Replisome loading reduces chromatin motion independent of DNA synthesis

Author:

Pabba Maruthi Kumar1ORCID,Ritter Christian2,Chagin Vadim O13,Meyer Janis2,Celikay Kerem2,Stear Jeffrey H4,Loerke Dinah5,Kolobynina Ksenia1,Prorok Paulina1,Schmid Alice Kristin2,Leonhardt Heinrich6,Rohr Karl2,Cardoso M Cristina1ORCID

Affiliation:

1. Department of Biology, Technical University of Darmstadt

2. Biomedical Computer Vision Group, BioQuant, IPMB, Heidelberg University

3. Institute of Cytology RAS

4. EMBL Australia Node in Single Molecule Science, University of New South Wales

5. Department of Physics & Astronomy, University of Denver

6. Department of Biology II, Ludwig Maximilians University

Abstract

Chromatin has been shown to undergo diffusional motion, which is affected during gene transcription by RNA polymerase activity. However, the relationship between chromatin mobility and other genomic processes remains unclear. Hence, we set out to label the DNA directly in a sequence unbiased manner and followed labeled chromatin dynamics in interphase human cells expressing GFP-tagged proliferating cell nuclear antigen (PCNA), a cell cycle marker and core component of the DNA replication machinery. We detected decreased chromatin mobility during the S-phase compared to G1 and G2 phases in tumor as well as normal diploid cells using automated particle tracking. To gain insight into the dynamical organization of the genome during DNA replication, we determined labeled chromatin domain sizes and analyzed their motion in replicating cells. By correlating chromatin mobility proximal to the active sites of DNA synthesis, we showed that chromatin motion was locally constrained at the sites of DNA replication. Furthermore, inhibiting DNA synthesis led to increased loading of DNA polymerases. This was accompanied by accumulation of the single-stranded DNA binding protein on the chromatin and activation of DNA helicases further restricting local chromatin motion. We, therefore, propose that it is the loading of replisomes but not their catalytic activity that reduces the dynamics of replicating chromatin segments in the S-phase as well as their accessibility and probability of interactions with other genomic regions.

Funder

Deutsche Forschungsgemeinschaft

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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