The genes GJB2 and GJB6 respectively encoding transmembrane proteins connexin 26 (C×26) and connexin 30 (C×30) are found within 50 kb of each other in the DFNB1 complex deafness locus on chromosome 13ql2. Up to 50% of all patients with autosomal recessive non-syndromic prelingual deafness in different populations present with mutations or deletions in this locus. C×26 and C×30 are abundantly expressed in the inner ear and, in recent years, have been shown to form hemichannels that release ATP from the endolymphatic surface of supporting and epithelial cells of the organ of Corti (OoC), as well as gap junction (GJ) channels that allow the concomitant intercellular diffusion of Ca2+ mobilizing second messengers. Released ATP in turn activates...
Ca2+ signaling has been implicated in the initial pathophysiologic mechanisms underlying the cochlea...
Ca(2+) acts as a fundamental signal transduction element in inner ear, delivering information about ...
Genetic studies have conclusively linked connexin channels to human diseases, but the nature of the ...
Connexin 26 (Cx26) and connexin 30 (Cx30) form hemichannels that release ATP from the endolymphatic ...
Connexin 26 (Cx26) and connexin 30 (Cx30) form gap junction channels that allow the intercellular di...
Extracellular ATP controls various signaling systems including propagation of intercellular Ca(2+) s...
The complex deafness locus DFNB1 contains GJB2, the gene encoding connexin 26 (Cx26) and GJB6, encod...
Connexin 26 (Cx26) and connexin 30 (Cx30) are encoded by two genes (GJB2 and GJa6, respectively) tha...
Hearing relies on a sensitive mechanoelectrical transduction process in the cochlea of the inner ear...
Connexin 26 and connexin 30 are the prevailing isoforms in the epithelial and connective tissue gap ...
Several different recessive mutations in the connexin26 (Cx26; β2) gene have been associated with no...
peer reviewedCongenital deafness is a very frequent disorder occurring in approximately I in 1000 li...
SummaryMutation of the Gap Junction Beta 2 gene (GJB2) encoding connexin 26 (CX26) is the most frequ...
Ca2+ acts as a fundamental signal transduction element in the inner ear, delivering information abou...
Ca2+ acts as a fundamental signal transduction element in the inner ear, delivering information abou...
Ca2+ signaling has been implicated in the initial pathophysiologic mechanisms underlying the cochlea...
Ca(2+) acts as a fundamental signal transduction element in inner ear, delivering information about ...
Genetic studies have conclusively linked connexin channels to human diseases, but the nature of the ...
Connexin 26 (Cx26) and connexin 30 (Cx30) form hemichannels that release ATP from the endolymphatic ...
Connexin 26 (Cx26) and connexin 30 (Cx30) form gap junction channels that allow the intercellular di...
Extracellular ATP controls various signaling systems including propagation of intercellular Ca(2+) s...
The complex deafness locus DFNB1 contains GJB2, the gene encoding connexin 26 (Cx26) and GJB6, encod...
Connexin 26 (Cx26) and connexin 30 (Cx30) are encoded by two genes (GJB2 and GJa6, respectively) tha...
Hearing relies on a sensitive mechanoelectrical transduction process in the cochlea of the inner ear...
Connexin 26 and connexin 30 are the prevailing isoforms in the epithelial and connective tissue gap ...
Several different recessive mutations in the connexin26 (Cx26; β2) gene have been associated with no...
peer reviewedCongenital deafness is a very frequent disorder occurring in approximately I in 1000 li...
SummaryMutation of the Gap Junction Beta 2 gene (GJB2) encoding connexin 26 (CX26) is the most frequ...
Ca2+ acts as a fundamental signal transduction element in the inner ear, delivering information abou...
Ca2+ acts as a fundamental signal transduction element in the inner ear, delivering information abou...
Ca2+ signaling has been implicated in the initial pathophysiologic mechanisms underlying the cochlea...
Ca(2+) acts as a fundamental signal transduction element in inner ear, delivering information about ...
Genetic studies have conclusively linked connexin channels to human diseases, but the nature of the ...