The lipidated connexin mimetic peptide SRPTEKT-Hdcis a potent inhibitor of Cx43 channels with specificity for the pS368 phospho-isoform

Author:

Cotter Maura L.1,Boitano Scott123,Lampe Paul D.4,Solan Joell L.4,Vagner Josef35,Ek-Vitorin Jose F.1,Burt Janis M.1

Affiliation:

1. Department of Physiology, University of Arizona, Tucson, Arizona

2. Asthma and Airway Disease Research Center, University of Arizona, Tucson, Arizona

3. Bio5 Institute, University of Arizona, Tucson, Arizona

4. Translational Research Program, Fred Hutchinson Cancer Research Center, Seattle, Washington

5. Department of Pharmacology, University of Arizona, Tucson, Arizona

Abstract

Connexin (Cx) mimetic peptides derived from extracellular loop II sequences (e.g., Gap27: SRPTEKTIFII; Peptide5: VDCFLSRPTEKT) have been used as reversible, Cx-specific blockers of hemichannel (HCh) and gap junction channel (GJCh) function. These blockers typically require high concentrations (~5 µM, <1 h for HCh; ~100 µM, >1 h for GJCh) to achieve inhibition. We have shown that addition of a hexadecyl ( Hdc) lipid tail to the conserved SRPTEKT peptide sequence (SRPTEKT- Hdc) results in a novel, highly efficacious, and potent inhibitor of mechanically induced Ca2+-wave propagation (IC5064.8 pM) and HCh-mediated dye uptake (IC5045.0 pM) in Madin-Darby canine kidney cells expressing rat Cx43 (MDCK43). The lack of similar effect on dye coupling (NBD-MTMA) suggested channel conformation-specific inhibition. Here we report that SRPTEKT- Hdc inhibition of Ca2+-wave propagation, dye coupling, and dye uptake depended on the functional configuration of Cx43 as determined by phosphorylation at serine 368 (S368). Ca2+-wave propagation was enhanced in MDCK cells expressing single-site mutants of Cx43 that mimicked (MDCK43-S368D) or favored (MDCK43-S365A) phosphorylation at S368. Furthermore, SRPTEKT- Hdc potently inhibited GJCh-mediated Ca2+-wave propagation (IC50230.4 pM), dye coupling, and HCh-mediated dye uptake in MDCK43-S368D and -S365A cells. In contrast, Ca2+-wave propagation, dye coupling, and dye uptake were largely unaffected (IC5012.3 μM) by SRPTEKT- Hdc in MDCK43-S368A and -S365D cells, mutations that mimic or favor dephosphorylation at S368. Together, these data indicate that SRPTEKT- Hdc is a potent inhibitor of physiological Ca2+-wave signaling mediated specifically by the pS368 phosphorylated form of Cx43.

Funder

HHS | NIH | National Heart, Lung, and Blood Institute

HHS | NIH | National Institute of Neurological Disorders and Stroke

HHS | NIH | National Institute of General Medical Sciences

Publisher

American Physiological Society

Subject

Cell Biology,Physiology

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