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Circulation. Heart Failure|February 15, 2014
Muscle-specific RING finger 1 negatively regulates pathological cardiac hypertrophy through downregulation of calcineurin AYasuhiro Maejima, Soichiro Usui, Peiyong Zhai, et al.Autophagy|January 30, 2008
Molecular mechanisms and physiological significance of autophagy during myocardial ischemia and reperfusionYutaka Matsui, Shiori Kyoi, Hiromitsu Takagi, et al.Cardiovascular Research|October 18, 2020
Dietary carbohydrates restriction inhibits the development of cardiac hypertrophy and heart failureMichinari Nakamura, Natalija Odanovic, Yasuki Nakada, et al.Cell Reports|March 1, 2018
Aspirin Recapitulates Features of Caloric RestrictionFederico Pietrocola, Francesca Castoldi, Maria Markaki, et al.The Journal of Biological Chemistry|May 12, 2006
Histone H2A.z is essential for cardiac myocyte hypertrophy but opposed by silent information regulator 2alphaIeng-Yi Chen, Jacqueline Lypowy, Jayashree Pain, et al.Journal of Molecular and Cellular Cardiology|November 20, 2015
Role of smooth muscle Nox4-based NADPH oxidase in neointimal hyperplasiaXiaoyong Tong, Alok R Khandelwal, Zhexue Qin, et al.The Journal of Biological Chemistry|June 30, 2017
Guanylyl cyclase sensitivity to nitric oxide is protected by a thiol oxidation-driven interaction with thioredoxin-1Can Huang, Maryam Alapa, Ping Shu, et al.Cell|June 17, 2008
A redox-dependent pathway for regulating class II HDACs and cardiac hypertrophyTetsuro Ago, Tong Liu, Peiyong Zhai, et al.Journal of Molecular and Cellular Cardiology|February 13, 2016
Evaluating mitochondrial autophagy in the mouse heartAkihiro Shirakabe, Luke Fritzky, Toshiro Saito, et al.Plos One|August 5, 2015
An Ideal PPAR Response Element Bound to and Activated by PPARαJohn Tzeng, Jaemin Byun, Ji Yeon Park, et al.Pageof 34