Abstract

Our previous work has established that the metabolic sensor AMP-activated protein kinase (AMPK) inhibits the epithelial Na+ channel (ENaC) by promoting its binding to neural precursor cell-expressed, developmentally down-regulated 4-2, E3 ubiquitin protein ligase (Nedd4-2). Here, using MS analysis and in vitro phosphorylation, we show that AMPK phosphorylates Nedd4-2 at the Ser-444 (Xenopus Nedd4-2) site critical for Nedd4-2 stability. We further demonstrate that the Pak-interacting exchange factor β1Pix is required for AMPK-mediated inhibition of ENaC-dependent currents in both CHO and murine kidney cortical collecting duct (CCD) cells. Short hairpin RNA-mediated knockdown of β1Pix expression in CCD cells attenuated the inhibitory effect of AMPK activators on ENaC currents. Moreover, overexpression of a β1Pix dimerization-deficient mutant unable to bind 14-3-3 proteins (Δ602-611) increased ENaC currents in CCD cells, whereas overexpression of WT β1Pix had the opposite effect. Using additional immunoblotting and co-immunoprecipitation experiments, we found that treatment with AMPK activators promoted the binding of β1Pix to 14-3-3 proteins in CCD cells. However, the association between Nedd4-2 and 14-3-3 proteins was not consistently affected by AMPK activation, β1Pix knockdown, or overexpression of WT β1Pix or the β1Pix-Δ602-611 mutant. Moreover, we found that β1Pix is important for phosphorylation of the aforementioned Nedd4-2 site critical for its stability. Overall, these findings elucidate novel molecular mechanisms by which AMPK regulates ENaC. Specifically, they indicate that AMPK promotes the assembly of β1Pix, 14-3-3 proteins, and Nedd4-2 into a complex that inhibits ENaC by enhancing Nedd4-2 binding to ENaC and its degradation.

Highlights

  • Our previous work has established that the metabolic sensor AMP-activated protein kinase (AMPK) inhibits the epithelial Na؉ channel (ENaC) by promoting its binding to neural precursor cell– expressed, developmentally down-regulated 4-2, E3 ubiquitin protein ligase (Nedd4-2)

  • We further demonstrate that the Pak-interacting exchange factor ␤1Pix is required for AMPK-mediated inhibition of ENaC-dependent currents in both Chinese hamster ovary (CHO) and murine kidney cortical collecting duct (CCD) cells

  • Through ENaC current recordings in Chinese hamster ovary (CHO) cells and in mouse polarized CCD cells, we demonstrate that ␤1Pix expression and function are required for ENaC inhibition by AMPK

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Summary

To whom correspondence should be addressed

Proteins, and Nedd into a complex that inhibits ENaC by enhancing Nedd binding to ENaC and its degradation. We and others have demonstrated that AMPK regulates a variety of ion transport proteins [16], including inhibition of ENaC by promoting Nedd interaction with ␤-ENaC and enhancing Nedd4-2– dependent ubiquitination, internalization, and degradation of the channel (26 –28). Our results suggest that functional ␤1Pix is critical for Nedd stability and AMPK may enhance Nedd4-2-dependent ENaC degradation by promoting the formation of a ␤1Pix–Nedd protein complex. These findings shed new light on the molecular mechanisms by which AMPK regulates ENaC

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