Area of research
Molecular Biology · Cardiology and Cardiovascular Medicine
Research interest
Research focused on Calmodulin and Biophysics, with related work in Long QT syndrome, Neuroscience, Cell biology. Notable publications include 'Calmodulin regulation (calmodulation) of voltage-gated calcium channels', 'Multiscale Optical Ca2+ Imaging of Tonal Organization in Mouse Auditory Cortex', and 'Calmodulin mutations associated with long QT syndrome prevent inactivation of cardiac L-type Ca2+ currents and promote proarrhythmic behavior in ventricular myocytes'.
A Precision Medicine Approach to the Rescue of Function on Malignant Calmodulinopathic Long-QT Syndrome
Calmodulin regulation (calmodulation) of voltage-gated calcium channels
Multiscale Optical Ca2+ Imaging of Tonal Organization in Mouse Auditory Cortex
Calmodulin mutations associated with long QT syndrome prevent inactivation of cardiac L-type Ca2+ currents and promote proarrhythmic behavior in ventricular myocytes
Calcineurin determines toxic versus beneficial responses to α-synuclein
Dynamic switching of calmodulin interactions underlies Ca2+ regulation of CaV1.3 channels
Ca <sup>2+</sup> channel nanodomains boost local Ca <sup>2+</sup> amplitude
Calcium-channel number critically influences synaptic strength and plasticity at the active zone
RNA Editing of the IQ Domain in Cav1.3 Channels Modulates Their Ca2+-Dependent Inactivation
Regulation of N-type Voltage-Gated Calcium Channels and Presynaptic Function by Cyclin-Dependent Kinase 5