TY - JOUR
T1 - Epigenetic regulation in heart failure
AU - Kim, Soo Young
AU - Morales, Cyndi R.
AU - Gillette, Thomas G.
AU - Hill, Joseph A
N1 - Funding Information:
This work was supported by grants from the NIH (HL-120732; HL100401), American Heart Association (14SFRN20740000), CPRIT (RP110486P3), and the Leducq Foundation (11CVD04).
Publisher Copyright:
Copyright © 2016 Wolters Kluwer Health, Inc. All rights reserved.
PY - 2016
Y1 - 2016
N2 - Purpose of review This article provides an overview, highlighting recent findings, of a major mechanism of gene regulation and its relevance to the pathophysiology of heart failure. Recent findings The syndrome of heart failure is a complex and highly prevalent condition, one in which the heart undergoes substantial structural remodeling. Triggered by a wide range of disease-related cues, heart failure pathophysiology is governed by both genetic and epigenetic events. Epigenetic mechanisms, such as chromatin/DNA modifications and noncoding RNAs, have emerged as molecular transducers of environmental stimuli to control gene expression. Here, we emphasize metabolic milieu, aging, and hemodynamic stress as they impact the epigenetic landscape of the myocardium. Summary Recent studies in multiple fields, including cancer, stem cells, development, and cardiovascular biology, have uncovered biochemical ties linking epigenetic machinery and cellular energetics and mitochondrial function. Elucidation of these connections will afford molecular insights into long-established epidemiological observations. With time, exploitation of the epigenetic machinery therapeutically may emerge with clinical relevance.
AB - Purpose of review This article provides an overview, highlighting recent findings, of a major mechanism of gene regulation and its relevance to the pathophysiology of heart failure. Recent findings The syndrome of heart failure is a complex and highly prevalent condition, one in which the heart undergoes substantial structural remodeling. Triggered by a wide range of disease-related cues, heart failure pathophysiology is governed by both genetic and epigenetic events. Epigenetic mechanisms, such as chromatin/DNA modifications and noncoding RNAs, have emerged as molecular transducers of environmental stimuli to control gene expression. Here, we emphasize metabolic milieu, aging, and hemodynamic stress as they impact the epigenetic landscape of the myocardium. Summary Recent studies in multiple fields, including cancer, stem cells, development, and cardiovascular biology, have uncovered biochemical ties linking epigenetic machinery and cellular energetics and mitochondrial function. Elucidation of these connections will afford molecular insights into long-established epidemiological observations. With time, exploitation of the epigenetic machinery therapeutically may emerge with clinical relevance.
KW - Aging
KW - Epigenetics
KW - Heart failure
KW - Metabolism
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U2 - 10.1097/HCO.0000000000000276
DO - 10.1097/HCO.0000000000000276
M3 - Review article
C2 - 27022893
AN - SCOPUS:84961896776
SN - 0268-4705
VL - 31
SP - 255
EP - 265
JO - Current Opinion in Cardiology
JF - Current Opinion in Cardiology
IS - 3
ER -