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Prolongation of QRS duration in electrocardiogram is one of the risk factors for morbidity and mortality in many kinds of cardiac diseases. However, its molecular mechanism is unknown. In this study, utilizing experimental autoimmune myocarditis (EAM) as a disease model, we show that the prolongation of QRS duration is accompanied by elevated phosphorylation of connexin 43 (Cx43) at Ser368 (pS368 Cx43). In cultured cells, inflammatory cytokine IL-1β activates p38 MAPK to up-regulate pS368 Cx43 and impairs cell-to-cell communication. In isolated hearts of normal rats, perfusion of IL-1β not only increases pS368 Cx43 but also impairs cell-to-cell communication and prolongs QRS duration. Furthermore, blockade of p38 MAPK down-regulates pS368 Cx43, improves cell-to-cell communication and reduces QRS duration in EAM. These findings suggest that up-regulation of pS368 Cx43 by IL-1β via p38 MAPK contributes to the prolongation of QRS duration and could be a therapeutic target for myocarditis-induced prolongation of QRS duration.
Pubmed ID: 29664174
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THIS RESOURCE IS NO LONGER IN SERVICE. Documented on May 5,2022.Tool that predicts interactions between transcription factors and their regulated genes from binding motifs. Understanding vertebrate development requires unraveling the cis-regulatory architecture of gene regulation. PRISM provides accurate genome-wide computational predictions of transcription factor binding sites for the human and mouse genomes, and integrates the predictions with GREAT to provide functional biological context. Together, accurate computational binding site prediction and GREAT produce for each transcription factor: 1. putative binding sites, 2. putative target genes, 3. putative biological roles of the transcription factor, and 4. putative cis-regulatory elements through which the factor regulates each target in each functional role.
View all literature mentionsCell line H9c2(2-1) is a Spontaneously immortalized cell line with a species of origin Rattus norvegicus (Rat)
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