Genomewide RNA expression profiling in lung identifies distinct signatures in idiopathic pulmonary arterial hypertension and secondary pulmonary hypertension.
暂无分享,去创建一个
Ferhaan Ahmad | N. Kaminski | Kazuhisa Konishi | T. Richards | Revathi Rajkumar | D. Ishizawar | A. Wiechert | Andrew C Wiechert
[1] S. R. Reeves,et al. Network analysis of temporal effects of intermittent and sustained hypoxia on rat lungs. , 2008, Physiological genomics.
[2] Stephen H. Smith,et al. The Role of Cardiac Troponin T Quantity and Function in Cardiac Development and Dilated Cardiomyopathy , 2008, PloS one.
[3] G. Hansmann,et al. An antiproliferative BMP-2/PPARgamma/apoE axis in human and murine SMCs and its role in pulmonary hypertension. , 2008, The Journal of clinical investigation.
[4] Naftali Kaminski,et al. MMP1 and MMP7 as Potential Peripheral Blood Biomarkers in Idiopathic Pulmonary Fibrosis , 2008, PLoS medicine.
[5] N. Kaminski,et al. Idiopathic Pulmonary Fibrosis: Aberrant Recapitulation of Developmental Programs? , 2008, PLoS medicine.
[6] B. Cochran,et al. PDGF-induced human airway smooth muscle cell proliferation requires STAT3 and the small GTPase Rac1. , 2008, American journal of physiology. Lung cellular and molecular physiology.
[7] J. Newman,et al. Narrative Review: The Enigma of Pulmonary Arterial Hypertension: New Insights from Genetic Studies , 2008, Annals of Internal Medicine.
[8] H. Beppu,et al. Bone Morphogenetic Protein (BMP) Type II Receptor Is Required for BMP-mediated Growth Arrest and Differentiation in Pulmonary Artery Smooth Muscle Cells* , 2008, Journal of Biological Chemistry.
[9] B. Wojciak-Stothard,et al. Rho GTPases and hypoxia in pulmonary vascular endothelial cells. , 2008, Methods in enzymology.
[10] D. Billheimer,et al. Proteomics of transformed lymphocytes from a family with familial pulmonary arterial hypertension. , 2008, American journal of respiratory and critical care medicine.
[11] S. Erzurum,et al. Hyperproliferative apoptosis-resistant endothelial cells in idiopathic pulmonary arterial hypertension. , 2007, American journal of physiology. Lung cellular and molecular physiology.
[12] Ferhaan Ahmad,et al. A PRKAG2 mutation causes biphasic changes in myocardial AMPK activity and does not protect against ischemia. , 2007, Biochemical and biophysical research communications.
[13] W. Seeger,et al. Hypoxia-Dependent Regulation of Nonphagocytic NADPH Oxidase Subunit NOX4 in the Pulmonary Vasculature , 2007, Circulation research.
[14] R. Marthan,et al. Modulation of ion channels in pulmonary arterial hypertension. , 2007, Current pharmaceutical design.
[15] S. Archer,et al. The nuclear factor of activated T cells in pulmonary arterial hypertension can be therapeutically targeted , 2007, Proceedings of the National Academy of Sciences.
[16] W. Seeger,et al. The transforming growth factor-β/Smad2,3 signalling axis is impaired in experimental pulmonary hypertension , 2007, European Respiratory Journal.
[17] J. West,et al. Interaction of interleukin-6 and the BMP pathway in pulmonary smooth muscle. , 2007, American journal of physiology. Lung cellular and molecular physiology.
[18] S. Archer,et al. Overexpression of human bone morphogenetic protein receptor 2 does not ameliorate monocrotaline pulmonary arterial hypertension. , 2007, American journal of physiology. Lung cellular and molecular physiology.
[19] R. Tuder,et al. Pathology of pulmonary hypertension. , 2007, Clinics in chest medicine.
[20] L. Trinkle-Mulcahy,et al. Emerging roles of nuclear protein phosphatases , 2007, Nature Reviews Molecular Cell Biology.
[21] S. Law,et al. Identification of a tumor suppressive critical region mapping to 3p14.2 in esophageal squamous cell carcinoma and studies of a candidate tumor suppressor gene, ADAMTS9 , 2007, Oncogene.
[22] P. Insel,et al. Expression and activity of cAMP phosphodiesterase isoforms in pulmonary artery smooth muscle cells from patients with pulmonary hypertension: role for PDE1. , 2007, American journal of physiology. Lung cellular and molecular physiology.
[23] W. Seeger,et al. The transforming growth factor-beta/Smad2,3 signalling axis is impaired in experimental pulmonary hypertension. , 2007, European Respiratory Journal.
