R-loop landscapes in the developing human brain are linked to neural differentiation and cell-type specific transcription

人类大脑发育过程中的 R 环路景观与神经分化和细胞类型特异性转录有关

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作者:Elizabeth A LaMarca, Atsushi Saito, Amara Plaza-Jennings, Sergio Espeso-Gil, Allyse Hellmich, Michael B Fernando, Behnam Javidfar, Will Liao, Molly Estill, Kayla Townsley, Anna Florio, James E Ethridge, Catherine Do, Benjamin Tycko, Li Shen, Atsushi Kamiya, Nadejda M Tsankova, Kristen J Brennand, Sc

Abstract

Here, we construct genome-scale maps for R-loops, three-stranded nucleic acid structures comprised of a DNA/RNA hybrid and a displaced single strand of DNA, in the proliferative and differentiated zones of the human prenatal brain. We show that R-loops are abundant in the progenitor-rich germinal matrix, with preferential formation at promoters slated for upregulated expression at later stages of differentiation, including numerous neurodevelopmental risk genes. RNase H1-mediated contraction of the genomic R-loop space in neural progenitors shifted differentiation toward the neuronal lineage and was associated with transcriptomic alterations and defective functional and structural neuronal connectivity in vivo and in vitro. Therefore, R-loops are important for fine-tuning differentiation-sensitive gene expression programs of neural progenitor cells.

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