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Cell Communication & Adhesion|June 18, 2002
Application of SCAM (substituted cysteine accessibility method) to gap junction intercellular channelsM Skerrett, E Kasperek, F L Cao, et al.
Cell Communication & Adhesion|July 24, 2008
Site-directed mutagenesis reveals putative regions of protein interaction within the transmembrane domains of connexinsM M Toloue, Y Woolwine, J A Karcz, et al.
The Journal of Cell Biology|October 31, 2002
Identification of amino acid residues lining the pore of a gap junction channelI M Skerrett, J Aronowitz, J H Shin, et al.
Brain Research|December 24, 1991
Pinealocytes in rats: connexin identification and increase in coupling caused by norepinephrineJ C Sáez, V M Berthoud, R Kadle, et al.
The Journal of Cell Biology|June 1, 1992
Molecular cloning and functional expression of mouse connexin40, a second gap junction gene preferentially expressed in lungH Hennemann, T Suchyna, H Lichtenberg-Fraté, et al.
Molecular Carcinogenesis|January 1, 1990
Retinoid-enhanced gap junctional communication is achieved by increased levels of connexin 43 mRNA and proteinM Rogers, J M Berestecky, M Z Hossain, et al.
Proceedings of the National Academy of Sciences of the United States of America|October 1, 1991
Gap junctions formed by connexins 26 and 32 alone and in combination are differently affected by applied voltageL C Barrio, T Suchyna, T Bargiello, et al.
The Journal of Biological Chemistry|August 25, 1992
Two gap junction genes, connexin 31.1 and 30.3, are closely linked on mouse chromosome 4 and preferentially expressed in skinH Hennemann, E Dahl, J B White, et al.
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