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Application of kinomic array analysis to screen for altered kinases in atrial fibrillation remodeling
Roelien A M Meijering1, Marit Wiersma2, Deli Zhang2
1Department of Clinical Pharmacy and Pharmacology, Groningen University Institute for Drug Exploration (GUIDE), University of Groningen, University Medical Center Groningen, Groningen, The Netherlands.
Background:
Dysregulation of protein kinase-mediated signaling is an early event in many diseases, including the most common clinical cardiac arrhythmia, atrial fibrillation (AF). Kinomic profiling represents a promising technique to identify candidate kinases.
Objective:
In this study we used kinomic profiling to identify kinases altered in AF remodeling using atrial tissue from a canine model of AF (atrial tachypacing).
Methods:
Left atrial tissue obtained in a previous canine study was used for kinomic array (containing 1024 kinase pseudosubstrates) analysis. Three groups of dogs were included: nonpaced controls and atrial tachypaced dogs, which were contrasted with geranylgeranylacetone-treated dogs with AF, which are protected from AF promotion, to enhance specificity of detection of putative kinases.
Results:
While tachypacing changed activity of 50 kinases, 40 of these were prevented by geranylgeranylacetone and involved in differentiation and proliferation (SRC), contraction, metabolism, immunity, development, cell cycle (CDK4), and survival (Akt). Inhibitors of Akt (MK2206) and CDK4 (PD0332991) and overexpression of a dominant-negative CDK4 phosphorylation mutant protected against tachypacing-induced contractile dysfunction in HL-1 cardiomyocytes. Moreover, patients with AF show down- and upregulation of SRC and Akt phosphorylation, respectively, similar to findings of the kinome array.
Conclusion:
Contrasting kinomic array analyses of controls and treated subjects offer a versatile tool to identify kinases altered in atrial remodeling owing to tachypacing, which include Akt, CDK4, and SRC. Ultimately, pharmacological targeting of altered kinases may offer novel therapeutic possibilities to treat clinical AF.
Insights
Kinomic profiling identified key kinases, including Akt, CDK4, and SRC, altered in atrial fibrillation (AF) remodeling. Targeting these kinases may offer new therapeutic strategies for AF treatment.
Area of Science:
- Cardiovascular Research
- Molecular Biology
- Biochemistry
Background:
- Protein kinase dysregulation is an early event in diseases like atrial fibrillation (AF).
- Kinomic profiling is a valuable technique for identifying kinases involved in disease pathogenesis.
Purpose of the Study:
- To identify kinases altered in atrial remodeling associated with AF using kinomic profiling.
- To investigate the role of specific kinases in AF pathogenesis and contractile dysfunction.
Main Methods:
- Kinomic array analysis of atrial tissue from a canine model of AF (atrial tachypacing).
- Comparison of kinase activity between control, tachypaced, and geranylgeranylacetone-treated dogs.
- Validation using pharmacological inhibitors and cardiomyocyte models.
Main Results:
- Tachypacing altered the activity of 50 kinases; 40 changes were prevented by geranylgeranylacetone.
- Affected kinases are involved in differentiation, proliferation (SRC), contraction, metabolism, immunity, development, cell cycle (CDK4), and survival (Akt).
- Human AF patients showed altered SRC and Akt phosphorylation, mirroring canine model findings.
Conclusions:
- Kinomic profiling effectively identifies kinases implicated in atrial remodeling and AF.
- Akt, CDK4, and SRC are key kinases altered in AF.
- Targeting these kinases presents potential therapeutic avenues for clinical AF.
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