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Eric C Beyer

Publications and source records attributed to Eric C Beyer.

20 records · Page 2Linked to original sources

Gap junction synthesis and degradation as therapeutic targets.

The synthesis and the degradation of gap junctions involve multiple steps that may provide targets for the modulation of intercellular communication. Many studies using cultured cells have examined the effects of inhibitors of protein synthesis, trafficking, or degradation upon connexins. Similarly, activators or inhibitors of various protein kinases have been shown to affect connexin assembly or proteolysis. These studies have helped to elucidate the connexin life-cycle. But, because of their lack of specificity for gap junction proteins, these agents would be expected to have limited therapeutic utility and to produce several deleterious side effects. However, more selective agents are being developed based on specific features of the connexin sequences. Molecular genetic approaches have been used to introduce wild-type connexins to increase intercellular communication in otherwise poorly coupled cells. Decreased intercellular communication may be obtained by application of peptides that mimic the extracellular loops and may prevent docking of hemi-channels. Alternatively, introducing mutant connexins that interfere with the oligomerization/export of endogenous connexins or with channel function by formation of non-functional heteromeric hemi-channels can also reduce intercellular communication.

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A carboxyl terminal domain of connexin43 is critical for gap junction plaque formation but not for homo- or hetero-oligomerization.

We have initiated a series of experiments to analyze the biosynthesis and oligomerization of Cx43 in cells containing other connexins through the expression of site-directed mutants and chimeric connexin polypeptides. Here we report studies concerning a mutant of Cx43 (Cx43tr) that has been truncated after amino acid 251 to remove most of the Cx43 carboxy-terminal region. In stably transfected HeLa cells, full length Cx43 localized primarily to appositional membranes while much more Cx43tr was observed in the cytoplasm. Both Cx43 and Cx43tr showed similar oligomerization profiles based on centrifugation through sucrose gradients. HeLaCx43tr cells showed limited transfer of microinjected Lucifer Yellow but did show electrical coupling. Co-expression of Cx43tr with Cx43 or Cx45 led to Cx43tr localization at appositional membranes and co-localization with the other connexins. Moreover, cells co-expressing Cx43tr with Cx43 or Cx45 showed extensive intercellular dye coupling. Thus, Cx43tr was able to oligomerize and form functional channels when expressed alone or with a compatible connexin, but it only formed plaques when co-expressed. These results suggest that the carboxyl tail of Cx43 is not important for oligomerization, but they implicate critical residues in the formation of gap junction plaques.

Animals↗