Single-fiber nucleosome density shapes the regulatory output of a mammalian chromatin remodeling enzyme
Abdulhay, N. J.; Hsieh, L. J.; McNally, C. P.; Ketavarapu, M.; Kasinathan, S.; Nanda, A. S.; Ostrowski, M. S.; Wu, K.; Moore, C. M.; Goodarzi, H.; Narlikar, G. J.; Ramani, V.
Show abstract
ATP-dependent chromatin remodelers regulate the DNA accessibility required of virtually all nuclear processes. Biochemical studies have provided insight into remodeler action at the nucleosome level, but how these findings translate to activity on chromatin fibers in vitro and in vivo remains poorly understood. Here, we present a massively multiplex single-molecule platform allowing high-resolution mapping of nucleosomes on fibers assembled on mammalian genomic sequences. We apply this method to distinguish between competing models for chromatin remodeling by the essential ISWI ATPase SNF2h: linker-length-dependent dynamic positioning versus fixed-linker-length static clamping. Our single-fiber data demonstrate that SNF2h operates as a density-dependent, length-sensing chromatin remodeler whose ability to decrease or increase DNA accessibility depends on single-fiber nucleosome density. In vivo, this activity manifests as different regulatory modes across epigenomic domains: at canonically-defined heterochromatin, SNF2h generates evenly-spaced nucleosome arrays of multiple nucleosome repeat lengths; at SNF2h-dependent accessible sites, SNF2h slides nucleosomes to increase accessibility of motifs for the essential transcription factor CTCF. Overall, our generalizable approach provides molecularly-precise views of the processes that shape nuclear physiology. Concurrently, our data illustrate how a mammalian chromatin remodeling enzyme can effectively sense nucleosome density to induce diametrically-opposed regulatory effects within the nucleus.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A genome-wide nucleosome-resolution map of promoter-centered interactions in human cells corroborates the enhancer-promoter looping model 97%
- Characterization of sequence determinants of enhancer function using natural genetic variation 97%
- The chromatin remodeller CHD4 regulates transcription factor binding to both prevent activation of silent enhancers and maintain active regulatory elements 97%
Similar papers in this journal
- Single molecule occupancy patterns of transcription factors reveal determinants of cooperative binding in vivo 98%
- Catalytic and non-catalytic mechanisms of histone H4 lysine 20 methyltransferase SUV420H1 96%
- Basic helix-loop-helix pioneer factors interact with the histone octamer to invade nucleosomes and generate nucleosome depleted regions 96%
Similar papers in this journal
- Human DNA replication initiation sites are specified epigenetically by oxidation of 5-methyl-deoxycytidine 96%
- Locus-specific chromatin profiling of evolutionarily young transposable elements 96%
- Simultaneous Profiling of Chromatin Accessibility and DNA Methylation in Complete Plant Genomes Using Long-Read Sequencing 96%
Similar papers in this journal
- Identifying transcription factor-bound gene activators and silencers in the chromatin accessible human genome using ATAC-STARR-seq 97%
- Ultra-long-range interactions between active regulatory elements 97%
- MYC overexpression leads to increased chromatin interactions at superenhancers and c-Myc binding sites 96%
"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.