Defourny Jean, Thelen Nicolas, Thiry Marc
GIGA-Neurosciences, Unit of Cell and Tissue Biology, University of Liège, C.H.U. B36, B-4000, Liège, Belgium.
GIGA-Neurosciences, Unit of Cell and Tissue Biology, University of Liège, C.H.U. B36, B-4000, Liège, Belgium.
Hear Res. 2019 Mar 15;374:69-75. doi: 10.1016/j.heares.2019.01.020. Epub 2019 Jan 30.
Hereditary hearing loss affects about 1 per 1000 children. Mutations in GJB2, which encodes the connexin 26 protein (Cx26) involved in cochlear homeostasis, are found in about 50% of patients with autosomal recessive non-syndromic hearing loss. Deciphering the trafficking pathway of cochlear Cx26 in situ should represent an advance in understanding the pathogenic significance of many of these mutations. Connexins trafficking and delivery to lipid raft-associated gap junction plaques usually requires successively microtubule and actin networks. Here we show that cochlear Cx26 exhibits an unusual trafficking pathway. We observed that Cx26 assembly occurs in non-lipid raft membrane domains and that junctional plaques are devoid of actin and associated zonula occludens proteins. Using cytoskeleton-disrupting drugs in organotypic culture, we found that cochlear Cx26 gap junction assembly requires microtubules but not actin filaments. Altogether, our data provide an unexpected insight into Cx26 trafficking pathway and gap junction assembly in the cochlea.
遗传性听力损失影响约千分之一的儿童。编码参与耳蜗内环境稳定的连接蛋白26(Cx26)的GJB2基因突变,在约50%的常染色体隐性非综合征性听力损失患者中被发现。原位解析耳蜗Cx26的运输途径应该是在理解这些突变中许多突变的致病意义方面的一个进展。连接蛋白运输并递送至脂筏相关的间隙连接斑块通常依次需要微管和肌动蛋白网络。在这里,我们展示了耳蜗Cx26呈现出一种不寻常的运输途径。我们观察到Cx26组装发生在非脂筏膜结构域,并且连接斑块缺乏肌动蛋白和相关的紧密连接蛋白。在器官型培养中使用破坏细胞骨架的药物,我们发现耳蜗Cx26间隙连接组装需要微管而不是肌动蛋白丝。总之,我们的数据为耳蜗中Cx26运输途径和间隙连接组装提供了意想不到的见解。