4.8 Article

ZNF143 mediates CTCF-bound promoter-enhancer loops required for murine hematopoietic stem and progenitor cell function

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NATURE COMMUNICATIONS
卷 12, 期 1, 页码 -

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NATURE RESEARCH
DOI: 10.1038/s41467-020-20282-1

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  1. Singapore Ministry of Health's National Medical Research Council under Singapore Translational Research (STaR) Investigator Award
  2. National Research Foundation Singapore
  3. Singapore Ministry of Education under its Research Centres of Excellence initiative
  4. NIH [1R35CA197697, P01 HL131477]
  5. Xiu Research Fund

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The study demonstrates that ZNF143 plays a crucial role in regulating CTCF-bound promoter-enhancer loops, with its deletion leading to loss of CTCF binding and changes in gene expression associated with murine hematopoietic stem and progenitor cell integrity. This suggests that ZNF143 is a critical factor for the maintenance of gene regulation through CTCF-DNA interactions.
CCCTC binding factor (CTCF) is an important factor in the maintenance of chromatin-chromatin interactions, yet the mechanism regulating its binding to chromatin is unknown. We demonstrate that zinc finger protein 143 (ZNF143) is a key regulator for CTCF-bound promoter-enhancer loops. In the murine genome, a large percentage of CTCF and ZNF143 DNA binding motifs are distributed 37bp apart in the convergent orientation. Furthermore, deletion of ZNF143 leads to loss of CTCF binding on promoter and enhancer regions associated with gene expression changes. CTCF-bound promoter-enhancer loops are also disrupted after excision of ZNF143. ZNF143-CTCF-bound promoter-enhancer loops regulate gene expression patterns essential for maintenance of murine hematopoietic stem and progenitor cell integrity. Our data suggest a common feature of gene regulation is that ZNF143 is a critical factor for CTCF-bound promoter-enhancer loops. CTCF mediates DNA-DNA interactions by forming dimers that directly bind to both sides of the DNA. Here the authors reveal that a CTCF known associated zinc finger, ZNF143, mediates gene transcription through CTCF-DNA binding to maintain murine hematopoietic stem and progenitor cell integrity.

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