14-3-3 binding creates a memory of kinase action by stabilizing the modified state of phospholamban

The cardiac membrane protein phospholamban (PLN) is targeted by protein kinase A (PKA) at Ser and by Ca /calmodulin-dependent protein kinase II (CaMKII) at Thr β-Adrenergic stimulation and PKA-dependent phosphorylation of Ser acutely stimulate the sarcoplasmic reticulum calcium pump (SERCA) by relie...

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Veröffentlicht in:Science signaling 2020-09, Vol.13 (647)
Hauptverfasser: Menzel, Julia, Kownatzki-Danger, Daniel, Tokar, Sergiy, Ballone, Alice, Unthan-Fechner, Kirsten, Kilisch, Markus, Lenz, Christof, Urlaub, Henning, Mori, Mattia, Ottmann, Christian, Shattock, Michael J, Lehnart, Stephan E, Schwappach, Blanche
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Sprache:eng
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Zusammenfassung:The cardiac membrane protein phospholamban (PLN) is targeted by protein kinase A (PKA) at Ser and by Ca /calmodulin-dependent protein kinase II (CaMKII) at Thr β-Adrenergic stimulation and PKA-dependent phosphorylation of Ser acutely stimulate the sarcoplasmic reticulum calcium pump (SERCA) by relieving its inhibition by PLN. CaMKII-dependent phosphorylation may lead to longer-lasting SERCA stimulation and may sustain maladaptive Ca handling. Here, we demonstrated that phosphorylation at either Ser or Thr converted PLN into a target for the phosphoadaptor protein 14-3-3 with different affinities. 14-3-3 proteins were localized within nanometers of PLN and endogenous 14-3-3 coimmunoprecipitated with pentameric PLN from cardiac membranes. Molecular dynamics simulations predicted different molecular contacts for peptides phosphorylated at Ser or Thr with the binding groove of 14-3-3, resulting in varied binding affinities. 14-3-3 binding protected either PLN phosphosite from dephosphorylation. β-Adrenergic stimulation of isolated adult cardiomyocytes resulted in the membrane recruitment of endogenous 14-3-3. The exogenous addition of 14-3-3 to β-adrenergic-stimulated cardiomyocytes led to prolonged SERCA activation, presumably because 14-3-3 protected PLN pentamers from dephosphorylation. Phosphorylation of Ser was disrupted by the cardiomyopathy-associated ∆Arg mutation, implying that phosphorylation of Thr by CaMKII may become crucial for 14-3-3 recruitment to ∆Arg PLN. Consistent with PLN acting as a dynamic hub in the control of Ca handling, our results identify 14-3-3 binding to PLN as a contractility-augmenting mechanism.
ISSN:1945-0877
1937-9145
DOI:10.1126/scisignal.aaz1436