Key result
Long QT mutations in KCNQ1 helix C and KCNE1 distal C-terminus disrupted the internal KCNQ1-KCNE1 intersubunit interaction, impairing PIP2 modulation and yotiao-mediated PKA phosphorylation.
LQT mutations disrupt I(KS) channel regulation through distinct mechanisms at the KCNQ1-KCNE1 interface, involving either impaired PIP2 modulation or disrupted yotiao-mediated PKA phosphorylation.
KCNQ1 and KCNE1 co-assembly generates the I(KS) K(+) current, which is crucial to the cardiac action potential repolarization. Mutations in their corresponding genes cause long QT syndrome (LQT) and atrial fibrillation. The A-kinase anchor protein, yotiao (also known as AKAP9), brings the I(KS) channel complex together with signaling proteins to achieve regulation upon β1-adrenergic stimulation. Recently, we have shown that KCNQ1 helix C interacts with the KCNE1 distal C-terminus. We postulated that this interface is crucial for I(KS) channel modulation. Here, we examined the yet unknown molecular mechanisms of LQT mutations located at this intracellular intersubunit interface. All LQT mutations disrupted the internal KCNQ1-KCNE1 intersubunit interaction. LQT mutants in KCNQ1 helix C led to a decreased current density and a depolarizing shift of channel activation, mainly arising from impaired phosphatidylinositol-4,5-bisphosphate (PIP2) modulation. In the KCNE1 distal C-terminus, the LQT mutation P127T suppressed yotiao-dependent cAMP-mediated upregulation of the I(KS) current, which was caused by reduced KCNQ1 phosphorylation at S27. Thus, KCNQ1 helix C is important for channel modulation by PIP2, whereas the KCNE1 distal C-terminus appears essential for the regulation of IKS by yotiao-mediated PKA phosphorylation.
No takes yet. Share an insight, caveat, or question.
Dvir et al. (2014) studied Long QT syndrome. Long QT mutations in KCNQ1 helix C and KCNE1 distal C-terminus vs. Wild-type was evaluated on Disruption of internal KCNQ1-KCNE1 intersubunit interaction and channel modulation. Long QT mutations in KCNQ1 helix C and KCNE1 distal C-terminus disrupted the internal KCNQ1-KCNE1 intersubunit interaction, impairing PIP2 modulation and yotiao-mediated PKA phosphorylation.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: