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Molecular basis for potentiation of Cx36 gap junction channel conductance by n-alcohols and general anesthetics.


ABSTRACT: In our recent study, we have demonstrated that short carbon chain n-alcohols (up to octanol) stimulated while long carbon chain n-alcohols inhibited the conductance of connexin (Cx) 36 (Cx36) gap junction (GJ) channels. In contrast, GJ channels composed of other types of Cxs all were inhibited by n-alcohols independent of their carbon chain length. To identify the putative structural domains of Cx36, responsible for the dual effect of n-alcohols, we performed structural modeling of Cx36 protein docking with hexanol and isoflurane that stimulated as well as nonanol and carbenoxolone that inhibited the conductance of Cx36 GJs and revealed their multiple common docking sites and a single pocket accessible only to hexanol and isoflurane. The pocket is located in the

SUBMITTER: Raskevicius V 

PROVIDER: S-EPMC5803492 | biostudies-literature | 2018 Feb

REPOSITORIES: biostudies-literature

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