroscience.2015.11.025. Epub 2015 Nov 18.

Abstract

Expression of the immediate-early gene fos (also known as c-fos) and phosphorylation of the product of the early response gene atf2 (pATF2) in the adult auditory brainstem can be modulated by electrical intracochlear stimulation. The Fos and pATF2 proteins are competitive monomers of the heterodimeric activator protein-1 (AP-1) transcription factor that triggers the expression of genes related to neural plasticity. Our previous findings showed that the stimulation-induced spatio-temporal pattern of Fos expression in the adult auditory system depends on hearing experience. In this study, we aimed to identify a possible correlation of pATF2 and Fos expression. Adult normal hearing and neonatally deafened rats were unilaterally stimulated with a cochlear implant (CI) for 45 min, 73 min, or 2h. The numbers of Fos- and pATF2-positive neurons in the anteroventral cochlear nucleus (AVCN), the lateral superior olive (LSO), and the central inferior colliculus (CIC) were evaluated. Following stimulation, an increased Fos expression was demonstrated in all these regions in hearing and deaf rats. However, in neonatally deafened rats, significantly more Fos-positive neurons emerged that did not obey a tonotopic order. Independent of hearing experience, Fos expression correlated with a locally matching decrease of pATF2 expression in AVCN and LSO, but not in CIC. We suggest that these changes in gene expression result in a shift of AP-1 dimer composition from ATF2:Jun to Fos:Jun. This change in AP-1 constellation is expected to invoke different transcriptional cascades leading to distinct modes of tissue reorganization and plasticity responses in the mature central auditory system under stimulation.

摘要

成年听觉脑干中即刻早期基因fos(也称为c-fos)的表达以及早期反应基因atf2的产物(pATF2)的磷酸化可通过耳蜗内电刺激进行调节。Fos和pATF2蛋白是异二聚体激活蛋白-1(AP-1)转录因子的竞争性单体,该转录因子可触发与神经可塑性相关的基因表达。我们之前的研究结果表明,成年听觉系统中刺激诱导的Fos表达的时空模式取决于听力经验。在本研究中,我们旨在确定pATF2与Fos表达之间可能存在的相关性。成年正常听力和新生耳聋大鼠单侧植入人工耳蜗(CI),分别刺激45分钟、73分钟或2小时。评估了前腹侧耳蜗核(AVCN)、外侧上橄榄核(LSO)和中央下丘(CIC)中Fos和pATF2阳性神经元的数量。刺激后,听力正常和耳聋大鼠的所有这些区域中Fos表达均增加。然而,在新生耳聋大鼠中,出现了明显更多不遵循音调拓扑顺序的Fos阳性神经元。与听力经验无关,AVCN和LSO中Fos表达与pATF2表达的局部匹配性降低相关,但在CIC中并非如此。我们认为,这些基因表达的变化导致AP-1二聚体组成从ATF2:Jun转变为Fos:Jun。AP-1组成的这种变化预计会引发不同的转录级联反应,从而在刺激下导致成熟的中枢听觉系统中出现不同的组织重组模式和可塑性反应。

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