[24] W. Xiao,et al. Uev1A, a ubiquitin conjugating enzyme variant, inhibits stress-induced apoptosis through NF-κB activation , 2006, Apoptosis.
[25] S. Said. Mediators and modulators of pulmonary arterial hypertension. , 2006, American journal of physiology. Lung cellular and molecular physiology.
[26] S. Archer,et al. An Abnormal Mitochondrial–Hypoxia Inducible Factor-1&agr;–Kv Channel Pathway Disrupts Oxygen Sensing and Triggers Pulmonary Arterial Hypertension in Fawn Hooded Rats: Similarities to Human Pulmonary Arterial Hypertension , 2006, Circulation.
[27] M. Humbert,et al. BMPR2 gene rearrangements account for a significant proportion of mutations in familial and idiopathic pulmonary arterial hypertension , 2006, Human mutation.
[28] R. Folz,et al. Hypoxic pulmonary hypertension: role of superoxide and NADPH oxidase (gp91phox). , 2006, American journal of physiology. Lung cellular and molecular physiology.
[29] Wei Wu,et al. Comparison of normalization methods for CodeLink Bioarray data , 2005, BMC Bioinformatics.
[30] C. Elliott. Genetics of Pulmonary Arterial Hypertension: Current and Future Implications , 2005, Seminars in respiratory and critical care medicine.
[31] S. Archer,et al. Gene therapy targeting survivin selectively induces pulmonary vascular apoptosis and reverses pulmonary arterial hypertension. , 2005, The Journal of clinical investigation.
[32] J. Cogan,et al. Gross BMPR2 gene rearrangements constitute a new cause for primary pulmonary hypertension , 2005, Genetics in Medicine.
[33] D. Maurice,et al. Vascular Endothelial Cell Cyclic Nucleotide Phosphodiesterases and Regulated Cell Migration: Implications in Angiogenesis , 2005, Molecular Pharmacology.
[34] A. Zaiman,et al. Impaired transforming growth factor-beta signaling in idiopathic pulmonary arterial hypertension. , 2004, American journal of respiratory and critical care medicine.
[35] Alok J. Saldanha,et al. Java Treeview - extensible visualization of microarray data , 2004, Bioinform..
[36] S. Hazen,et al. Increased arginase II and decreased NO synthesis in endothelial cells of patients with pulmonary arterial hypertension , 2004, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[37] I. Fantozzi,et al. Enhanced expression of transient receptor potential channels in idiopathic pulmonary arterial hypertension. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[38] John H. White,et al. Genome-wide identification of high-affinity estrogen response elements in human and mouse. , 2004, Molecular endocrinology.
[39] H. Ploegh,et al. Activity-based ubiquitin-specific protease (USP) profiling of virus-infected and malignant human cells. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[40] W. Seeger,et al. Clinical classification of pulmonary hypertension. , 2001, Clinics in chest medicine.
[41] P. Thistlethwaite,et al. Induction of pulmonary hypertension by an angiopoietin 1/TIE2/serotonin pathway , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[42] K. Jöckel,et al. Tumor classification based on gene expression profiling shows that uveal melanomas with and without monosomy 3 represent two distinct entities. , 2003, Cancer research.
[43] V. Fowler,et al. Pointed-end capping by tropomodulin3 negatively regulates endothelial cell motility , 2003, The Journal of cell biology.
[44] M. Oren,et al. Cell Cycle Regulation and p53 Activation by Protein Phosphatase 2Cα* , 2003, The Journal of Biological Chemistry.
[45] P. Thistlethwaite,et al. Signaling molecules in nonfamilial pulmonary hypertension. , 2003, The New England journal of medicine.
[46] M. Oren,et al. Cell cycle regulation and p53 activation by protein phosphatase 2C alpha. , 2003, The Journal of biological chemistry.
[47] M. Taketo,et al. Phospolipase A2 and apoptosis. , 2002, Biochimica et biophysica acta.
[48] S. Earley,et al. Estradiol attenuates hypoxia-induced pulmonary endothelin-1 gene expression. , 2002, American journal of physiology. Lung cellular and molecular physiology.
[49] Jan-Michael Peters,et al. The anaphase-promoting complex: proteolysis in mitosis and beyond. , 2002, Molecular cell.
[50] R. Trembath,et al. Primary Pulmonary Hypertension Is Associated With Reduced Pulmonary Vascular Expression of Type II Bone Morphogenetic Protein Receptor , 2002, Circulation.
[51] A. Wittinghofer,et al. The actin filament architecture: tightly regulated by the cells, manipulated by pathogens , 2002, EMBO reports.
[52] C. Waterman-Storer,et al. Cell motility: can Rho GTPases and microtubules point the way? , 2001, Journal of cell science.
