Abstract

The maintenance of the Mg(2+) balance of the body is essential for neuromuscular excitability, protein synthesis, nucleic acid stability, and numerous enzymatic systems. The Transient Receptor Potential Melastatin 6 (TRPM6) functions as the gatekeeper of transepithelial Mg(2+) transport. However, the molecular regulation of TRPM6 channel activity remains elusive. Here, we identified the repressor of estrogen receptor activity (REA) as an interacting protein of TRPM6 that binds to the 6(th), 7(th), and 8(th) beta-sheets in its alpha-kinase domain. Importantly, REA and TRPM6 are coexpressed in renal Mg(2+)-transporting distal convoluted tubules (DCT). We demonstrated that REA significantly inhibits TRPM6, but not its closest homologue TRPM7, channel activity. This inhibition occurs in a phosphorylation-dependent manner, since REA has no effect on the TRPM6 phosphotransferase-deficient mutant (K1804R), while it still binds to this mutant. Moreover, activation of protein kinase C by phorbol 12-myristate 13-acetate-PMA potentiated the inhibitory effect of REA on TRPM6 channel activity. Finally, we showed that the interaction between REA and TRPM6 is a dynamic process, as short-term 17beta-estradiol treatment disassociates the binding between these proteins. In agreement with this, 17beta-estradiol treatment significantly stimulates the TRPM6-mediated current in HEK293 cells. These results suggest a rapid pathway for the effect of estrogen on Mg(2+) homeostasis in addition to its transcriptional effect. Together, these data indicate that REA operates as a negative feedback modulator of TRPM6 in the regulation of active Mg(2+) (re)absorption and provides new insight into the molecular mechanism of renal transepithelial Mg(2+) transport.

Highlights

  • Has been estimated around 0.5–1.0 mM [5]

  • The Transient Receptor Potential Melastatin 6 (TRPM6) localizes along the apical membranes of distal convoluted tubule (DCT) and intestinal cells where it plays a crucial role in active Mg2ϩabsorption

  • Mutations in TRPM6 lead to hypomagnesemia with secondary hypocalcemia (HSH) indicating that this channel is important for the maintenance of the Mg2ϩ balance (6 – 8)

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Summary

Introduction

Has been estimated around 0.5–1.0 mM [5]. Regulation of the Mg2ϩ balance principally resides within the kidney where Mg2ϩ excretion tightly matches the intestinal absorption of Mg2ϩ [5]. The aim of the present study was to investigate the regulation of the ␣-kinase domain on TRPM6 channel activity by identification of proteins interacting with the ␣-kinase domain. TRPM6 expression was analyzed by immunoblot pull-down with the ␣-kinase domain of TRPM6 in mouse kidfor the precipitates (plasma membrane fraction) and for the ney lysate followed by Fourier Transform Mass Spectrometry total cell lysates using the anti-HA antibody (Sigma).

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