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David T. Yue

McMaster University · CA
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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'.
h-index
citations
1,453
works
10
NIH funding
primary concept
email

Recent publications

A Precision Medicine Approach to the Rescue of Function on Malignant Calmodulinopathic Long-QT Syndrome
Circulation Research 2016cited by 163position: lastdoi
Calmodulin regulation (calmodulation) of voltage-gated calcium channels
The Journal of General Physiology 2014cited by 208position: lastdoi
Multiscale Optical Ca2+ Imaging of Tonal Organization in Mouse Auditory Cortex
Neuron 2014cited by 206position: lastdoi
Calmodulin mutations associated with long QT syndrome prevent inactivation of cardiac L-type Ca2+ currents and promote proarrhythmic behavior in ventricular myocytes
Journal of Molecular and Cellular Cardiology 2014cited by 169position: lastdoi
Calcineurin determines toxic versus beneficial responses to α-synuclein
Proceedings of the National Academy of Sciences 2014cited by 135position: middledoi
Dynamic switching of calmodulin interactions underlies Ca2+ regulation of CaV1.3 channels
Nature Communications 2013cited by 117position: lastdoi
Ca <sup>2+</sup> channel nanodomains boost local Ca <sup>2+</sup> amplitude
Proceedings of the National Academy of Sciences 2013cited by 79position: lastdoi
Calcium-channel number critically influences synaptic strength and plasticity at the active zone
Nature Neuroscience 2012cited by 156position: middledoi
RNA Editing of the IQ Domain in Cav1.3 Channels Modulates Their Ca2+-Dependent Inactivation
Neuron 2012cited by 136position: middledoi
Regulation of N-type Voltage-Gated Calcium Channels and Presynaptic Function by Cyclin-Dependent Kinase 5
Neuron 2012cited by 84position: middledoi

Grants

No grants ingested yet.

Frequent collaborators

Manu Ben‐Johny · Columbia University3 papers (2013–2014)Ivy E. Dick · Johns Hopkins Medicine2 papers (2014–2016)Worawan B. Limpitikul · Johns Hopkins Medicine2 papers (2014–2016)Deborah DiSilvestre · Johns Hopkins Medicine1 papers (2016–2016)Jiansong Sheng · Zhejiang University1 papers (2012–2012)Hua Huang · National University of Singapore1 papers (2012–2012)Eugene V. Mosharov · Columbia University Irving Medical Center1 papers (2014–2014) · 1 papers (2014–2014) · 1 papers (2014–2014)Wonchul Shin · National Institute of Neurological Disorders and Stroke1 papers (2012–2012) · 1 papers (2012–2012)Gordon F. Tomaselli · Albert Einstein College of Medicine1 papers (2016–2016)Jinsoo Seo · Yonsei University1 papers (2012–2012)Jen Q. Pan · Massachusetts Institute of Technology1 papers (2012–2012)Alfred L. George · University of California, Davis1 papers (2014–2014)Valeriya Baru · Q-State Biosciences (United States)1 papers (2014–2014)Guy A. Caldwell · University of Alabama1 papers (2014–2014)Thomas Kuner · Heidelberg Institute for Theoretical Studies1 papers (2012–2012)Georg Köhr · University Hospital Heidelberg1 papers (2012–2012)Pavan K. Auluck · Allen Institute for Brain Science1 papers (2014–2014)
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