bioRxiv · 10.1101/2020.04.29.067488
Post-mitotic expansion of cell nuclei requires ACTN4-mediated nuclear actin filament bundling
Abstract
The actin cytoskeleton operates in a multitude of cellular processes including cell shape and migration, mechanoregulation, as well as membrane or organelle dynamics. However, its filamentous properties and functions inside the mammalian cell nucleus are less well explored. We previously described transient actin assembly at mitotic exit that promotes nuclear expansion during chromatin decondensation. Here, we identify non-muscle ACTN4 as a critical regulator to facilitate F-actin formation, reorganization and bundling during postmitotic nuclear expansion. ACTN4 binds to nuclear actin filaments and ACTN4 clusters associate with nuclear F-actin in a highly dynamic fashion. ACTN4 but not ACTN1 is required for proper postmitotic nuclear volume expansion, mediated by its actin binding domain. Using super-resolution imaging to quantify actin filament numbers and widths in individual nuclei we find that ACTN4 is necessary for postmitotic nuclear actin assembly and actin filament bundling. Our findings uncover a nuclear cytoskeletal function for ACTN4 to control nuclear size during mitotic cell division.
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Grosse, R., Krippner, S., Winkelmeier, J., Schwan, C., Knerr, J., Virant, D., Endesfelder, U.. 2020-05-01. Post-mitotic expansion of cell nuclei requires ACTN4-mediated nuclear actin filament bundling. https://doi.org/10.1101/2020.04.29.067488
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