Al-khayyat, W.; Pirkkanen, J.; Dougherty, J.; Laframboise, T.; Dickinson, N.; Khaper, N.; Lees, S.J.; Mendonca, M.S.; Boreham, D.R.; Tai, T.C.;
et al. Overexpression of FRA1 (FOSL1) Leads to Global Transcriptional Perturbations, Reduced Cellular Adhesion and Altered Cell Cycle Progression. Cells 2023, 12, 2344.
https://doi.org/10.3390/cells12192344
AMA Style
Al-khayyat W, Pirkkanen J, Dougherty J, Laframboise T, Dickinson N, Khaper N, Lees SJ, Mendonca MS, Boreham DR, Tai TC,
et al. Overexpression of FRA1 (FOSL1) Leads to Global Transcriptional Perturbations, Reduced Cellular Adhesion and Altered Cell Cycle Progression. Cells. 2023; 12(19):2344.
https://doi.org/10.3390/cells12192344
Chicago/Turabian Style
Al-khayyat, Wuroud, Jake Pirkkanen, Jessica Dougherty, Taylor Laframboise, Noah Dickinson, Neelam Khaper, Simon J. Lees, Marc S. Mendonca, Douglas R. Boreham, Tze Chun Tai,
and et al. 2023. "Overexpression of FRA1 (FOSL1) Leads to Global Transcriptional Perturbations, Reduced Cellular Adhesion and Altered Cell Cycle Progression" Cells 12, no. 19: 2344.
https://doi.org/10.3390/cells12192344
APA Style
Al-khayyat, W., Pirkkanen, J., Dougherty, J., Laframboise, T., Dickinson, N., Khaper, N., Lees, S. J., Mendonca, M. S., Boreham, D. R., Tai, T. C., Thome, C., & Tharmalingam, S.
(2023). Overexpression of FRA1 (FOSL1) Leads to Global Transcriptional Perturbations, Reduced Cellular Adhesion and Altered Cell Cycle Progression. Cells, 12(19), 2344.
https://doi.org/10.3390/cells12192344