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Deciphering the role of RNA in regulating CTCF’s DNA binding affinity in leukemia cells [RNA-Seq.New]

GSE288854 Homo sapiens Expression profiling by high throughput sequencing 6 samples Submitted 2025/03/26 Platform GPL24676
Summary
CTCF, a highly studied transcription factor, is essential for chromatin interaction maintenance. Several independent studies have reported that CTCF interacts with RNAs in vitro and in cells. Yet continuous debates about the authenticity of the RNA-binding affinity of CTCF and its biological role remain in large part due to limited research techniques available, such as CLIP-seq. Here, we investigated the role RNA plays on CTCF’s transcription factor function through its chromatin occupancy. To systematically investigate whether RNAs affect CTCF’s ability to bind DNA, we perturbed CTCF-RNA interactions by three independent approaches and examined CTCF genome occupancy by ChIP-seq. Although RNase A and Triptolide treatment each affected a certain number of CTCF-binding peaks, few peaks overlapped between treatment groups indicating the effect of RNA in regulating CTCF’s DNA binding affinity was modest and variable between loci. In addition, limited transcriptional or chromatin accessibility changes were observed between cells expressing wild-type CTCF or CTCF lacking the RNA binding region. Our data provide a complementary approach and in silico evidence to reconsider the significance of RNA affecting CTCF’s DNA-binding affinity in a global manner.
Published in
Deciphering the role of RNA in regulating CTCF's DNA binding affinity in leukemia cells
Hyle J, Qi W, Djekidel MN et al. · Genome biology 2025 · PMID 40355969 · doi:10.1186/s13059-025-03582-x
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Also filed as BioProject PRJNA1219631 and SRA study SRP561792. Searching any of these in the dataset finder brings you back here.

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