4.7 Article

Phosphorylation of connexin43 on serine368 by protein kinase C regulates gap junctional communication

Journal

JOURNAL OF CELL BIOLOGY
Volume 149, Issue 7, Pages 1503-1512

Publisher

ROCKEFELLER UNIV PRESS
DOI: 10.1083/jcb.149.7.1503

Keywords

gap junctions; connexins; tumor promoter; phosphorylation; carcinogenesis

Categories

Funding

  1. NHLBI NIH HHS [HL58732] Funding Source: Medline
  2. NIGMS NIH HHS [GM46277, GM55632, R01 GM055632] Funding Source: Medline

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Phorbol esters (e.g.,TPA) activate protein kinase C (PKC), increase connexin43 (Cx43) phosphorylation, and decrease cell-cell communication via gap junctions in many cell types. We asked whether PKC directly phosphorylates and regulates Cx43. Rat epithelial T51B cells metabolically labeled with P-32(i) yielded two-dimensional phosphotryptic maps of Cx43 with several phosphopeptides that increased in intensity upon TPA treatment. One of these peptides comigrated with the major phosphopeptide observed after:PKC phosphorylation of immunoaffinity-purified Cx43. Purification of this comigrating peptide and subsequent sequencing indicated that the phosphorylated serine was residue 368. To pursue the functional importance of phosphorylation at this site, fibroblasts from Cx43(-/-) mice were transfected with either wild-type (Cx43wt) or mutant Cx43 (Cx43-S368A). Intercellular dye transfer studies revealed different responses to TPA and were followed by single channel analyses. TPA stimulation of T51B cells or Cx43wt-transfected fibroblasts caused a large increase in the relative frequency of similar to 50-pS channel events and a concomitant loss of similar to 100-pS channel events. This change to similar to 50-pS events was absent when cells transfected with Cx43-S368A were treated with TPA. These data strongly suggest that PKC directly phosphorylates Cx43 on S368 in vivo, which results in a change in single channel behavior that contributes to a decrease in intercellular communication.

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