Abstract

The hERG (human ether-a-go-go-related gene) encodes the α subunit of the rapidly activating delayed rectifier potassium channel (IKr). Dysfunction of hERG channels due to mutations or certain medications causes long QT syndrome, which can lead to fatal ventricular arrhythmias or sudden death. Although the abundance of hERG in the plasma membrane is a key determinant of hERG functionality, the mechanisms underlying its regulation are not well understood. In the present study, we demonstrated that overexpression of the stress-responsive serum- and glucocorticoid-inducible kinase (SGK) isoforms SGK1 and SGK3 increased the current and expression level of the membrane-localized mature proteins of hERG channels stably expressed in HEK 293 (hERG-HEK) cells. Furthermore, the synthetic glucocorticoid, dexamethasone, increased the current and abundance of mature ERG proteins in both hERG-HEK cells and neonatal cardiac myocytes through the enhancement of SGK1 but not SGK3 expression. We have previously shown that mature hERG channels are degraded by ubiquitin ligase Nedd4-2 via enhanced channel ubiquitination. Here, we showed that SGK1 or SGK3 overexpression increased Nedd4-2 phosphorylation, which is known to inhibit Nedd4-2 activity. Nonetheless, disruption of the Nedd4-2 binding site in hERG channels did not eliminate the SGK-induced increase in hERG expression. Additional disruption of Rab11 proteins led to a complete elimination of SGK-mediated increase in hERG expression. These results show that SGK enhances the expression level of mature hERG channels by inhibiting Nedd4-2 as well as by promoting Rab11-mediated hERG recycling.

Highlights

  • The cardiac hERG (IKr) potassium channel is important for cardiac repolarization

  • We demonstrated that overexpression of the stress-responsive serum- and glucocorticoid-inducible kinase (SGK) isoforms SGK1 and SGK3 increased the current and expression level of the membrane-localized mature proteins of hERG channels stably expressed in HEK 293 cells

  • The present study demonstrates that SGK1 and SGK3 increase the expression level and the current of hERG channels expressed in HEK cells and native IKr in cardiomyocytes

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Summary

Background

The cardiac hERG (IKr) potassium channel is important for cardiac repolarization. Results: Activation of SGK1 and SGK3 increases hERG expression by inhibiting Nedd activity and promoting Rab11mediated hERG recycling. We demonstrated that overexpression of the stress-responsive serum- and glucocorticoid-inducible kinase (SGK) isoforms SGK1 and SGK3 increased the current and expression level of the membrane-localized mature proteins of hERG channels stably expressed in HEK 293 (hERG-HEK) cells. Additional disruption of Rab proteins led to a complete elimination of SGK-mediated increase in hERG expression These results show that SGK enhances the expression level of mature hERG channels by inhibiting Nedd as well as by promoting Rab11-mediated hERG recycling. We have demonstrated that the muscle-specific caveolin isoform caveolin 3 recruits and enhances Nedd interaction with hERG channels at the cell surface, leading to a decreased expression of hERG channels at the plasma membrane [10]. SGK increases the expression of the slowly activating delayed potassium current (IKs) through a Rab11-dependent pathway distinct from the Nedd4-2-mediated interaction [16]. SGK achieves its effects through two independent mechanisms: inhibition of Nedd activity through phosphorylation and activation of a Rab11-mediated pathway

EXPERIMENTAL PROCEDURES
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DISCUSSION
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