[53] G. Semenza,et al. Expression of angiogenesis‐related molecules in plexiform lesions in severe pulmonary hypertension: evidence for a process of disordered angiogenesis , 2001, The Journal of pathology.
[54] Wei Huang,et al. Role of thrombin signalling in platelets in haemostasis and thrombosis , 2001, Nature.
[55] R. Trembath,et al. Altered Growth Responses of Pulmonary Artery Smooth Muscle Cells From Patients With Primary Pulmonary Hypertension to Transforming Growth Factor-&bgr;1 and Bone Morphogenetic Proteins , 2001, Circulation.
[56] C. Conley. Leiomodin and tropomodulin in smooth muscle. , 2001, American journal of physiology. Cell physiology.
[57] R. Tibshirani,et al. Significance analysis of microarrays applied to the ionizing radiation response , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[58] N. Voelkel,et al. Gene Expression Patterns in the Lungs of Patients With Primary Pulmonary Hypertension: A Gene Microarray Analysis , 2001, Circulation research.
[59] T. Liu,et al. Growth Suppression of Human Coronary Vascular Smooth Muscle Cells by Gene Transfer of the Transcription Factor E2F-1 , 2001, Circulation.
[60] N. Voelkel,et al. Microsatellite Instability of Endothelial Cell Growth and Apoptosis Genes Within Plexiform Lesions in Primary Pulmonary Hypertension , 2001, Circulation research.
[61] E. Turley. Extracellular matrix remodeling: multiple paradigms in vascular disease. , 2001, Circulation research.
[62] B. Walker,et al. Estradiol-induced attenuation of pulmonary hypertension is not associated with altered eNOS expression. , 2001, American journal of physiology. Lung cellular and molecular physiology.
[63] J P Cazenave,et al. Defective platelet aggregation and increased resistance to thrombosis in purinergic P2Y(1) receptor-null mice. , 1999, The Journal of clinical investigation.
[64] P. Cacoub,et al. Role of endothelial and smooth muscle cells in the physiopathology and treatment management of pulmonary hypertension. , 1999, Cardiovascular research.
[65] D. Badesch,et al. Prostacyclin synthase expression is decreased in lungs from patients with severe pulmonary hypertension. , 1999, American journal of respiratory and critical care medicine.
[66] E. Hoffman,et al. Interstitial lung disease: A quantitative study using the adaptive multiple feature method. , 1999, American journal of respiratory and critical care medicine.
[67] Aaron Ciechanover,et al. The ubiquitin–proteasome pathway: on protein death and cell life , 1998, The EMBO journal.
[68] J. Eisen,et al. In silico-initiated cloning and molecular characterization of a novel human member of the L1 gene family of neural cell adhesion molecules , 1998, Human Genetics.
[69] P. Karczewski,et al. Phosphorylation of phospholamban correlates with relaxation of coronary artery induced by nitric oxide, adenosine, and prostacyclin in the pig , 1998, Journal of cellular biochemistry.
[70] Xavier Estivill,et al. Role of UEV-1, an Inactive Variant of the E2 UbiquitinConjugating Enzymes, in In Vitro Differentiation and Cell Cycle Behavior of HT-29-M6 Intestinal Mucosecretory Cells , 1998, Molecular and Cellular Biology.
[71] L. Rubin,et al. Primary pulmonary hypertension. , 1997, The New England journal of medicine.
[72] J. Massagué. TGF-beta signal transduction. , 1998, Annual review of biochemistry.
[73] P. Jones,et al. Tenascin-C, proliferation and subendothelial fibronectin in progressive pulmonary vascular disease. , 1997, The American journal of pathology.
[74] G. Sonenshein. Down-modulation of c-myc expression induces apoptosis of B lymphocyte models of tolerance via clonal deletion. , 1997, Journal of immunology.
[75] R. Marlar,et al. Coagulation and fibrinolytic profiles in patients with severe pulmonary hypertension. , 1996, Chest.
[76] J. Polson,et al. Cyclic nucleotide phosphodiesterases and vascular smooth muscle. , 1996, Annual review of pharmacology and toxicology.
[77] B. Groves,et al. An imbalance between the excretion of thromboxane and prostacyclin metabolites in pulmonary hypertension. , 1992, The New England journal of medicine.
[78] K. Matsushima,et al. Properties of the novel proinflammatory supergene "intercrine" cytokine family. , 1991, Annual review of immunology.
[79] R. Eisman,et al. Structural and functional comparison of the genes for human platelet factor 4 and PF4alt. , 1990, Blood.
[80] E H Bergofsky,et al. Primary pulmonary hypertension. A national prospective study. , 1987, Annals of internal medicine.
[81] L. Hoyer,et al. von Willebrand factor abnormalities in primary pulmonary hypertension. , 1987, The American review of respiratory disease.