Olha Koval

Affiliations: 
2005-2006 Physiology University of Texas Health Science Center - San Antonio 
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"Olha Koval"
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Hund TJ, Snyder JS, Wu X, et al. (2014) β(IV)-Spectrin regulates TREK-1 membrane targeting in the heart. Cardiovascular Research. 102: 166-75
Kline CF, Wright PJ, Koval OM, et al. (2013) βIV-Spectrin and CaMKII facilitate Kir6.2 regulation in pancreatic beta cells. Proceedings of the National Academy of Sciences of the United States of America. 110: 17576-81
Prasad AM, Nuno DW, Koval OM, et al. (2013) Differential control of calcium homeostasis and vascular reactivity by Ca2+/calmodulin-dependent kinase II. Hypertension. 62: 434-41
Koval OM, Snyder JS, Wolf RM, et al. (2012) Ca2+/calmodulin-dependent protein kinase II-based regulation of voltage-gated Na+ channel in cardiac disease. Circulation. 126: 2084-94
Gao Z, Singh MV, Hall DD, et al. (2011) Catecholamine-independent heart rate increases require Ca2+/calmodulin-dependent protein kinase II. Circulation. Arrhythmia and Electrophysiology. 4: 379-87
Hund TJ, Koval OM, Li J, et al. (2010) A β(IV)-spectrin/CaMKII signaling complex is essential for membrane excitability in mice. The Journal of Clinical Investigation. 120: 3508-19
Kline CF, Kurata HT, Hund TJ, et al. (2009) Dual role of K ATP channel C-terminal motif in membrane targeting and metabolic regulation. Proceedings of the National Academy of Sciences of the United States of America. 106: 16669-74
Wu Y, Gao Z, Chen B, et al. (2009) Calmodulin kinase II is required for fight or flight sinoatrial node physiology. Proceedings of the National Academy of Sciences of the United States of America. 106: 5972-7
Thiel WH, Chen B, Hund TJ, et al. (2008) Proarrhythmic defects in Timothy syndrome require calmodulin kinase II. Circulation. 118: 2225-34
Li J, Marionneau C, Koval O, et al. (2007) Calmodulin kinase II inhibition enhances ischemic preconditioning by augmenting ATP-sensitive K+ current. Channels (Austin, Tex.). 1: 387-94
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