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August 1, 1997Biochemistry122 citations

Differential Effects of Subunit Interactions on Protein Kinase A- and C-Mediated Phosphorylation of L-Type Calcium Channels

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TPTipu S. PuriBGBrian L. GerhardsteinXZXiaolan Zhao

Key Result

Co-expression of the alpha1S subunit with the beta2a subunit restored its ability to serve as a substrate for PKC, whereas PKA phosphorylation occurred independently of subunit interactions.

Key Points

  • To examine the effects of subunit interactions on the phosphorylation of L-type calcium channels by PKA and PKC.
  • Expressed alpha1S, alpha1C, beta2a, and alpha2/delta subunits in Sf9 cells via recombinant baculoviruses.
  • Used in vitro assays to assess phosphorylation by PKA and PKC.
  • Investigated the effects of subunit co-expression on phosphorylation efficiency.
  • Alpha1S, alpha1C, and beta2a subunits phosphorylated by PKA at similar levels regardless of subunit interactions.
  • Alpha1C and beta2a phosphorylated by PKC, while alpha1S was a poor substrate individually.
  • Co-expressing alpha1S with beta2a restored phosphorylation capability by PKC.

Structured PICO

P
Population
Spodoptera frugiperda insect cells (Sf9 cells) expressing L-type calcium channel subunits (alpha1S, alpha1C, beta2a, alpha2/delta)
I
Intervention
In vitro phosphorylation by purified protein kinase A (PKA) and protein kinase C (PKC)
C
Comparator
Subunits expressed individually versus co-expressed in combination
O
Outcome
Stoichiometric phosphorylation of membrane-associated subunits by PKA and PKCsurrogate

Subunit interactions are required for PKC-mediated, but not PKA-mediated, phosphorylation of the alpha1S subunit of L-type calcium channels.

Abstract

We have expressed the pore-forming alpha1S (skeletal muscle isoform) and alpha1C (cardiac/brain isoform) subunits, as well as the accessory beta2a (cardiac/brain isoform) and alpha2/delta subunits of the L-type, dihydropyridine-sensitive calcium (Ca) channels in Spodoptera frugiperda insect cells (Sf9 cells) by infection with recombinant baculoviruses in order to facilitate biochemical studies of these rare, heteromultimeric membrane proteins. Since the L-type channels are believed to be regulated by protein phosphorylation, this expression system allowed us to investigate which subunits could act as substrates for protein kinase A and C (PKA and PKC) and to determine the potential role of subunit interactions in phosphorylation of the channel proteins. Using purified protein kinases in vitro, the membrane-associated alpha1S, alpha1C, and beta2a subunits were demonstrated to be phosphorylated stoichiometrically by PKA. The extent of phosphorylation of these subunits by PKA was similar whether the subunits were expressed alone or in combination. In addition, the alpha1C and beta2a subunits were phosphorylated stoichiometrically by PKC when expressed individually. In contrast, the alpha1S subunit, when expressed alone, was a poor substrate for PKC, despite the fact that this subunit has been shown to be an excellent substrate for PKC in native skeletal muscle membranes. Interestingly, co-expression of alpha1S with the beta2a subunit restored the ability of the alpha1S subunit to serve as a substrate for PKC. These results strongly suggests that subunit interactions play an important and potentially differential role in channel regulation by PKC, whereas phosphorylation of the same subunit by PKA occurs independent of subunit interaction. Furthermore, our results provide biochemical evidence that, when co-expressed, the alpha1C, alpha1S, and beta2a subunits of L-type Ca2+ channels are excellent substrates for PKA and PKC and support the hypothesis that phosphorylation of each of these subunits may participate in channel regulation by these kinases.

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Cite This Study

Puri et al. (1997) studied this question. Co-expression of alpha1S with beta2a subunit vs. Expression of alpha1S subunit alone was evaluated on Phosphorylation by PKA and PKC. Co-expression of the alpha1S subunit with the beta2a subunit restored its ability to serve as a substrate for PKC, whereas PKA phosphorylation occurred independently of subunit interactions.

synapsesocial.com/papers/6a1fd55d663eb9633f117cfehttps://doi.org/10.1021/bi970500d
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