Background: Gap junctions facilitate exchange of small molecules between adjacent cells, serving a crucial function for the maintenance of cellular homeostasis. Mutations in connexins, the basic unit of gap junctions, are associated with several human hereditary disorders. For example, mutations in connexin26 (Cx26) cause both non-syndromic deafness and syndromic deafness associated with skin abnormalities such as keratitis-ichthyosis-deafness (KID) syndrome. These mutations can alter the formation and function of gap junction channels through different mechanisms, and in turn interfere with various cellular processes leading to distinct disorders. The KID associated Cx26 mutations were mostly shown to result in elevated hemichannel activit...
Mutations in GJB2 (connexin [Cx]26) cause either deafness or deafness associated with skin diseases....
Some mutations in gap junction protein Connexin 26 (Cx26) lead to syndromic deafness, where hearing ...
AbstractDefects in several different connexins have been associated with several different diseases....
Background: Gap junctions facilitate exchange of small molecules between adjacent cells, serving a c...
Background: Gap junctions facilitate exchange of small molecules between adjacent cells, serving a c...
Abstract Connexin (Cx) proteins form intercellular gap junction channels by first assembling into si...
Mutations in the GJB2 gene-encoding connexin 26 (Cx26) have been linked to skin disorders and geneti...
Mutations in Cx26 gene are found in most cases of human genetic deafness. Some mutations produce syn...
AbstractConnexin (Cx) proteins form intercellular gap junction channels by first assembling into sin...
Mutations in the GJB2 gene-encoding connexin 26 (Cx26) have been linked to skin disorders and geneti...
Abstract Connexin (Cx) proteins form intercellular gap junction channels by first assembling into si...
Mutations in the human gene encoding connexin 26 (Cx26 or GJB2) cause either nonsyndromic deafness o...
AbstractConnexin (Cx) proteins form intercellular gap junction channels by first assembling into sin...
Mutations in the GJB2 gene-encoding connexin 26 (Cx26) have been linked to skin disorders and geneti...
Mutations in GJB2 (connexin [Cx]26) cause either deafness or deafness associated with skin diseases....
Mutations in GJB2 (connexin [Cx]26) cause either deafness or deafness associated with skin diseases....
Some mutations in gap junction protein Connexin 26 (Cx26) lead to syndromic deafness, where hearing ...
AbstractDefects in several different connexins have been associated with several different diseases....
Background: Gap junctions facilitate exchange of small molecules between adjacent cells, serving a c...
Background: Gap junctions facilitate exchange of small molecules between adjacent cells, serving a c...
Abstract Connexin (Cx) proteins form intercellular gap junction channels by first assembling into si...
Mutations in the GJB2 gene-encoding connexin 26 (Cx26) have been linked to skin disorders and geneti...
Mutations in Cx26 gene are found in most cases of human genetic deafness. Some mutations produce syn...
AbstractConnexin (Cx) proteins form intercellular gap junction channels by first assembling into sin...
Mutations in the GJB2 gene-encoding connexin 26 (Cx26) have been linked to skin disorders and geneti...
Abstract Connexin (Cx) proteins form intercellular gap junction channels by first assembling into si...
Mutations in the human gene encoding connexin 26 (Cx26 or GJB2) cause either nonsyndromic deafness o...
AbstractConnexin (Cx) proteins form intercellular gap junction channels by first assembling into sin...
Mutations in the GJB2 gene-encoding connexin 26 (Cx26) have been linked to skin disorders and geneti...
Mutations in GJB2 (connexin [Cx]26) cause either deafness or deafness associated with skin diseases....
Mutations in GJB2 (connexin [Cx]26) cause either deafness or deafness associated with skin diseases....
Some mutations in gap junction protein Connexin 26 (Cx26) lead to syndromic deafness, where hearing ...
AbstractDefects in several different connexins have been associated with several different diseases....