[PDF][PDF] Chromatin architecture of the Pitx2 locus requires CTCF-and Pitx2-dependent asymmetry that mirrors embryonic gut laterality

IC Welsh, H Kwak, FL Chen, M Werner, LS Shopland… - Cell reports, 2015 - cell.com
IC Welsh, H Kwak, FL Chen, M Werner, LS Shopland, CG Danko, JT Lis, M Zhang, JF Martin…
Cell reports, 2015cell.com
Expression of Pitx2 on the left side of the embryo patterns left-right (LR) organs including the
dorsal mesentery (DM), whose asymmetric cell behavior directs gut looping. Despite the
importance of organ laterality, chromatin-level regulation of Pitx2 remains undefined. Here,
we show that genes immediately neighboring Pitx2 in chicken and mouse, including a long
noncoding RNA (Pitx2 locus-asymmetric regulated RNA or Playrr), are expressed on the
right side and repressed by Pitx2. CRISPR/Cas9 genome editing of Playrr, 3D fluorescent in …
Summary
Expression of Pitx2 on the left side of the embryo patterns left-right (LR) organs including the dorsal mesentery (DM), whose asymmetric cell behavior directs gut looping. Despite the importance of organ laterality, chromatin-level regulation of Pitx2 remains undefined. Here, we show that genes immediately neighboring Pitx2 in chicken and mouse, including a long noncoding RNA (Pitx2 locus-asymmetric regulated RNA or Playrr), are expressed on the right side and repressed by Pitx2. CRISPR/Cas9 genome editing of Playrr, 3D fluorescent in situ hybridization (FISH), and variations of chromatin conformation capture (3C) demonstrate that mutual antagonism between Pitx2 and Playrr is coordinated by asymmetric chromatin interactions dependent on Pitx2 and CTCF. We demonstrate that transcriptional and morphological asymmetries driving gut looping are mirrored by chromatin architectural asymmetries at the Pitx2 locus. We propose a model whereby Pitx2 auto-regulation directs chromatin topology to coordinate LR transcription of this locus essential for LR organogenesis.
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