Key result
Reduced expression of PCP4 in mice is associated with CaMKII activation, abnormal electrophysiology, dysregulated intracellular calcium handling, and proarrhythmic behavior.
Why the study?
Does PCP4 regulate cardiac excitability and rhythmicity in Purkinje cells?
Does PCP4 regulate cardiac excitability and rhythmicity in Purkinje cells?
PCP4 regulates cardiac excitability through Purkinje cell-autonomous and central mechanisms, identifying it as a potential arrhythmia-susceptibility candidate.
Potential Purkinje-specific target in ventricular arrhythmias; leaves open mechanistic and therapeutic roles of Pcp4 pending validation.
Cardiac Purkinje cells are important triggers of ventricular arrhythmias associated with heritable and acquired syndromes; however, the mechanisms responsible for this proarrhythmic behavior are incompletely understood. Here, through transcriptional profiling of genetically labeled cardiomyocytes, we identified expression of Purkinje cell protein-4 (Pcp4), a putative regulator of calmodulin and Ca2+/calmodulin-dependent kinase II (CaMKII) signaling, exclusively within the His-Purkinje network. Using Pcp4-null mice and acquired cardiomyopathy models, we determined that reduced expression of PCP4 is associated with CaMKII activation, abnormal electrophysiology, dysregulated intracellular calcium handling, and proarrhythmic behavior in isolated Purkinje cells. Pcp4-null mice also displayed profound autonomic dysregulation and arrhythmic behavior in vivo. Together, these results demonstrate that PCP4 regulates cardiac excitability through both Purkinje cell-autonomous and central mechanisms and identify this modulator of CaMKII signaling as a potential arrhythmia-susceptibility candidate.
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Kim et al. (2014) studied Ventricular arrhythmias. Pcp4-null (loss of PCP4 expression) vs. Normal PCP4 expression was evaluated on CaMKII activation, abnormal electrophysiology, dysregulated intracellular calcium handling, and proarrhythmic behavior. Reduced expression of PCP4 in mice is associated with CaMKII activation, abnormal electrophysiology, dysregulated intracellular calcium handling, and proarrhythmic behavior.
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