Locations of consecutive G·C base-pairs direct genomic nucleosome positioning
Kato, H.; Fuse, T.; Sato, S.; Kurihara, Y.; Kagawa, W.; Urano, T.; Ohkawa, Y.; Kurumizaka, H.; Shimizu, M.
Show abstract
The nucleosome is a structural and functional subunit of chromatin, and its positioning and dynamics in the eukaryotic genomes serves as a key platform for gene regulation. Here, we determine the positions of fully wrapped nucleosomes across the yeast genome by chemical mapping through the histone H2A-A122C residue, which cleaves near the DNA entry/exit sites. This approach reveals the most refined sequence-dependent profile of nucleosomes reported to date. Comparison of H2A-A122C with the H3-Q85C and H4-S47C methods clearly shows a sequence preference for the chemical cleavage site, and mapping results suggest that the nucleosome locations are dynamic in vivo. More importantly, we find that the depletion of CC and GG dinucleotides at nucleotide positions -11 to -9 and +9 to +11 bp, respectively, from the nucleosome dyad position (0) is inextricably associated with the enrichment of AA/AT/TA/TT dinucleotides in both yeast and mouse genomes. Introducing consecutive C*G base pairs to the corresponding sites in the 601 sequence shifts the nucleosomes to less frequent positions without altering thermal stability, implying a structural constraint imposed by DNA sequence. Thus, CC and GG dinucleotides in the major groove blocks at superhelix locations (SHL) -1.0 and +1.0, respectively, destabilize histone-DNA interactions, serving as intrinsic determinants of nucleosome positioning in eukaryotic genomes.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Nucleosome-binding by TP53, TP63, and TP73 is determined by the composition, accessibility, and helical orientation of their binding sites 96%
- Spatiotemporal kinetics of CAF-1-dependent chromatin maturation ensures transcription fidelity during S-phase 96%
- Genome-wide distribution of Rad26 and Rad1-Rad10 reveals their relationship with Mediator and RNA polymerase II 96%
Similar papers in this journal
- Local states of chromatin compaction at transcription start sites control transcription levels 95%
- DNA elements tether canonical Polycomb Repressive Complex 1 to human genes 95%
- Suppression of liquid-liquid phase separation by 1,6-hexanediol partially compromises the 3D genome organization in living cells 95%
Similar papers in this journal
- BET family members Bdf1/2 modulate global transcription initiation and elongation in Saccharomyces cerevisiae 95%
- High-resolution mapping of DNA alkylation damage and base excision repair at yeast transcription factor binding sites 95%
- Chromatin structure-dependent histone incorporation revealed by a genome-wide deposition assay 95%
Similar papers in this journal
- Chromatin landscape of budding yeast acquiring H3K9 methylation and its reader molecule HP1 95%
- Multiple HP1 binding motifs in SUV420H2 heterochromatic targeting module 92%
- Meiotic DSB-independent role of protein phosphatase 4 in Hop1 assembly to promote meiotic chromosome axis formation in budding yeast 91%
Similar papers in this journal
- Nucleosome positioning on large tandem DNA repeats of the '601' sequence engineered in Saccharomyces cerevisiae 92%
- Modulation of archaeal hypernucleosome structure and stability by Mg2+ 92%
- Different low-complexity regions of SFPQ play distinct roles in the formation of biomolecular condensates 91%
"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.