Spatially coordinated heterochromatinization of distal short tandem repeats in fragile X syndrome
Zhou, L.; Ge, C.; Malachowski, T.; Kim, J. H.; Chandradoss, K. R.; Su, C.; Wu, H.; Rojas, A.; Wallace, O.; Titus, K. R.; Gong, W.; Phillips-Cremins, J. E.
Show abstract
Short tandem repeat (STR) instability is causally linked to pathologic transcriptional silencing in a subset of repeat expansion disorders. In fragile X syndrome (FXS), instability of a single CGG STR tract is thought to repress FMR1 via local DNA methylation. Here, we report the acquisition of more than ten Megabase-sized H3K9me3 domains in FXS, including a 5-8 Megabase block around FMR1. Distal H3K9me3 domains encompass synaptic genes with STR instability, and spatially co-localize in trans concurrently with FMR1 CGG expansion and the dissolution of TADs. CRISPR engineering of mutation-length FMR1 CGG to normal-length preserves heterochromatin, whereas cut-out to pre-mutation-length attenuates a subset of H3K9me3 domains. Overexpression of a pre-mutation-length CGG de-represses both FMR1 and distal heterochromatinized genes, indicating that long-range H3K9me3-mediated silencing is exquisitely sensitive to STR length. Together, our data uncover a genome-wide surveillance mechanism by which STR tracts spatially communicate over vast distances to heterochromatinize the pathologically unstable genome in FXS. One-Sentence SummaryHeterochromatinization of distal synaptic genes with repeat instability in fragile X is reversible by overexpression of a pre-mutation length CGG tract.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Primordial germ cell DNA demethylation and development require DNA translesion synthesis. 96%
- ZMYND11 Functions in Bimodal Regulation of Latent Genes and Brain-like Splicing to Safeguard Corticogenesis 96%
- Neuron-Specific Chromosomal Megadomain Organization Is Adaptive To Recent Retrotransposon Expansions 95%
Similar papers in this journal
- Chromatin and gene-regulatory dynamics of the developing human cerebral cortex at single-cell resolution 95%
- Xist-seeded nucleation sites form local concentration gradients of silencing proteins to inactivate the X-chromosome 95%
- Massively parallel assessment of human variants with base editor screens 95%
Similar papers in this journal
- XLID Syndrome Gene Med12 Promotes Ig Isotype Switching through Chromatin Modification and Enhancer RNA regulation 96%
- A transposase-derived gene required for human brain development 96%
- Primate-restricted KRAB zinc finger proteins and target retrotransposons control gene expression in human neurons 96%
Similar papers in this journal
- Binding domain mutations provide insight into CTCF's relationship with chromatin and its contribution to gene regulation 95%
- The human Y and inactive X chromosomes similarly modulate autosomal gene expression 94%
- Single nucleus multi-omics links human cortical cell regulatory genome diversity to disease risk variants 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.