Endothelial MRTF-A mediates angiotensin II induced cardiac hypertrophy
Tài liệu tham khảo
Dimmeler, 1997, Angiotensin II induces apoptosis of human endothelial cells. Protective effect of nitric oxide, Circ Res, 81, 970, 10.1161/01.RES.81.6.970
Imanishi, 2005, Angiotensin II accelerates endothelial progenitor cell senescence through induction of oxidative stress, J Hypertens, 23, 97, 10.1097/00004872-200501000-00018
Bendall, 2007, Endothelial Nox2 overexpression potentiates vascular oxidative stress and hemodynamic response to angiotensin II: studies in endothelial-targeted Nox2 transgenic mice, Circ Res, 100, 1016, 10.1161/01.RES.0000263381.83835.7b
Tummala, 1999, Angiotensin II induces vascular cell adhesion molecule-1 expression in rat vasculature: a potential link between the renin–angiotensin system and atherosclerosis, Circulation, 100, 1223, 10.1161/01.CIR.100.11.1223
Rao, 2007, Endothelial-dependent mechanisms of leukocyte recruitment to the vascular wall, Circ Res, 101, 234, 10.1161/CIRCRESAHA.107.151860b
Widyantoro, 2010, Endothelial cell-derived endothelin-1 promotes cardiac fibrosis in diabetic hearts through stimulation of endothelial-to-mesenchymal transition, Circulation, 121, 2407, 10.1161/CIRCULATIONAHA.110.938217
Amiri, 2004, Endothelium-restricted overexpression of human endothelin-1 causes vascular remodeling and endothelial dysfunction, Circulation, 110, 2233, 10.1161/01.CIR.0000144462.08345.B9
Castanares, 2007, Signaling by ALK5 mediates TGF-beta-induced ET-1 expression in endothelial cells: a role for migration and proliferation, J Cell Sci, 120, 1256, 10.1242/jcs.03419
Yamashita, 2001, Molecular regulation of the endothelin-1 gene by hypoxia. Contributions of hypoxia-inducible factor-1, activator protein-1, GATA-2, AND p300/CBP, J Biol Chem, 276, 12645, 10.1074/jbc.M011344200
Adiarto, 2012, ET-1 from endothelial cells is required for complete angiotensin II-induced cardiac fibrosis and hypertrophy, Life Sci, 91, 651, 10.1016/j.lfs.2012.02.006
Fang, 2011, Myocardin-related transcription factor A mediates OxLDL-induced endothelial injury, Circ Res, 108, 797, 10.1161/CIRCRESAHA.111.240655
Yang, 2013, Megakaryocytic leukemia 1 (MKL1) ties the epigenetic machinery to hypoxia-induced transactivation of endothelin-1, Nucleic Acids Res, 41, 6005, 10.1093/nar/gkt311
Small, 2010, Myocardin-related transcription factor-a controls myofibroblast activation and fibrosis in response to myocardial infarction, Circ Res, 107, 294, 10.1161/CIRCRESAHA.110.223172
Cao, 2011, Myocardin-related transcription factor-A promoting neuronal survival against apoptosis induced by hypoxia/ischemia, Brain Res, 1385, 263, 10.1016/j.brainres.2011.02.016
Kuwahara, 2010, Myocardin-related transcription factor A is a common mediator of mechanical stress- and neurohumoral stimulation-induced cardiac hypertrophic signaling leading to activation of brain natriuretic peptide gene expression, Mol Cell Biol, 30, 4134, 10.1128/MCB.00154-10
Ly, 2013, Hyperosmotic stress regulates the distribution and stability of myocardin-related transcription factor, a key modulator of the cytoskeleton, Am J Physiol Cell Physiol, 304, C115, 10.1152/ajpcell.00290.2012
Lee, 2010, Activation and repression of cellular immediate early genes by serum response factor cofactors, J Biol Chem, 285, 22036, 10.1074/jbc.M110.108878
Sun, 2006, Acute myeloid leukemia-associated Mkl1 (Mrtf-a) is a key regulator of mammary gland function, Mol Cell Biol, 26, 5809, 10.1128/MCB.00024-06
