| Literature DB >> 31334602 |
Alessandra Tesi1, Stefano de Pretis1, Mattia Furlan1, Marco Filipuzzi2, Marco J Morelli1, Adrian Andronache1, Mirko Doni2, Alessandro Verrecchia2, Mattia Pelizzola1, Bruno Amati2, Arianna Sabò2.
Abstract
Upon activation, lymphocytes exit quiescence and undergo substantial increases in cell size, accompanied by activation of energy-producing and anabolic pathways, widespread chromatin decompaction, and elevated transcriptional activity. These changes depend upon prior induction of the Myc transcription factor, but how Myc controls them remains unclear. We addressed this issue by profiling the response to LPS stimulation in wild-type and c-myc-deleted primary mouse B-cells. Myc is rapidly induced, becomes detectable on virtually all active promoters and enhancers, but has no direct impact on global transcriptional activity. Instead, Myc contributes to the swift up- and down-regulation of several hundred genes, including many known regulators of the aforementioned cellular processes. Myc-activated promoters are enriched for E-box consensus motifs, bind Myc at the highest levels, and show enhanced RNA Polymerase II recruitment, the opposite being true at down-regulated loci. Remarkably, the Myc-dependent signature identified in activated B-cells is also enriched in Myc-driven B-cell lymphomas: hence, besides modulation of new cancer-specific programs, the oncogenic action of Myc may largely rely on sustained deregulation of its normal physiological targets.Entities:
Keywords: B-cell; Myc; transcription
Mesh:
Substances:
Year: 2019 PMID: 31334602 PMCID: PMC6726900 DOI: 10.15252/embr.201947987
Source DB: PubMed Journal: EMBO Rep ISSN: 1469-221X Impact factor: 8.807