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Connexin 32 mutations from X-linked Charcot-Marie-Tooth disease patients: functional defects and dominant negative
Y Omori1, M Mesnil, H Yamasaki
1Unit of Multistage Carcinogenesis, International Agency for Research on Cancer, Lyon, France.
Abstract:
We have characterized the function of connexin (Cx) 32 gene mutations found in X-linked dominant Charcot-Marie-Tooth disease with respect to their ability to form functional gap junctions among themselves and to inactivate wild-type Cx32 by a dominant negative mechanism. We prepared four types of Cx32 mutant cDNAs and transfected them into HeLa cells, which do not show detectable levels of gap junctional intercellular communication (GJIC), nor expression of any connexins examined. Cells transfected with the wild-type Cx32 gene, but not those transfected with three different base substitution mutations (i.e. Cys 60 to Phe, Val 139 to Met, and Arg 215 to Trp), restored GJIC. Unexpectedly, in cells transfected with a nonsense mutant at codon 220, there was also restored GJIC. When we double-transfected these mutant constructs into the HeLa cells that had already been transfected with the wild-type Cx32 gene and thus were GJIC proficient, three base substitution mutants inhibited GJIC, suggesting that these three mutants can eliminate the function of wild-type Cx32 in a dominant negative manner. The nonsense mutation at codon 220 did not show such a dominant negative effect. Since both mutant and wild-type Cx32 mRNAs were detected, but only poor Cx32 protein expression at cell-cell contact areas was observed in the double transfectants, it is suggested that certain mutants form nonfunctional chimeric connexons with wild-type connexins, which are not properly inserted into the cytoplasmic membrane.
Insights
Connexin 32 mutations in Charcot-Marie-Tooth disease were studied. Three mutations impaired gap junction function and inhibited wild-type connexin 32, while one nonsense mutation did not.
Area of Science:
- Molecular biology
- Cell biology
- Neuroscience
Background:
- X-linked dominant Charcot-Marie-Tooth disease is associated with connexin (Cx) 32 gene mutations.
- Understanding these mutations' impact on gap junction function is crucial.
Purpose of the Study:
- To characterize Cx32 mutations' function regarding gap junction formation.
- To investigate their dominant-negative effect on wild-type Cx32.
Main Methods:
- Transfection of HeLa cells with wild-type and mutant Cx32 cDNAs.
- Assessment of gap junctional intercellular communication (GJIC) restoration.
- Analysis of dominant-negative effects in double-transfection experiments.
Main Results:
- Wild-type Cx32 restored GJIC; three base substitution mutants did not.
- A nonsense Cx32 mutant (codon 220) unexpectedly restored GJIC.
- Three base substitution mutants exhibited dominant-negative effects, inhibiting wild-type Cx32 function.
Conclusions:
- Certain Cx32 mutations disrupt gap junction formation and function.
- These mutants can inactivate wild-type Cx32 through a dominant-negative mechanism.
- Nonfunctional chimeric connexons may form, hindering proper membrane insertion.