Yang, 2004, Conditional cardiac overexpression of endothelin-1 induces inflammation and dilated cardiomyopathy in mice, Circulation, 109, 255, 10.1161/01.CIR.0000105701.98663.D4
Hsu, 2004, Role of reactive oxygen species-sensitive extracellular signal-regulated kinase pathway in angiotensin II-induced endothelin-1 gene expression in vascular endothelial cells, J Vasc Res, 41, 64, 10.1159/000076247
Shilatifard, 2012, The COMPASS family of histone H3K4 methylases: mechanisms of regulation in development and disease pathogenesis, Annu Rev Biochem, 81, 65, 10.1146/annurev-biochem-051710-134100
Fang, 2013, Proinflammatory stimuli engage brahma related gene 1 and brahma in endothelial injury, Circ Res, 113, 986, 10.1161/CIRCRESAHA.113.301296
Paddison, 2004, Short hairpin activated gene silencing in mammalian cells, Methods Mol Biol, 265, 85
Hannon, 2004, Unlocking the potential of the human genome with RNA interference, Nature, 431, 371, 10.1038/nature02870
Zhang, 2009, Enzymes in the NAD+ salvage pathway regulate SIRT1 activity at target gene promoters, J Biol Chem, 284, 20408, 10.1074/jbc.M109.016469
Giering, 2008, Expression of shRNA from a tissue-specific pol II promoter is an effective and safe RNAi therapeutic, Mol Ther, 16, 1630, 10.1038/mt.2008.144
Laurenti, 2010, Inducible gene and shRNA expression in resident hematopoietic stem cells in vivo, Stem Cells, 28, 1390, 10.1002/stem.460
Horio, 2014, Role of endothelial cell-derived angptl2 in vascular inflammation leading to endothelial dysfunction and atherosclerosis progression, Arterioscler Thromb Vasc Biol, 34, 790, 10.1161/ATVBAHA.113.303116
Chen, 2013, Brahma-related gene 1 (Brg1) epigenetically regulates CAM activation during hypoxic pulmonary hypertension, Cardiovasc Res, 100, 363, 10.1093/cvr/cvt214
Roura, 2009, Vascular dysfunction in idiopathic dilated cardiomyopathy, Nat Rev Cardiol, 6, 590, 10.1038/nrcardio.2009.130
Shah, 1992, Endothelial modulation of myocardial contraction: mechanisms and potential relevance in cardiac disease, Basic Res Cardiol, 87, 59
Tirziu, 2010, Cell communications in the heart, Circulation, 122, 928, 10.1161/CIRCULATIONAHA.108.847731
Shubeita, 1990, Endothelin induction of inositol phospholipid hydrolysis, sarcomere assembly, and cardiac gene expression in ventricular myocytes. A paracrine mechanism for myocardial cell hypertrophy, J Biol Chem, 265, 20555, 10.1016/S0021-9258(17)30538-0
Rizvi, 1996, The effects of endothelin-1 on collagen type I and type III synthesis in cultured porcine coronary artery vascular smooth muscle cells, J Mol Cell Cardiol, 28, 243, 10.1006/jmcc.1996.0023
Ding, 2010, Inductive angiocrine signals from sinusoidal endothelium are required for liver regeneration, Nature, 468, 310, 10.1038/nature09493
Ding, 2011, Endothelial-derived angiocrine signals induce and sustain regenerative lung alveolarization, Cell, 147, 539, 10.1016/j.cell.2011.10.003
Cao, 2014, Angiocrine factors deployed by tumor vascular niche induce B cell lymphoma invasiveness and chemoresistance, Cancer Cell, 25, 350, 10.1016/j.ccr.2014.02.005
Hanna, 2009, Mechanical regulation of the proangiogenic factor CCN1/CYR61 gene requires the combined activities of MRTF-A and CREB-binding protein histone acetyltransferase, J Biol Chem, 284, 23125, 10.1074/jbc.M109.019059
