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O-glycosylation of the cardiac I(Ks) complex.
- Source :
-
The Journal of physiology [J Physiol] 2011 Aug 01; Vol. 589 (Pt 15), pp. 3721-30. Date of Electronic Publication: 2011 Jun 13. - Publication Year :
- 2011
-
Abstract
- Post-translational modifications of the KCNQ1–KCNE1 (Kv7) K+ channel complex are vital for regulation of the cardiac IKs current and action potential duration. Here, we show the KCNE1 regulatory subunit is O-glycosylated with mucin-type glycans in vivo. As O-linked glycosylation sites are not recognizable by sequence gazing, we designed a novel set of glycosylation mutants and KCNE chimeras and analysed their glycan content using deglycosylation enzymes. Our results show that KCNE1 is exclusively O-glycosylated at Thr-7, which is also required for N-glycosylation at Asn-5. For wild type KCNE1, the overlapping N- and O-glycosylation sites are innocuous for subunit biogenesis; however, mutation of Thr-7 to a non-hydroxylated residue yielded mostly unglycosylated protein and a small fraction of mono-N-glycosylated protein. The compounded hypoglycosylation was equally deleterious for KCNQ1–KCNE1 cell surface expression, demonstrating that KCNE1 O-glycosylation is a post-translational modification that is integral for the proper biogenesis and anterograde trafficking of the cardiac IKs complex. The enzymatic assays and panel of glycosylation mutants used here will be valuable for identifying the different KCNE1 glycoforms in native cells and determining the roles N- and O-glycosylation play in KCNQ1–KCNE1 function and localization in cardiomyocytes,
- Subjects :
- Action Potentials physiology
Amino Acid Sequence
Animals
Arrhythmias, Cardiac metabolism
Asparagine metabolism
CHO Cells
Cells, Cultured
Cricetinae
Cricetulus
Glycosylation
Humans
KCNQ1 Potassium Channel genetics
Mice
Mice, Transgenic metabolism
Molecular Sequence Data
Mutation
Myocytes, Cardiac metabolism
Polysaccharides metabolism
Potassium Channels, Voltage-Gated genetics
Potassium Channels, Voltage-Gated metabolism
Protein Isoforms metabolism
Protein Transport physiology
Recombinant Fusion Proteins genetics
Threonine genetics
Threonine metabolism
KCNQ1 Potassium Channel metabolism
Myocardium metabolism
Protein Processing, Post-Translational
Recombinant Fusion Proteins metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1469-7793
- Volume :
- 589
- Issue :
- Pt 15
- Database :
- MEDLINE
- Journal :
- The Journal of physiology
- Publication Type :
- Academic Journal
- Accession number :
- 21669976
- Full Text :
- https://doi.org/10.1113/jphysiol.2011.211284