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在小鼠中对 connexin26 进行定时条件性敲除揭示了 connexin26 在听力出现之前的关键耳蜗发育事件中的暂时需求。

Timed conditional null of connexin26 in mice reveals temporary requirements of connexin26 in key cochlear developmental events before the onset of hearing.

机构信息

Department of Otolaryngology, Emory University School of Medicine, 615 Michael Street, Atlanta, GA 30322-3030, USA.

Department of Otolaryngology, Emory University School of Medicine, 615 Michael Street, Atlanta, GA 30322-3030, USA; Department of Cell Biology, Emory University School of Medicine, 615 Michael Street, Atlanta, GA 30322-3030, USA.

出版信息

Neurobiol Dis. 2015 Jan;73:418-27. doi: 10.1016/j.nbd.2014.09.005. Epub 2014 Sep 22.

DOI:10.1016/j.nbd.2014.09.005
PMID:25251605
Abstract

Mutations in the Gjb2 gene, which encodes a gap junction protein connexin26 (Cx26), are the most prevalent form of hereditary deafness in humans and represent about half of non-syndromic congenital deafness cases in many ethnic populations. Cochlear potassium (K+) recycling in mature cochlea is required for normal hearing. It is thought that gap junctions are essential for K+ recycling and that Gjb2 mutations cause Gjb2-associated deafness by disrupting K+ recycling in mature cochlea. Here we present evidence showing that Gjb2 is required for normal development of the neonatal organ of Corti prior to the onset of the hearing in mice. In the conditional Gjb2 null (cCx26 null) mice, ribbon synapses in inner hair cells remained poorly developed, the afferent type I fibers failed to finish the refinement process to form convergent innervation to individual inner hair cells. The spontaneous depolarizing activities in the supporting cells, which normally diminish in the wild type cochleae after postnatal day 8 (P8), remained strong in the cochlea after P8 in the mutant mice. Furthermore, the deafness phenotype was readily generated only if the Cx26 expression in the organ of Corti was significantly reduced before P6. Similar amount of Cx26 reduction in more mature cochleae had a much weaker effect in damaging the hearing sensitivity. Our findings indicated that Cx26 plays essential roles in the maturation process of the organ of Corti prior to the establishment of high K+ in the endolymph and the onset of hearing. These results suggest that successful treatment of Cx26 deafness requires early intervention before the cochlea fully matures.

摘要

Gjb2 基因突变,该基因编码间隙连接蛋白 connexin26(Cx26),是人类遗传性耳聋最常见的形式,代表许多种族人群中非综合征性先天性耳聋病例的一半左右。成熟耳蜗中的耳蜗钾(K+)再循环对于正常听力是必需的。人们认为间隙连接对于 K+再循环是必不可少的,并且 Gjb2 突变通过破坏成熟耳蜗中的 K+再循环引起 Gjb2 相关耳聋。在这里,我们提供的证据表明,Gjb2 在小鼠听力开始之前对于新生的 Corti 器官的正常发育是必需的。在条件性 Gjb2 缺失(cCx26 缺失)小鼠中,内毛细胞中的带状突触仍然发育不良,传入型 I 纤维未能完成细化过程以形成对单个内毛细胞的会聚神经支配。在支持细胞中的自发去极化活动,在野生型耳蜗中通常在出生后第 8 天(P8)后减少,但在突变小鼠的耳蜗中 P8 后仍然很强。此外,仅当 Cx26 在 Corti 器官中的表达在 P6 之前显著降低时,耳聋表型才很容易产生。在更成熟的耳蜗中相似量的 Cx26 减少对损害听力敏感性的影响要弱得多。我们的研究结果表明,Cx26 在成熟耳蜗之前的内淋巴中高 K+建立和听力开始之前,在 Corti 器官的成熟过程中发挥着重要作用。这些结果表明,成功治疗 Cx26 耳聋需要在耳蜗完全成熟之前进行早期干预。

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