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One or more keywords matched the following properties of Moskowitz, Ivan
PropertyValue
keywords Congenital Heart Disease
keywords Heart Development
overview The Moskowitz laboratory is devoted to the genetic, genomic and molecular study of gene regulatory networks. A single overarching theme governs work in the Moskowitz laboratory: that understanding essential gene regulatory networks will unveil the molecular logic governing biological processes, and that understanding network disruption will inform the molecular basis underlying disease. We have recently pioneered approaches to identify non-coding RNAs as markers and modulators of enhancer function (Yang and Nadadur et al, 2017). The Moskowitz laboratory has focused on two areas of cardiac biology: (1) cardiac conduction with respect to cardiac arrhythmias and (2) cardiac development with respect to Congenital Heart Disease (CHD). In cardiac development, we investigate the genetic, genomic and developmental landscape of cardiac morphogenesis. We have identified an essential role for Hedgehog signaling in the cardiac development and congenital heart disease and contributed to a paradigm shift in the understanding of cardiac septation (e.g. Hoffmann et al., 2009; Xie et al., 2012; Zhou et al., 2017). We have recently identified a surprising and novel role for Hedgehog signaling in maintaining cardiac progenitor status and preventing premature differentiation (Rowton et al., 2018). In cardiac rhythm, we investigate the molecular mechanisms underlying the genetic basis of cardiac arrhythmias. We have defined the first molecular networks and linking GWAS loci in cardiac conduction (Arnolds et al, 2012), the first molecular network in Atrial Fibrillation, the most common arrhythmia world-wide (Nadadur et al., 2016) and the functional genomic mechanisms underlying genetic associations (Van den Boogaard et al., 2014).
One or more keywords matched the following items that are connected to Moskowitz, Ivan
Item TypeName
Concept Heart Septum
Concept Heart Valves
Concept Heart
Concept Heart Diseases
Concept Heart Failure
Concept Heart Septal Defects, Atrial
Concept Heart Ventricles
Concept Heart Atria
Concept Heart Defects, Congenital
Concept Heart Septal Defects, Ventricular
Concept Heart Transplantation
Concept National Heart, Lung, and Blood Institute (U.S.)
Concept Heart Conduction System
Concept Heart Rate
Concept Heart Septal Defects
Concept Heart Valve Diseases
Academic Article Ventricular arrhythmia vulnerability in cardiomyopathic mice with homozygous mutant Myosin-binding protein C gene.
Academic Article Cardiac electrophysiological phenotypes in postnatal expression of Nkx2.5 transgenic mice.
Academic Article The T-Box transcription factor Tbx5 is required for the patterning and maturation of the murine cardiac conduction system.
Academic Article Electrophysiologic characterization and postnatal development of ventricular pre-excitation in a mouse model of cardiac hypertrophy and Wolff-Parkinson-White syndrome.
Academic Article A molecular pathway including Id2, Tbx5, and Nkx2-5 required for cardiac conduction system development.
Academic Article Characterization of sinoatrial node in four conduction system marker mice.
Academic Article Complex genomic rearrangement in CCS-LacZ transgenic mice.
Academic Article The role of cardiac troponin T quantity and function in cardiac development and dilated cardiomyopathy.
Academic Article Genome-wide identification of mouse congenital heart disease loci.
Academic Article A novel murine allele of Intraflagellar Transport Protein 172 causes a syndrome including VACTERL-like features with hydrocephalus.
Academic Article Tbx5-hedgehog molecular networks are essential in the second heart field for atrial septation.
Academic Article TBX5 drives Scn5a expression to regulate cardiac conduction system function.
Academic Article E2F3 plays an essential role in cardiac development and function.
Academic Article Transcription factor genes Smad4 and Gata4 cooperatively regulate cardiac valve development. [corrected]
Academic Article Defective sumoylation pathway directs congenital heart disease.
Academic Article Regulatory variation in a TBX5 enhancer leads to isolated congenital heart disease.
Academic Article Transgenic mice overexpressing mutant PRKAG2 define the cause of Wolff-Parkinson-White syndrome in glycogen storage cardiomyopathy.
Academic Article Inducible recombination in the cardiac conduction system of minK: CreERT² BAC transgenic mice.
Academic Article The emerging genetic landscape underlying cardiac conduction system function.
