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Janissen, R. (author), Barth, R. (author), Polinder, M.L. (author), van der Torre, J. (author), Dekker, C. (author)
Transcription-coupled supercoiling of DNA is a key factor in chromosome compaction and the regulation of genetic processes in all domains of life. It has become common knowledge that, during transcription, the DNA-dependent RNA polymerase (RNAP) induces positive supercoiling ahead of it (downstream) and negative supercoils in its wake ...
journal article 2024
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Barth, R. (author), Pradhan, B. (author), Kim, E. (author), Davidson, Iain F. (author), van der Torre, J. (author), Peters, Jan‑Michael ‑M (author), Dekker, C. (author)
Correction to: Scientific Reports, published online 19 May 2023 The original version of this Article contained an error in Figure 1b-1, where the fore- and background order of the strands “DNA” (in black) and “Brn1 Kleisin” (in green), were switched. The original Figure 1 and accompanying legend appear below. (Figure presented.) Description...
journal article 2023
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Tišma, M. (author), Janissen, R. (author), Antar, Hammam (author), Martin Gonzalez, A. (author), Barth, R. (author), Beekman, T.G.T. (author), van der Torre, J. (author), Michieletto, Davide (author), Gruber, Stephan (author), Dekker, C. (author)
In most bacteria, chromosome segregation is driven by the ParABS system where the CTPase protein ParB loads at the parS site to trigger the formation of a large partition complex. Here, we present in vitro studies of the partition complex for Bacillus subtilis ParB, using single-molecule fluorescence microscopy and AFM imaging to show that...
journal article 2023
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Davidson, Iain F. (author), Barth, R. (author), Zaczek, Maciej (author), van der Torre, J. (author), Tang, Wen (author), Nagasaka, Kota (author), Janissen, R. (author), Kerssemakers, J.W.J. (author), Wutz, Gordana (author), Dekker, C. (author), Peters, Jan Michael (author)
In eukaryotes, genomic DNA is extruded into loops by cohesin<sup>1</sup>. By restraining this process, the DNA-binding protein CCCTC-binding factor (CTCF) generates topologically associating domains (TADs)<sup>2,3</sup> that have important roles in gene regulation and recombination during development and disease<sup>1,4–7</sup>. How CTCF...
journal article 2023
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Barth, R. (author), Pradhan, B. (author), Kim, E. (author), Davidson, Iain F. (author), van der Torre, J. (author), Peters, Jan Michael (author), Dekker, C. (author)
DNA loop extrusion by structural-maintenance-of-chromosome (SMC) complexes has emerged as a primary organizing principle for chromosomes. The mechanism by which SMC motor proteins extrude DNA loops is still unresolved and much debated. The ring-like structure of SMC complexes prompted multiple models where the extruded DNA is topologically or...
journal article 2023
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Tišma, M. (author), Panoukidou, Maria (author), Antar, Hammam (author), Soh, Young Min (author), Barth, R. (author), Pradhan, B. (author), Barth, A. (author), van der Torre, J. (author), Dekker, C. (author)
The ParABS system is essential for prokaryotic chromosome segregation. After loading at parS on the genome, ParB (partition protein B) proteins rapidly redistribute to distances of ~15 kilobases from the loading site. It has remained puzzling how this large-distance spreading can occur along DNA loaded with hundreds of proteins. Using in...
journal article 2022
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Pradhan, B. (author), Barth, R. (author), Kim, E. (author), van Laar, T. (author), Yang, W.W.W. (author), Ryu, J.K. (author), van der Torre, J. (author), Peters, Jan Michael (author), Dekker, C. (author)
Ring-shaped structural maintenance of chromosomes (SMC) complexes like condensin and cohesin extrude loops of DNA. It remains, however, unclear how they can extrude DNA loops in chromatin that is bound with proteins. Here, we use in vitro single-molecule visualization to show that nucleosomes, RNA polymerase, and dCas9 pose virtually no...
journal article 2022
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