Integrative modeling of the genome structure and dynamics in fission yeast
| Journal | Proc. Natl. Acad. Sci. U. S. A. (2026) 123(37) e2612002123 |
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| Title | Integrative modeling of the genome structure and dynamics in fission yeast |
| Laboratory | Nuclear Dynamics Group |
Abstract
Genome organization in the nucleus is highly structured and dynamic. Recent advances in genomic technology have enabled the measurement of genome-wide architecture and locus-specific motion, yielding contact maps and live-cell trajectories. However, these outcomes are derived from different modalities and are not directly comparable, with their quantitative integration being a key challenge. Here we establish a genome-wide live-cell imaging platform in fission yeast Schizosaccharomyces pombe, tracking 131 chromosomal loci, along with the spindle pole body (SPB) and nucleolus, to construct a quantitative map of locus dynamics. By integrating these dynamics with contact data through polymer modeling of Hi-C data, we build a physics-based "digital twin" of the S. pombe genome consistent with the spatiotemporal dynamics of interphase chromatin. We validate it against genome-wide mobility patterns and known architectural features, including centromere and telomere clustering. The model also identifies distinct dynamical regimes: centromere- and telomere-proximal loci relax within ~150 s, whereas the remaining loci relax within ~70 s. We measure semiperiodic dynamics of SPB motion, including a characteristic peak near 225 s and 1/f fluctuations. We use the model with SPB-directed forcing to show how these low-frequency components propagate through the genome to drive genome-wide chromatin displacements. Together, this predictive physics-based modeling framework integrates genome structure and dynamics to reveal how nuclear mechanical driving forces shape chromosome motion, linking mechanically driven chromatin responses to genome maintenance and regulation.
| Authors | Soya Shinkai (1, 2), Toshinori Namba (2), Takeshi Sugawara (2), Soya Hagiwara (1), Shuichi Onami (1), Tokuko Haraguchi (3), Yasushi Hiraoka (3), Akinori Awazu (2, 4) , Masaru Ueno (2, 4), Shin-Ichi Tate (2, 4, 5)
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| PubMed | 42709822 |