Academic Article Giant cell myocarditis in a 12-year-old girl with common variable immunodeficiency.
Academic Article Enhanced desumoylation in murine hearts by overexpressed SENP2 leads to congenital heart defects and cardiac dysfunction.
Academic Article Filamin A (FLNA) is required for cell-cell contact in vascular development and cardiac morphogenesis.
Academic Article Expression of sumoylation deficient Nkx2.5 mutant in Nkx2.5 haploinsufficient mice leads to congenital heart defects.
Academic Article Foxf genes integrate tbx5 and hedgehog pathways in the second heart field for cardiac septation.
Academic Article MATR3 disruption in human and mouse associated with bicuspid aortic valve, aortic coarctation and patent ductus arteriosus.
Academic Article Maternal and zygotic Zfp57 modulate NOTCH signaling in cardiac development.
Academic Article A common genetic variant within SCN10A modulates cardiac SCN5A expression.
Academic Article The pattern of congenital heart defects arising from reduced Tbx5 expression is altered in a Down syndrome mouse model.
Academic Article Many ways to break a heart.
Academic Article The Cardiac TBX5 Interactome Reveals a Chromatin Remodeling Network Essential for Cardiac Septation.
Academic Article De Novo and Rare Variants at Multiple Loci Support the Oligogenic Origins of Atrioventricular Septal Heart Defects.
Academic Article Pitx2 modulates a Tbx5-dependent gene regulatory network to maintain atrial rhythm.
Academic Article Cilia gene mutations cause atrioventricular septal defects by multiple mechanisms.
Academic Article TBX5: A Key Regulator of Heart Development.
Academic Article Correction: Foxf Genes Integrate Tbx5 and Hedgehog Pathways in the Second Heart Field for Cardiac Septation.
Academic Article Gata4 potentiates second heart field proliferation and Hedgehog signaling for cardiac septation.
Award or Honor Receipt Fellow of the American Heart Association
Award or Honor Receipt Established Investigator Award
Award or Honor Receipt Louis N. and Arnold M. Katz Basic Research Prize
Academic Article Transcription-factor-dependent enhancer transcription defines a gene regulatory network for cardiac rhythm.
Academic Article Evolutionarily conserved Tbx5-Wnt2/2b pathway orchestrates cardiopulmonary development.
Academic Article A conserved HH-Gli1-Mycn network regulates heart regeneration from newt to human.
Academic Article Functional Assays to Screen and Dissect Genomic Hits: Doubling Down on the National Investment in Genomic Research.
Academic Article Atrial fibrillation risk loci interact to modulate Ca2+-dependent atrial rhythm homeostasis.
Academic Article Transcriptional Patterning of the Ventricular Cardiac Conduction System.
Academic Article ZO-1 Regulates Intercalated Disc Composition and Atrioventricular Node Conduction.
Academic Article Chamber-specific transcriptional responses in atrial fibrillation.
Academic Article Author Correction: Identifying genetic factors that contribute to the increased risk of congenital heart defects in infants with Down syndrome.
Academic Article Identifying genetic factors that contribute to the increased risk of congenital heart defects in infants with Down syndrome.
Academic Article Tbx5 drives Aldh1a2 expression to regulate a RA-Hedgehog-Wnt gene regulatory network coordinating cardiopulmonary development.
Grant Gene Regulatory Networks for Cardiac Morphogenesis
Grant A Screen for Mouse Cardiovascular Morphogenesis Mutants
Grant Genetic and Molecular Analysis of Congenital Heart Disease
Grant Gene Regulatory Non-Coding RNAs in the Human Heart
Grant Functional Assays to Screen Genomic Hits
Grant Gene Expression Networks for Human Cardiac Differentiation in Down Syndrome
Grant Functional Assays to Screen Genomic Hits
Grant Etiology of Congenital Heart Disease in Down Syndrome
Academic Article An Anterior Second Heart Field Enhancer Regulates the Gene Regulatory Network of the Cardiac Outflow Tract.
Grant Gene Regulatory Non-Coding RNAs in the Human Heart
Grant Evaluation of Hedgehog Signaling-Dependent Heart Development in a Mouse Model of Down Syndrome
Academic Article A Genomic Link From Heart Failure to Atrial Fibrillation Risk: FOG2 Modulates a TBX5/GATA4-Dependent Atrial Gene Regulatory Network.
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