作者
Domenick A Prosdocimo, Priti Anand, Xudong Liao, Han Zhu, Shamanthika Shelkay, Pedro Artero-Calderon, Lilei Zhang, Jacob Kirsh, Mariana G Rosca, Edwin Vazquez, Janos Kerner, Kemal M Akat, Zev Williams, Jihe Zhao, Hisashi Fujioka, Thomas Tuschl, Xiaodong Bai, P Christian Schulze, Charles L Hoppel, Mukesh K Jain, Saptarsi M Haldar
发表日期
2014/2/28
期刊
Journal of Biological Chemistry
卷号
289
期号
9
页码范围
5914-5924
出版商
Elsevier
简介
The mammalian heart, the body's largest energy consumer, has evolved robust mechanisms to tightly couple fuel supply with energy demand across a wide range of physiologic and pathophysiologic states, yet, when compared with other organs, relatively little is known about the molecular machinery that directly governs metabolic plasticity in the heart. Although previous studies have defined Kruppel-like factor 15 (KLF15) as a transcriptional repressor of pathologic cardiac hypertrophy, a direct role for the KLF family in cardiac metabolism has not been previously established. We show in human heart samples that KLF15 is induced after birth and reduced in heart failure, a myocardial expression pattern that parallels reliance on lipid oxidation. Isolated working heart studies and unbiased transcriptomic profiling in Klf15-deficient hearts demonstrate that KLF15 is an essential regulator of lipid flux and metabolic …
引用总数
201420152016201720182019202020212022202320241111210161810198126
学术搜索中的文章
DA Prosdocimo, P Anand, X Liao, H Zhu, S Shelkay… - Journal of Biological Chemistry, 2014