Functional analysis of CASK transcript variants expressed in human brain.
basic_science · Level V
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- Record sourced from PubMed, PMID 34133460.
- Also identified by DOI 10.1371/journal.pone.0253223 and PMC identifier 8208546.
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Abstract
The calcium-/calmodulin dependent serine protein kinase (CASK) belongs to the membrane-associated guanylate kinases (MAGUK) family of proteins. It fulfils several different cellular functions, ranging from acting as a scaffold protein to transcription control, as well as regulation of receptor sorting. CASK functions depend on the interaction with a variety of partners, for example neurexin, liprin-α, Tbr1 and SAP97. So far, it is uncertain how these seemingly unrelated interactions and resulting functions of CASK are regulated. Here, we show that alternative splicing of CASK can guide the binding affinity of CASK isoforms to distinct interaction partners. We report seven different variants of CASK expressed in the fetal human brain. Four out of these variants are not present in the NCBI GenBank database as known human variants. Functional analyses showed that alternative splicing affected the affinities of CASK variants for several of the tested interaction partners. Thus, we observed a clear correlation of the presence of one splice insert with poor binding of CASK to SAP97, supported by molecular modelling. The alternative splicing and distinct properties of CASK variants in terms of protein-protein interaction should be taken into consideration for future studies.
Medical subject headings
- Alternative Splicing
- Brain
- Brain/embryology
- Brain/metabolism
- Discs Large Homolog 1 Protein
- Discs Large Homolog 1 Protein/metabolism
- Female
- Guanylate Kinases
- Guanylate Kinases/chemistry
- Guanylate Kinases/metabolism
- Guanylate Kinases/physiology
- Humans
- Models, Molecular
- Protein Isoforms
- Protein Isoforms/chemistry
- Protein Isoforms/metabolism
- Protein Isoforms/physiology