4.7 Article

Context-Specific Transcription Factor Functions Regulate Epigenomic and Transcriptional Dynamics during Cardiac Reprogramming

期刊

CELL STEM CELL
卷 25, 期 1, 页码 87-+

出版社

CELL PRESS
DOI: 10.1016/j.stem.2019.06.012

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资金

  1. National Science Foundation Graduate Research Fellowship
  2. R01 Research Supplement to Promote Diversity in Health-Related Research
  3. Ruth L. Kirschstein NRSA Institutional Research Training Grant
  4. Damon Runyon Cancer Research Foundation [DRG-2206-14]
  5. NHLBI/NIH [P01 HL089707, UM1 HL098179, R01 HL057181]
  6. Roddenberry Foundation
  7. L. K. Whittier Foundation
  8. Younger Family Fund
  9. NIH/NCRR [C06 RR018928]
  10. NIH [P30 AI027763, S10 RR028962]
  11. James B. Pendleton Charitable Trust

向作者/读者索取更多资源

Ectopic expression of combinations of transcription factors (TFs) can drive direct lineage conversion, thereby reprogramming a somatic cell's identity. To determine the molecular mechanisms by which Gata4, Mef2c, and Tbx5 (GMT) induce conversion from a cardiac fibroblast toward an induced cardiomyocyte, we performed comprehensive transcriptomic, DNA-occupancy, and epigenomic interrogation throughout the reprogramming process. Integration of these datasets identified new TFs involved in cardiac reprogramming and revealed context-specific roles for GMT, including the ability of Mef2c and Tbx5 to independently promote chromatin remodeling at previously inaccessible sites. We also find evidence for cooperative facilitation and refinement of each TF's binding profile in a combinatorial setting. A reporter assay employing newly defined regulatory elements confirmed that binding of a single TF can be sufficient for gene activation, suggesting that co-binding events do not necessarily reflect synergy. These results shed light on fundamental mechanisms by which combinations of TFs direct lineage conversion.

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