Connolly, CaitlinTakahashi, SaoriMiura, HisashiHiratani, IchiroGilbert, NickDonaldson, AnneHiraga, Shin-ichiro2022-12-102022-12-102022-01-24Connolly, C, Takahashi, S, Miura, H, Hiratani, I, Gilbert, N, Donaldson, A & Hiraga, S 2022, 'SAF-A promotes origin licensing and replication fork progression to ensure robust DNA replication', Journal of Cell Science, vol. 135, no. 2, jcs.258991. https://doi.org/10.1242/jcs.2589910021-9533ORCID: /0000-0002-8722-3869/work/104792188https://hdl.handle.net/2164/19713Funding CC was supported by a BBSRC EASTBIO Doctoral Training programme PhD studentship. SH was supported by Daiwa Anglo-Japanese Foundation 812 (12928/13746). Work in the Hiraga-Donaldson lab supported by Cancer Research UK awards C1445/A19059 and DRCPGM\100013. NG is supported by Medical Research Council (MC_UU_00007/13) Acknowledgements Information for SAF-A expression was obtained at The Cancer Genome Atlas TCGA) Research Network (https://www.cancer.gov/tcga). We thank Dr Ryu-suke Nozawa for help in the early stage of the project, and Professor Julian Blow for advice on the 3D licensing assay. Thanks to the staff of the Iain Fraser Cytometry Centre, and Microscopy and Histology facility at the University of Aberdeen.157656780engSDG 3 - Good Health and Well-beingDNA replicationChromatinReplication stressR MedicineCancer Research UKC1445/A19059DRCPGM\100013Medical Research Council (MRC)MC_UU_00007/13Supplementary InformationRSAF-A promotes origin licensing and replication fork progression to ensure robust DNA replicationJournal article10.1242/jcs.2589911352