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Cell Syst ; 4(1): 121-128.e4, 2017 01 25.
Article in English | MEDLINE | ID: mdl-27866946

ABSTRACT

We previously reported a genetic analysis of heart failure traits in a population of inbred mouse strains treated with isoproterenol to mimic catecholamine-driven cardiac hypertrophy. Here, we apply a co-expression network algorithm, wMICA, to perform a systems-level analysis of left ventricular transcriptomes from these mice. We describe the features of the overall network but focus on a module identified in treated hearts that is strongly related to cardiac hypertrophy and pathological remodeling. Using the causal modeling algorithm NEO, we identified the gene Adamts2 as a putative regulator of this module and validated the predictive value of NEO using small interfering RNA-mediated knockdown in neonatal rat ventricular myocytes. Adamts2 silencing regulated the expression of the genes residing within the module and impaired isoproterenol-induced cellular hypertrophy. Our results provide a view of higher order interactions in heart failure with potential for diagnostic and therapeutic insights.


Subject(s)
ADAMTS Proteins/genetics , Cardiomegaly/genetics , Systems Biology/methods , ADAMTS Proteins/physiology , Animals , Cardiomegaly/chemically induced , Cardiomyopathies/genetics , Cardiomyopathies/metabolism , Cardiomyopathies/physiopathology , Cardiotonic Agents/adverse effects , Catecholamines/adverse effects , Gene Expression Regulation/drug effects , Gene Regulatory Networks/genetics , Heart Failure/genetics , Heart Ventricles/metabolism , Isoproterenol/pharmacology , Mice , Mice, Inbred Strains/genetics , Myocardium/metabolism , Myocytes, Cardiac/metabolism , Signal Transduction/drug effects , Ventricular Remodeling/genetics
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