Downregulation of RyR and NCX in the neonatal rat ventricular myocyte modulates cytosolic
Vazquez-Hidalgo, E.; Zhang, X.; Torres Barba, D.; Paolini, P.; Katira, P.
Show abstract
Calcium (Ca2+) is necessary for cardiac muscle contraction. RyR, NCX, and SERCA are key regulatory protein channels for cytosolic Ca2+ in cardiac myocytes. Expression levels of these proteins are a function of development, with protein expression shifting toward the adult phenotype over time. We investigated how downregulation by siRNAs of RyR and NCX affected expression levels of complimentary proteins and the corresponding intracellular Ca2+ transients. We compared experimentally observed Ca2+ transients to those predicted by mathematical models. Experiments show RyR downregulation decreased SERCA and increased NCX protein levels. The associated Ca2+ transient had a decreased amplitude, increased time-to-peak, 50%, and 90% Ca2+ removal with respect to the control cell. NCX downregulation increased SERCA production without significant changes in RyR expression levels. The corresponding [Ca2+] transient had increased amplitude, no change in time-to-peak and 50% Ca2+ removal, and increased 90% Ca2+ removal with respect to the control cell. Computational models that accurately predict the observed experimental data suggest compensatory changes occurring in the expression levels as well as biochemical activity of the regulatory proteins.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Preventive training interferes with mRNA-encoding myosin 7 and collagen I expression during pulmonary arterial hypertension 93%
- Ventricular anatomical complexity and gender differences impact predictions from computational models 93%
- Predictors and outcomes of Cardiac Dyssynchrony among patients with heart failure attending Benjamin Mkapa Hospital in Dodoma, central Tanzania: A protocol of prospective-longitudinal study 92%
Similar papers in this journal
- Remodelling of potassium currents underlies arrhythmic action potential prolongation under beta-adrenergic stimulation in hypertrophic cardiomyopathy 95%
- The Sodium/Glucose Cotransporter 2 Inhibitor Empagliflozin Inhibits Long QT 3 Late Sodium Currents in a Mutation Specific Manner 95%
- Development and Characterization of the Mode-of-Action of Inhibitory and Agonist Peptides Targeting the Voltage-Gated Sodium Channel SCN1B/β1 Subunit 93%
Similar papers in this journal
- Modeling depolarization delay, sodium currents, and electrical potentials in cardiac transverse tubules 94%
- A distinct pool of Nav1.5 channels at the lateral membrane of murine ventricular cardiomyocytes 94%
- Sensitivity and uncertainty analysis of two human atrial cardiac cell models using Gaussian process emulators 93%
Similar papers in this journal
- Positive Rate Dependent Action Potential Prolongation By Modulating Potassium Ion Channels 94%
- Multichannel Modulation of Depolarizing and Repolarizing Ion Currents Increases the Positive Rate Dependence of Action Potential Prolongation 94%
- Characterisation of the mechanism by which a nonsense variant in RYR2 results in ventricular arrhythmia 93%
Similar papers in this journal
- β-adrenergic stimulation synchronizes a broad spectrum of action potential firing rates of cardiac pacemaker cells towards a higher population average 95%
- Structure-Function Relationship of the Ryanodine Receptor Cluster Network in Sinoatrial Node Cells 95%
- Reversible thiol oxidation increases mitochondrial electron transport complex enzyme activity but not respiration in cardiomyocytes from patients with end-stage heart failure 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.