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Sister-chromatid-sensitive Hi-C reveals the conformation of replicated human chromosomes

Michael Mitter, Catherina Gasser, Zsuzsanna Takacs, Christoph C. H. Langer, Wen Tang, Gregor Jessberger, Charlie T. Beales, Eva Neuner, Stefan L. Ameres, Jan-Michael Peters, View ORCID ProfileAnton Goloborodko, Ronald Micura, View ORCID ProfileDaniel W. Gerlich
doi: https://doi.org/10.1101/2020.03.10.978148
Michael Mitter
1Institute of Molecular Biotechnology of the Austrian Academy of Sciences, Vienna BioCenter, Vienna, Austria
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Catherina Gasser
2Institute of Organic Chemistry and Center for Molecular Biosciences (CMBI), Leopold-Franzens University, Innsbruck, Austria
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Zsuzsanna Takacs
1Institute of Molecular Biotechnology of the Austrian Academy of Sciences, Vienna BioCenter, Vienna, Austria
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Christoph C. H. Langer
1Institute of Molecular Biotechnology of the Austrian Academy of Sciences, Vienna BioCenter, Vienna, Austria
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Wen Tang
3Research Institute of Molecular Pathology, Vienna BioCenter, Vienna, Austria
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Gregor Jessberger
3Research Institute of Molecular Pathology, Vienna BioCenter, Vienna, Austria
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Charlie T. Beales
1Institute of Molecular Biotechnology of the Austrian Academy of Sciences, Vienna BioCenter, Vienna, Austria
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Eva Neuner
2Institute of Organic Chemistry and Center for Molecular Biosciences (CMBI), Leopold-Franzens University, Innsbruck, Austria
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Stefan L. Ameres
1Institute of Molecular Biotechnology of the Austrian Academy of Sciences, Vienna BioCenter, Vienna, Austria
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Jan-Michael Peters
3Research Institute of Molecular Pathology, Vienna BioCenter, Vienna, Austria
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Anton Goloborodko
1Institute of Molecular Biotechnology of the Austrian Academy of Sciences, Vienna BioCenter, Vienna, Austria
4Department of Physics, Massachusetts Institute of Technology, Cambridge, MA, USA
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  • ORCID record for Anton Goloborodko
Ronald Micura
2Institute of Organic Chemistry and Center for Molecular Biosciences (CMBI), Leopold-Franzens University, Innsbruck, Austria
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Daniel W. Gerlich
1Institute of Molecular Biotechnology of the Austrian Academy of Sciences, Vienna BioCenter, Vienna, Austria
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  • ORCID record for Daniel W. Gerlich
  • For correspondence: daniel.gerlich@imba.oeaw.ac.at
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Abstract

The three-dimensional organization of the genome supports regulated gene expression, recombination, DNA repair, and chromosome segregation during mitosis. Chromosome conformation capture (Hi-C)1–3 has revealed a complex genomic landscape of internal chromosome structures in vertebrate cells4–11 yet how sister chromatids topologically interact in replicated chromosomes has remained elusive due to their identical sequences. Here, we present sister-chromatid-sensitive Hi-C (scsHi-C) based on nascent DNA labeling with 4-thio-thymidine. Genome-wide conformation maps of human chromosomes revealed that sister chromatid pairs interact most frequently at the boundaries of topologically associating domains (TADs). Continuous loading of a dynamic cohesin pool separates sister-chromatid pairs inside TADs and is required to focus sister chromatid contacts at TAD boundaries. We identified a subset of TADs that are overall highly paired, characterized by facultative heterochromatin, as well as insulated topological domains that form separately within individual sister chromatids. The rich pattern of sister chromatid topologies and our scsHi-C technology will make it possible to dissect how physical interactions between identical DNA molecules contribute to DNA repair, gene expression, chromosome segregation, and potentially other biological processes.

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Posted March 11, 2020.
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Sister-chromatid-sensitive Hi-C reveals the conformation of replicated human chromosomes
Michael Mitter, Catherina Gasser, Zsuzsanna Takacs, Christoph C. H. Langer, Wen Tang, Gregor Jessberger, Charlie T. Beales, Eva Neuner, Stefan L. Ameres, Jan-Michael Peters, Anton Goloborodko, Ronald Micura, Daniel W. Gerlich
bioRxiv 2020.03.10.978148; doi: https://doi.org/10.1101/2020.03.10.978148
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Sister-chromatid-sensitive Hi-C reveals the conformation of replicated human chromosomes
Michael Mitter, Catherina Gasser, Zsuzsanna Takacs, Christoph C. H. Langer, Wen Tang, Gregor Jessberger, Charlie T. Beales, Eva Neuner, Stefan L. Ameres, Jan-Michael Peters, Anton Goloborodko, Ronald Micura, Daniel W. Gerlich
bioRxiv 2020.03.10.978148; doi: https://doi.org/10.1101/2020.03.10.978148

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