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Ataei, L.

Publications and source records attributed to Ataei, L..

2 recordsLinked to original sources

Alpha satellite RNA marks the perinucleolar compartment and represses ribosomal RNA expression in naïve human embryonic stem cells

While most newly synthesized RNA is exported to the cytoplasm, a portion of non-coding RNA is retained in the nucleus and remains highly associated with chromatin. The strong binding of this RNA fraction to insoluble chromatin impairs its recovery in standard transcriptomic studies. Therefore, the landscape and potential functions of chromatin-associated RNAs are poorly understood. Recent studies indicate that chromatin-associated transcripts can have regulatory roles, particularly during mammalian development. Here we compare the dynamics of cytoplasmic versus chromatin-bound transcriptomes of naive and primed human embryonic stem cells (hESCs), as well as fibroblasts. We found a remarkable enrichment for RNA transcribed from alpha satellite repeat (ALR) in the chromatin fraction of naive hESCs, compared to primed hESCs. The co-localization and interaction of ALR RNA with Polypyrimidine Tract Binding Protein 1 (PTBP1) protein indicate that ALR RNA foci mark the perinucleolar compartment (PNC), a nuclear sub-compartment previously thought to be exclusive to cancer cells. Knockdown of ALR RNA leads to dispersion of PTBP1 foci, up-regulation of ribosomal RNA and global hypertranscription in naive hESCs. In contrast, loss of PTBP1 does not disturb ALR RNA localization, indicating that ALR is upstream in the hierarchy of organization of the PNC in hESCs. These results reveal a role for ALR RNA in nuclear compartmentalization and tuning rRNA synthesis in naive hESCs. Moreover, this study opens new avenues to dissect the function of ALR RNA and the PNC in cancer contexts.

genomics↗

LINE1 promotes nuclear compartmentalization to repress the 8-cell state in embryonic stem cells

The family of LINE1 transposable elements underwent a massive expansion in mammalian genomes. While traditionally viewed as a mutagenic selfish element, recent studies point to roles for LINE1 in early mouse development, T cell quiescence and neurogenesis. Here we show that human LINE1 RNA is essential for self-renewal and identity of human embryonic stem cells (hESCs). Silencing of LINE1 using either antisense oligonucleotides or CRISPR interference in naive hESCs leads to a strong induction of 8C-like cells (8CLCs). We found that genes derepressed upon LINE1 KD are not uniformly distributed across the genome, with an enrichment for chromosome 19, which includes key markers of the 8C state such as TPRX1. Silencing of TPRX1, but not other putative 8C regulators p53 or H3.XY, suppresses the induction of the 8C program in LINE1 KD hESCs. We found that LINE1 RNA is preferentially localized to the lamina and periphery of the nucleolus in hESCs. Sequencing of Lamina-Associated Domains (LADs) and Nucleolus-Associated Domains (NADs) reveals a preferential association of chromosome 19 with NADs in hESCs. However, 8CLCs have a distinct nucleolar morphology and a lower association of chromosome 19 and TPRX1 loci with the nucleolus relative to naive and primed hESCs, suggesting a role for nucleolar dynamics in the 8CLC-hESC transition. In agreement, LINE1 KD leads to disruption of nucleolar architecture with signs of nucleolar stress. Independent perturbations of the nucleolus induce the 8C program in hESCs. Genes induced by LINE1 KD are enriched for targets of Polycomb Repressive Complex (PRC2), and inhibition of PRC2 leads to a strong induction of 8C genes. Our results indicate that LINE1 coordinates nuclear compartmentalization and chromatin-mediated gene repression to prevent developmental reversion of hESCs. HighlightsO_LIKnockdown of LINE1 induces TPRX1-dependent emergence of 8C-like cells in hESCs. C_LIO_LIGenes de-repressed upon LINE1 KD are enriched for Chr 19 and PRC2 targets. C_LIO_LI8CLCs display dissociation of Chromosome 19 from the nucleolus. C_LIO_LIDisruption of the nucleolus or inhibition of PRC2 strongly induce the 8C program. C_LI

developmental biology↗