Large intra-chromosome heterogeneity leads to emergent nonlinear mechanics - data and analysis
English
Netherlands, Burgum
Tilburg University

数据描述

Large intra-chromosome heterogeneity leads to emergent nonlinear mechanics - data and analysis

The dataset contains optical tweezers and STED/confocal fluorescence data on human mitotic chromosomes, providing experimental information to support a study on intra-chromosome heterogeneity leading to emergent nonlinear mechanics. It includes a Jupyter notebook for data analysis and a ZIP archive with files to reproduce figures from the associated publication, with a publication date of October 2025.

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Large intra-chromosome heterogeneity leads to emergent nonlinear mechanics

Constantijn van der SmagtJanni HarjuTianlong ManAndreas S. BiebricherTinka V. M. Clement9
Nature Physics
2026
2026/8/7
00 p.1-8
Faithful chromosome segregation during mitosis relies on the formation of compact, individualized chromosomes that withstand drag and spindle-generated forces. Structural failure of mitotic chromosomes under force can disrupt the distribution of genetic material to daughter cells, causing aneuploidy...
Biological fluorescenceBiological physicsOptical manipulation and tweezersSingle-molecule biophysicsSuper-resolution microscopy
10.1038/S41567-026-03407-Z
ISSN:1745-2473