Palmitoylation of the β4-subunit regulates surface expression of large conductance calcium-activated potassium channel splice variants

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Abstract

Regulatory β-subunits of large conductance calcium- and voltage-activated potassium (BK) channels play an important role in generating functional diversity and control of cell surface expression of the pore forming α-subunits. However, in contrast to α-subunits, the role of reversible post-translational modification of intracellular residues on β-subunit function is largely unknown. Here we demonstrate that the human β4-subunit is S-acylated (palmitoylated) on a juxtamembrane cysteine residue (Cys-193) in the intracellular C terminus of the regulatory β-subunit. β4-Subunit palmitoylation is important for cell surface expression and endoplasmic reticulum (ER) exit of the β4-subunit alone. Importantly, palmitoylated β4-subunits promote the ER exit and surface expression of the pore-forming α-subunit, whereas β4-subunits that cannot be palmitoylated do not increase ER exit or surface expression of α-subunits. Strikingly, however, this palmitoylationand β4-dependent enhancement of α-subunit surface expression was only observed in α-subunits that contain a putative trafficking motif ( . . . REVEDEC) at the very C terminus of the α-subunit. Engineering this trafficking motif to other C-terminal α-subunit splice variants results in α-subunits with reduced surface expression that can be rescued by palmitoylated, but not depalmitoylated, β4-subunits. Our data reveal a novel mechanism by which palmitoylated β4-subunit controls surface expression of BK channels through masking of a trafficking motif in the C terminus of the α-subunit. As palmitoylation is dynamic, this mechanism would allow precise control of specific splice variants to the cell surface. Ourdata providenewinsights intohowcomplex interplay between the repertoire of post-transcriptional and post-translational mechanisms controls cell surface expression of BK channels. © 2013 by The American Society for Biochemistry and Molecular Biology, Inc.

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Chen, L., Bi, D., Tian, L., McClafferty, H., Steeb, F., Ruth, P., … Shipston, M. J. (2013). Palmitoylation of the β4-subunit regulates surface expression of large conductance calcium-activated potassium channel splice variants. Journal of Biological Chemistry, 288(18), 13136–13144. https://doi.org/10.1074/jbc.M113.461830

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