Lockman, 2007, The histone demethylase, Jmjd1a, interacts with the myocardin factors to regulate SMC differentiation marker gene expression, Circ Res, 101, e115, 10.1161/CIRCRESAHA.107.164178
Zhang, 2007, A novel role of Brg1 in the regulation of SRF/MRTFA-dependent smooth muscle-specific gene expression, J Biol Chem, 282, 25708, 10.1074/jbc.M701925200
Jin, 2011, Distinct roles of GCN5/PCAF-mediated H3K9ac and CBP/p300-mediated H3K18/27ac in nuclear receptor transactivation, EMBO J, 30, 249, 10.1038/emboj.2010.318
Pirola, 2011, Genome-wide analysis distinguishes hyperglycemia regulated epigenetic signatures of primary vascular cells, Genome Res, 21, 1601, 10.1101/gr.116095.110
Awad, 2013, Nuclear CaMKII enhances histone H3 phosphorylation and remodels chromatin during cardiac hypertrophy, Nucleic Acids Res, 41, 7656, 10.1093/nar/gkt500
Sundaresan, 2012, The sirtuin SIRT6 blocks IGF-Akt signaling and development of cardiac hypertrophy by targeting c-Jun, Nat Med, 18, 1643, 10.1038/nm.2961
Morita, 2007, Dual roles of myocardin-related transcription factors in epithelial mesenchymal transition via slug induction and actin remodeling, J Cell Biol, 179, 1027, 10.1083/jcb.200708174
Feinberg, 2007, Phenotypic plasticity and the epigenetics of human disease, Nature, 447, 433, 10.1038/nature05919
Shen, 2013, Interplay between the cancer genome and epigenome, Cell, 153, 38, 10.1016/j.cell.2013.03.008
Feng, 2012, Clocks, metabolism, and the epigenome, Mol Cell, 47, 158, 10.1016/j.molcel.2012.06.026
Cen, 2003, Megakaryoblastic leukemia 1, a potent transcriptional coactivator for serum response factor (SRF), is required for serum induction of SRF target genes, Mol Cell Biol, 23, 6597, 10.1128/MCB.23.18.6597-6608.2003
Koga, 2009, Cyclic adenosine monophosphate suppresses the transcription of proinflammatory cytokines via the phosphorylated c-Fos protein, Immunity, 30, 372, 10.1016/j.immuni.2008.12.021
Glenn, 2009, Atrial natriuretic peptide suppresses endothelin gene expression and proliferation in cardiac fibroblasts through a GATA4-dependent mechanism, Cardiovasc Res, 84, 209, 10.1093/cvr/cvp208
Uchil, 2013, TRIM protein-mediated regulation of inflammatory and innate immune signaling and its association with antiretroviral activity, J Virol, 87, 257, 10.1128/JVI.01804-12
Hilfiker-Kleiner, 2006, JunD attenuates phenylephrine-mediated cardiomyocyte hypertrophy by negatively regulating AP-1 transcriptional activity, Cardiovasc Res, 71, 108, 10.1016/j.cardiores.2006.02.032
Arnould, 1999, Cellular activation triggered by the autosomal dominant polycystic kidney disease gene product PKD2, Mol Cell Biol, 19, 3423, 10.1128/MCB.19.5.3423
Pariente, 2008, Efficient targeted transduction of primary human endothelial cells with dual-targeted lentiviral vectors, J Gene Med, 10, 242, 10.1002/jgm.1151
Fang, 2009, RFXB and its splice variant RFXBSV mediate the antagonism between IFNgamma and TGFbeta on COL1A2 transcription in vascular smooth muscle cells, Nucleic Acids Res, 37, 4393, 10.1093/nar/gkp398
Li, 2012, Interferon gamma (IFN-gamma) disrupts energy expenditure and metabolic homeostasis by suppressing SIRT1 transcription, Nucleic Acids Res, 40, 1609, 10.1093/nar/gkr984
Xu, 2011, The effect of class II transactivator mutations on bleomycin-induced lung inflammation and fibrosis, Am J Respir Cell Mol Biol, 44, 898, 10.1165/rcmb.2009-0416OC
Wu, 2011, SIRT1 links CIITA deacetylation to MHC II activation, Nucleic Acids Res, 39, 9549, 10.1093/nar/gkr651