Yu Q, Wang Y, Chang Q, Wang J, Gong S, Li H, Lin X
1] Department of Otolaryngology Head & Neck Surgery, Beijing Tongren Hospital, Capital Medical University, Beijing, China [2] Department of Otolaryngology, Emory University School of Medicine, Atlanta, GA, USA.
Department of Otolaryngology, Eye & ENT Hospital, Fudan University, Shanghai, China.
Gene Ther. 2014 Jan;21(1):71-80. doi: 10.1038/gt.2013.59. Epub 2013 Nov 14.
Mutations in GJB2, which codes for the gap junction (GJ) protein connexin26 (Cx26), are the most common causes of human nonsyndromic hereditary deafness. We inoculated modified adeno-associated viral (AAV) vectors into the scala media of early postnatal conditional Gjb2 knockout mice to drive exogenous Cx26 expression. We found extensive virally expressed Cx26 in cells lining the scala media, and intercellular GJ network was re-established in the organ of Corti of mutant mouse cochlea. Widespread ectopic Cx26 expression neither formed ectopic GJs nor affected normal hearing thresholds in wild-type (WT) mice, suggesting that autonomous cellular mechanisms regulate proper membrane trafficking of exogenously expressed Cx26 and govern the functional manifestation of them. Functional recovery of GJ-mediated coupling among the supporting cells was observed. We found that both cell death in the organ of Corti and degeneration of spiral ganglion neurons in the cochlea of mutant mice were substantially reduced, although auditory brainstem responses did not show significant hearing improvement. This is the first report demonstrating that virally mediated gene therapy restored extensive GJ intercellular network among cochlear non-sensory cells in vivo. Such a treatment performed at early postnatal stages resulted in a partial rescue of disease phenotypes in the cochlea of the mutant mice.
编码间隙连接(GJ)蛋白连接蛋白26(Cx26)的GJB2基因突变是人类非综合征性遗传性耳聋的最常见原因。我们将修饰的腺相关病毒(AAV)载体接种到出生后早期条件性Gjb2基因敲除小鼠的中阶,以驱动外源性Cx26表达。我们发现在中阶内衬细胞中有大量病毒表达的Cx26,并且在突变小鼠耳蜗的柯蒂器中重新建立了细胞间GJ网络。广泛的异位Cx26表达既未形成异位GJ,也未影响野生型(WT)小鼠的正常听力阈值,这表明自主细胞机制调节外源性表达的Cx26的正确膜运输并控制其功能表现。观察到支持细胞之间GJ介导的偶联功能恢复。我们发现,尽管听觉脑干反应未显示出明显的听力改善,但突变小鼠耳蜗中柯蒂器的细胞死亡和螺旋神经节神经元的退化均明显减少。这是第一份证明病毒介导的基因治疗在体内恢复了耳蜗非感觉细胞之间广泛的GJ细胞间网络的报告。在出生后早期进行这种治疗可部分挽救突变小鼠耳蜗中的疾病表型。