Ramirez-Salazar, E.; Slipicevic, A.; Juraleviciute, M.; Li, L.; Harland, M.; O’Shea, S.; Field, S.; Newton-Bishop, J.; Herlyn, M.
Genotype-Encoded UV Sensitivity in iPSC-Derived Human Melanocytes Reveals MX2 as a Physiological Amplifier of p53/p38-Mediated DNA Damage Signaling. Int. J. Mol. Sci. 2026, 27, 2617.
https://doi.org/10.3390/ijms27062617
AMA Style
Ramirez-Salazar E, Slipicevic A, Juraleviciute M, Li L, Harland M, O’Shea S, Field S, Newton-Bishop J, Herlyn M.
Genotype-Encoded UV Sensitivity in iPSC-Derived Human Melanocytes Reveals MX2 as a Physiological Amplifier of p53/p38-Mediated DNA Damage Signaling. International Journal of Molecular Sciences. 2026; 27(6):2617.
https://doi.org/10.3390/ijms27062617
Chicago/Turabian Style
Ramirez-Salazar, Eric, Ana Slipicevic, Marina Juraleviciute, Ling Li, Mark Harland, Sally O’Shea, Sinead Field, Julia Newton-Bishop, and Meenhard Herlyn.
2026. "Genotype-Encoded UV Sensitivity in iPSC-Derived Human Melanocytes Reveals MX2 as a Physiological Amplifier of p53/p38-Mediated DNA Damage Signaling" International Journal of Molecular Sciences 27, no. 6: 2617.
https://doi.org/10.3390/ijms27062617
APA Style
Ramirez-Salazar, E., Slipicevic, A., Juraleviciute, M., Li, L., Harland, M., O’Shea, S., Field, S., Newton-Bishop, J., & Herlyn, M.
(2026). Genotype-Encoded UV Sensitivity in iPSC-Derived Human Melanocytes Reveals MX2 as a Physiological Amplifier of p53/p38-Mediated DNA Damage Signaling. International Journal of Molecular Sciences, 27(6), 2617.
https://doi.org/10.3390/ijms27062617