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Hypertension (Dallas, Tex. : 1979)|June 29, 2022
Age and Blood Pressure Contribute to Aortic Cell and Tissue Stiffness Through Distinct MechanismsBen Ma, Elaina Melton, Robert Wiener, et al.American Journal of Physiology. Heart and Circulatory Physiology|April 30, 2013
Adenylyl cyclase type 5 in cardiac disease, metabolism, and agingStephen F Vatner, Misun Park, Lin Yan, et al.Age (Dordrecht, Netherlands)|January 22, 2013
Calorie restriction can reverse, as well as prevent, aging cardiomyopathyLin Yan, Shumin Gao, David Ho, et al.Aging Cell|October 2, 2015
Type 5 adenylyl cyclase disruption leads to enhanced exercise performanceDorothy E Vatner, Lin Yan, Lo Lai, et al.Circulation|March 29, 2013
Type 5 adenylyl cyclase increases oxidative stress by transcriptional regulation of manganese superoxide dismutase via the SIRT1/FoxO3a pathwayLo Lai, Lin Yan, Shumin Gao, et al.Aging Cell|October 2, 2012
Common mechanisms for calorie restriction and adenylyl cyclase type 5 knockout models of longevityLin Yan, Ji Yeon Park, Jean-Guillaume Dillinger, et al.American Journal of Physiology. Heart and Circulatory Physiology|April 17, 2012
Prevention of heart failure in mice by an antiviral agent that inhibits type 5 cardiac adenylyl cyclaseKosaku Iwatsubo, Claudio Bravo, Masami Uechi, et al.The Journal of Clinical Investigation|August 5, 2020
MICAL1 constrains cardiac stress responses and protects against disease by oxidizing CaMKIIKlitos Konstantinidis, Vassilios J Bezzerides, Lo Lai, et al.Pageof 2