4.7 Article

Phosphorylation at S365 is a gatekeeper event that changes the structure of Cx43 and prevents down-regulation by PKC

Journal

JOURNAL OF CELL BIOLOGY
Volume 179, Issue 6, Pages 1301-1309

Publisher

ROCKEFELLER UNIV PRESS
DOI: 10.1083/jcb.200707060

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Funding

  1. NIGMS NIH HHS [R01 GM072631, R01 GM055632, GM072631, GM055632] Funding Source: Medline

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Phosphorylation at unspecified sites is known to regulate the life cycle (assembly, gating, and turnover) of the gap junction protein, Cx43. In this paper, we show that Cx43 is phosphorylated on S365 in cultured cells and heart tissue. Nuclear magnetic resonance structural studies of the C-terminal region of Cx43 with an S365D mutation indicate that it forms a different stable conformation than unphosphorylated wild-type Cx43. Immuno-labeling with an antibody specific for Cx43 phosphorylated at S365 shows staining on gap junction structures in heart tissue that is lost upon hypoxia when Cx43 is no longer specifically localized to the intercalated disk. Efficient phosphorylation at S368, an important Cx43 channel regulatory event that increases during ischemia or PKC activation, depends on S365 being unphosphorylated. Thus, phosphorylation at S365 can serve a gatekeeper function that may represent a mechanism to protect cells from ischemia and phorbol ester-induced down-regulation of channel conductance.

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