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连接蛋白、听力与耳聋:连接蛋白26基因变异的临床情况

Connexins, hearing and deafness: clinical aspects of mutations in the connexin 26 gene.

作者信息

Lefebvre P P, Van De Water T R

机构信息

Department of Otorhinolaryngology, University of Liège, Belgium.

出版信息

Brain Res Brain Res Rev. 2000 Apr;32(1):159-62. doi: 10.1016/s0165-0173(99)00075-2.

Abstract

Congenital deafness is a very frequent disorder occurring in approximately I in 1000 live births. Mutations in GJB2 encoding for gap junction protein connexin-26 (Cx26) have been established as the basis of autosomal recessive non-syndromic hearing loss and proposed in some rare cases of autosomal dominant form of deafness. Connexin are gap-junction proteins which constitute a major system of intercellular communication important in the exchange of electrolytes, second messengers and metabolites. In the inner ear, connexin 26 expression was demonstrated in the stria vascularis, basement membrane, limbus and the spiral prominence of the human cochlea. The loss of connexin 26 in the gap junction complex would expect to disrupt the recycling of potassium from the synapses at the base of hair cells through the supporting cells and fibroblasts of potassium ions back to the high potassium containing endolymph of the cochlear duct and therefore would result in a local intoxication of the Corti s organ by potassium, leading to the hearing loss. The discovery of the genes responsible of hearing loss in particular the identification of mutations in the gene coding for connexin 26 allows to hope some tremendous help in genetic counseling. The possible implication of the mutation of the connexin gene in the pathophysiology of some progressive adult deafness opens new prospects in the fine diagnostic of the ear diseases and eventually may lead to new therapeutic strategies applied to the cochlea.

摘要

先天性耳聋是一种非常常见的疾病,在每1000例活产中约有1例发生。编码缝隙连接蛋白连接蛋白-26(Cx26)的GJB2基因突变已被确定为常染色体隐性非综合征性听力损失的基础,并在一些罕见的常染色体显性耳聋病例中被提出。连接蛋白是缝隙连接蛋白,构成细胞间通讯的主要系统,在电解质、第二信使和代谢物的交换中起重要作用。在内耳中,连接蛋白26在人耳蜗的血管纹、基底膜、边缘和螺旋隆起中表达。缝隙连接复合物中连接蛋白26的缺失预计会破坏钾从毛细胞基部的突触通过支持细胞和成纤维细胞再循环回到含有高钾的耳蜗管内淋巴,因此会导致柯蒂器因钾局部中毒,导致听力损失。导致听力损失的基因的发现,特别是编码连接蛋白26的基因突变的鉴定,有望在遗传咨询方面提供巨大帮助。连接蛋白基因突变在一些进行性成人耳聋病理生理学中的可能影响为耳部疾病的精细诊断开辟了新的前景,并最终可能导致应用于耳蜗的新治疗策略。

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