TY - JOUR
T1 - Pathogenetic role of the deafness-related M34T mutation of Cx26
AU - Bicego, Massimiliano
AU - Beltramello, Martina
AU - Melchionda, Salvatore
AU - Carella, Massimo
AU - Piazza, Valeria
AU - Zelante, Leopoldo
AU - Bukauskas, Feliksas F.
AU - Arslan, Edoardo
AU - Cama, Elona
AU - Pantano, Sergio
AU - Bruzzone, Roberto
AU - D'Andrea, Paola
AU - Mammano, Fabio
N1 - Funding Information:
This work has been funded by grants from Regione Friuli Venezia-Giulia (to P.D’A.), Telethon Italy (GP0043Y02 to F.M. and P.D’A. and GGP05131 to F.M.), the Sixth Research Frame Program of the European Union (FP6 Integrated Project EuroHear, LSHG-CT-20054-512063 to F.M.), Fondazione CARIPARO (to S.P.) and National Institutes of Health (RO1-NS036706 to F.F.B.).
PY - 2006/9/1
Y1 - 2006/9/1
N2 - Mutations in the GJB2 gene, which encodes the gap junction protein connexin26 (Cx26), are the major cause of genetic non-syndromic hearing loss. The role of the allelic variant M34T in causing hereditary deafness remains controversial. By combining genetic, clinical, biochemical, electrophysiological and structural modeling studies, we have re-assessed the pathogenetic role of the M34T mutation. Genetic and audiological data indicate that the majority of heterozygous carriers and all five compound heterozygotes exhibited an impaired auditory function. Functional expression in transiently transfected HeLa cells showed that, although M34T was correctly synthesized and targeted to the plasma membrane, it inefficiently formed intercellular channels that displayed an abnormal electrical behavior and retained only 11% of the unitary conductance of the wild-type protein (HCx26wt). Moreover, M34T channels failed to support the intercellular diffusion of Lucifer Yellow and the spreading of mechanically induced intercellular Ca2+ waves. When co-expressed together with HCx26wt, M34T exerted dominant-negative effects on cell-cell coupling. Our findings are consistent with a structural model, predicting that the mutation leads to a constriction of the channel pore. These data support the view that M34T is a pathological variant of Cx26 associated with hearing impairment.
AB - Mutations in the GJB2 gene, which encodes the gap junction protein connexin26 (Cx26), are the major cause of genetic non-syndromic hearing loss. The role of the allelic variant M34T in causing hereditary deafness remains controversial. By combining genetic, clinical, biochemical, electrophysiological and structural modeling studies, we have re-assessed the pathogenetic role of the M34T mutation. Genetic and audiological data indicate that the majority of heterozygous carriers and all five compound heterozygotes exhibited an impaired auditory function. Functional expression in transiently transfected HeLa cells showed that, although M34T was correctly synthesized and targeted to the plasma membrane, it inefficiently formed intercellular channels that displayed an abnormal electrical behavior and retained only 11% of the unitary conductance of the wild-type protein (HCx26wt). Moreover, M34T channels failed to support the intercellular diffusion of Lucifer Yellow and the spreading of mechanically induced intercellular Ca2+ waves. When co-expressed together with HCx26wt, M34T exerted dominant-negative effects on cell-cell coupling. Our findings are consistent with a structural model, predicting that the mutation leads to a constriction of the channel pore. These data support the view that M34T is a pathological variant of Cx26 associated with hearing impairment.
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U2 - 10.1093/hmg/ddl184
DO - 10.1093/hmg/ddl184
M3 - Article
C2 - 16849369
AN - SCOPUS:33747880802
SN - 0964-6906
VL - 15
SP - 2569
EP - 2587
JO - Human Molecular Genetics
JF - Human Molecular Genetics
IS - 17
ER -