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Updated: Jul 26, 2026

Metabolic Labeling of Leucine Rich Repeat Kinases 1 and 2 with Radioactive Phosphate
Published on: September 18, 2013
Phospholemman is a substrate for myotonic dystrophy protein kinase
J P Mounsey1, J E John, S M Helmke
1Department of Internal Medicine (Cardiovascular Division), University of Virginia, Charlottesville, Virginia 22908, USA. pmounsey@virginia.edu
Abstract:
The genetic abnormality in myotonic muscular dystrophy, multiple CTG repeats lie upstream of a gene that encodes a novel protein kinase, myotonic dystrophy protein kinase (DMPK). Phospholemman (PLM), a major membrane substrate for phosphorylation by protein kinases A and C, induces Cl currents (I(Cl(PLM))) when expressed in Xenopus oocytes. To test the idea that PLM is a substrate for DMPK, we measured in vitro phosphorylation of purified PLM by DMPK. To assess the functional effects of PLM phosphorylation we compared I(Cl(PLM)) in Xenopus oocytes expressing PLM alone to currents in oocytes co-expressing DMPK, and examined the effect of DMPK on oocyte membrane PLM expression. We found that PLM is indeed a good substrate for DMPK in vitro. Co-expression of DMPK with PLM in oocytes resulted in a reduction in I(Cl(PLM)). This was most likely a specific effect of phosphorylation of PLM by DMPK, as the effect was not present in oocytes expressing a phos(-) PLM mutant in which all potential phosphorylation had been disabled by Ser --> Ala substitution. The biophysical characteristics of I(Cl(PLM)) were not changed by DMPK or by the phos(-) mutation. Co-expression of DMPK reduced the expression of PLM in oocyte membranes, suggesting a possible mechanism for the observed reduction in I(Cl(PLM)) amplitude. These data show that PLM is a substrate for phosphorylation by DMPK and provide functional evidence for modulation of PLM function by phosphorylation.
Insights
Myotonic dystrophy protein kinase (DMPK) phosphorylates phospholemman (PLM), reducing chloride currents. DMPK phosphorylation of PLM impacts its membrane expression and function, offering insights into myotonic dystrophy.
Area of Science:
- Molecular Biology
- Cellular Physiology
- Biochemistry
Background:
- Myotonic muscular dystrophy is linked to genetic abnormalities involving the myotonic dystrophy protein kinase (DMPK) gene.
- Phospholemman (PLM) is a known substrate for protein kinases A and C, modulating chloride currents (I(Cl(PLM))) in Xenopus oocytes.
Purpose of the Study:
- To investigate if PLM is a substrate for DMPK.
- To determine the functional consequences of PLM phosphorylation by DMPK on chloride currents and PLM expression.
Main Methods:
- In vitro phosphorylation assays using purified PLM and DMPK.
- Functional studies in Xenopus oocytes co-expressing PLM and DMPK.
- Assessment of PLM membrane expression in oocytes.
Main Results:
- PLM was confirmed as a substrate for DMPK in vitro.
- Co-expression of DMPK with PLM reduced I(Cl(PLM)) in oocytes, an effect dependent on PLM phosphorylation sites.
- DMPK co-expression decreased PLM abundance in oocyte membranes.
Conclusions:
- PLM is a direct substrate for DMPK-mediated phosphorylation.
- DMPK modulates PLM function, likely by affecting its membrane expression, providing functional evidence for DMPK's role in regulating PLM activity.
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