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首页> 外文期刊>Neuroreport >Mosaic pattern of Cre recombinase expression in cochlear outer hair cells of the Brn3.1 Cre mouse
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Mosaic pattern of Cre recombinase expression in cochlear outer hair cells of the Brn3.1 Cre mouse

机译:Brn3.1 Cre小鼠耳蜗外毛细胞中Cre重组酶表达的镶嵌模式

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摘要

The Brn3.1 gene encodes for the protein Brn3.1, which is a member of the POU-IV class of transcription factors. Mutation leads to nonsyndromic human progressive hearing loss (DFNA15). To investigate the suitability of the Brn3.1 promoter for Cre recombinase-induced genetic recombination in cochlear hair cells, we established a transgenic Brn3.1 Cre mouse. This mouse line was crossbred with floxed ROSA26(lacZ) and ROSA26(eYFP) reporter mice. The cochleae were histologically analysed in cryosections at E16.5 and whole-mount preparations from P2 until P85. In addition, mice from all used strains and their recombinant offspring were tested electrophysiologically by auditory brainstem responses (ABR) and distorsion product otoacoustic emissions (DPOAE). Cre recombinase activity could be detected in P14 and P21 animals in a mosaic pattern in 26.3 and 9.9% of the outer hair cells, respectively. All investigated mice showed normal ABR and DPOAE values, indicating that neither insertion of the internal ribosome entry site (IRES) Cre cassette into the Brn3.1 gene led to abnormal auditory development nor did the reporter strains show inherited hearing disorders. This study shows that Cre expression under the control of the Brn3.1 promoter is feasible and that the insertion of the internal ribosome entry site Cre cassette into this locus exerted no effects on hearing development. Because of the inconstant pattern and the limited duration of expression, the application of the developed mouse line might be restricted. Also, the unchanged hearing capacity and structural integrity of the organ of Corti in available reporter lines indicate that they may be useful tools for hearing research. Copyright (C) 2015 Wolters Kluwer Health, Inc. All rights reserved.
机译:Brn3.1基因编码蛋白质Brn3.1,它是POU-IV类转录因子的成员。突变会导致人类非综合征性进行性听力丧失(DFNA15)。为了研究Brn3.1启动子对Cre重组酶诱导的耳蜗毛细胞遗传重组的适应性,我们建立了转基因Brn3.1 Cre小鼠。该小鼠品系与亚麻ROSA26(lacZ)和ROSA26(eYFP)报告基因小鼠杂交。在E16.5的冷冻切片中对耳蜗进行了组织学分析,从P2到P85进行了整个制剂的制备。此外,通过听性脑干反应(ABR)和畸变产物耳声发射(DPOAE)对所有使用过的品系及其重组后代的小鼠进行了电生理学测试。在P14和P21动物中,分别在26.3%和9.9%的外毛细胞中以镶嵌模式检测到Cre重组酶活性。所有研究的小鼠均显示正常的ABR和DPOAE值,表明内部核糖体进入位点(IRES)Cre盒插入Brn3.1基因均不会导致异常听觉发育,而报告株也未显示遗传性听力障碍。这项研究表明在Brn3.1启动子的控制下Cre表达是可行的,内部核糖体进入位点Cre盒插入该基因座对听力发育没有影响。由于模式不固定且表达时间有限,因此可能限制了开发的小鼠系的应用。同样,在可用的报告基因系中,Corti器官的听力能力和结构完整性保持不变,表明它们可能是进行听力研究的有用工具。版权所有(C)2015 Wolters Kluwer Health,Inc.保留所有权利。

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