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Deinococcus radiodurans HU: a versatile architect of nucleoid structure and plasticity

Bernhard, H.; De Bonis, S.; Banneville, A.-S.; Bacia-Verloop, M.; Gaifas, L.; Le Bon, B.; Wolff, G.; Hall, M.; Gonzalez-Aleman, R.; Dehez, F.; Gutsche, I.; Timmins, J.

2026-08-18 microbiology
10.64898/2026.08.18.745388 bioRxiv
Show abstract

Nucleoid-associated proteins are known to compact and organise bacterial genomes, but how their local DNA binding shapes higher-order chromatin architecture remains unclear. Using in vitro and in situ approaches, we investigated how Deinococcus radiodurans HU (DrHU) orchestrates nucleoid organisation. DrHU engages DNA through two synergistic binding modes: high-affinity {beta}-hairpin-mediated stabilisation of DNA loops and low-affinity, multivalent interaction via its N-terminal tail, driving parallel, uniformly spaced DNA alignment. In vitro, DrHU organises supercoiled plasmid DNA into regular 2D lattices of double-spirals, while in situ, UV-C light induces a nucleoid transition from a loose DNA mesh to a blue liquid crystalline phase characterised by DNA swirls. The striking structural similarity and shared inter-filament spacing of these two arrangements suggests that DrHU plays a pivotal role in genome organisation through its versatile binding properties that enable DNA loop stabilisation, protection and DNA bridging, linking molecular interactions to 3D genome ordering and stress-induced remodelling.

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