Interaction of bZIP transcription factor NRL with RNA-binding proteins implicates R-loops in photoreceptor gene regulation
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https://www.ncbi.nlm.nih.gov/geo/query/acc.cgi?acc=GSE274666
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RNA-binding proteins (RBPs) perform diverse functions including the regulation of chromatin dynamics and the coupling of transcription with RNA processing. However, our understanding of their actions in mammalian neurons remains limited. Using affinity purification, yeast-two-hybrid and proximity ligation assays, we identified interactions of multiple RBPs with NRL, a Maf-family bZIP transcription factor critical for retinal rod photoreceptor development and function. In addition to splicing, many NRL-interacting RBPs are associated with R-loops, which form during transcription and increase during photoreceptor maturation. Focusing on DHX9 RNA helicase, we demonstrate that its expression is modulated by NRL and that the NRL-DHX9 interaction is positively influenced by R-loops. ssDRIP-Seq analysis reveals both stranded and unstranded R-loops at distinct genomic elements, characterized by active and inactive epigenetic signatures and enriched at neuronal genes. NRL binds to both types of R-loops, suggesting an epigenetically independent function. Our findings suggest additional functions of NRL during transcription and highlight complex interactions among transcription factors, RBPs, and R-loops in regulating photoreceptor gene expression in the mammalian retina. Single strand DNA/RNA immunoprecipitation followed by sequencing (DRIP-Seq) was performed in retinas from four adult mice (P28). Briefly, Genomic DNA from one retina was enzymatically digested, treated with RNase III with or without RNase H and immunoprecipitated with the DNA/RNA hybrid antibody S9.6.
创建时间:
2025-03-19



