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Journal of Bioenergetics and Biomembranes|May 13, 2006
Studies of Ca2+ ATPase (SERCA) inhibitionGiuseppe Inesi, Suming Hua, Cheng Xu, et al.In Silico Biology|August 11, 2007
In Silico analysis of the lateral organ junction (LOJ) gene and promoter of Arabidopsis thalianaDipnarayan Saha, Anand M Prasad, Thankeswaran P Sujatha, et al.Vascular Pharmacology|September 24, 2016
Role of CaMKII in Ang-II-dependent small artery remodelingAnand M Prasad, Pimonrat Ketsawatsomkron, Daniel W Nuno, et al.Vascular Pharmacology|January 15, 2014
Oxidative activation of the Ca(2+)/calmodulin-dependent protein kinase II (CaMKII) regulates vascular smooth muscle migration and apoptosisLinda J Zhu, Paula J Klutho, Jason A Scott, et al.American Journal of Respiratory Cell and Molecular Biology|July 3, 2014
Mitochondrial-targeted antioxidant therapy decreases transforming growth factor-β-mediated collagen production in a murine asthma modelOmar A Jaffer, A Brent Carter, Philip N Sanders, et al.Hypertension (Dallas, Tex. : 1979)|June 12, 2013
Differential control of calcium homeostasis and vascular reactivity by Ca2+/calmodulin-dependent kinase IIAnand M Prasad, Daniel W Nuno, Olha M Koval, et al.Journal of the American Heart Association|June 17, 2015
Calcium/calmodulin-dependent kinase II inhibition in smooth muscle reduces angiotensin II-induced hypertension by controlling aortic remodeling and baroreceptor functionAnand M Prasad, Donald A Morgan, Daniel W Nuno, et al.Plos One|August 17, 2013
The multifunctional Ca²⁺/calmodulin-dependent kinase IIδ (CaMKIIδ) regulates arteriogenesis in a mouse model of flow-mediated remodelingJason A Scott, Paula J Klutho, Ramzi El Accaoui, et al.Science Translational Medicine|July 26, 2013
CaMKII is essential for the proasthmatic effects of oxidationPhilip N Sanders, Olha M Koval, Omar A Jaffer, et al.Pageof 1