Reactivation of developmentally silenced globin genes by forced chromatin looping.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 25126789.
- Also identified by DOI 10.1016/j.cell.2014.05.050 and PMC identifier 4134511.
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Abstract
Distal enhancers commonly contact target promoters via chromatin looping. In erythroid cells, the locus control region (LCR) contacts β-type globin genes in a developmental stage-specific manner to stimulate transcription. Previously, we induced LCR-promoter looping by tethering the self-association domain (SA) of Ldb1 to the β-globin promoter via artificial zinc fingers. Here, we show that targeting the SA to a developmentally silenced embryonic globin gene in adult murine erythroblasts triggers its transcriptional reactivation. This activity depends on the LCR, consistent with an LCR-promoter looping mechanism. Strikingly, targeting the SA to the fetal γ-globin promoter in primary adult human erythroblasts increases γ-globin promoter-LCR contacts, stimulating transcription to approximately 85% of total β-globin synthesis, with a reciprocal reduction in adult β-globin expression. Our findings demonstrate that forced chromatin looping can override a stringent developmental gene expression program and suggest a novel approach to control the balance of globin gene transcription for therapeutic applications.
Medical subject headings
- Chromatin
- Fetal Hemoglobin
- Genetic Techniques
- Locus Control Region
- Transcriptional Activation
- beta-Globins