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Disrupting LXRα phosphorylation promotes FoxM1 expression and modulates atherosclerosis by inducing macrophage proliferation (2018)
Journal Article
Gage, M. C., Becares, N., Louie, R., Waddington, K. E., Zhang, Y., Tittanegro, T. H., …Pineda-Torra, I. (2018). Disrupting LXRα phosphorylation promotes FoxM1 expression and modulates atherosclerosis by inducing macrophage proliferation. Proceedings of the National Academy of Sciences, 115(28), E6556-E6565. https://doi.org/10.1073/pnas.1721245115

Macrophages are key immune cells for the initiation and development of atherosclerotic lesions. However, the macrophage regulatory nodes that determine how lesions progress in response to dietary challenges are not fully understood. Liver X receptors... Read More about Disrupting LXRα phosphorylation promotes FoxM1 expression and modulates atherosclerosis by inducing macrophage proliferation.

Disrupting myeloid-specific LXRa phosphorylation promotes FoxM1 expression and modulates atherosclerosis by inducing macrophage proliferation (2018)
Journal Article
Gage, M. C., Becares, N., Louie, R., Waddington, K. E., Zhang, Y., Tittanegro, T. H., …Pineda-Torra, I. (2018). Disrupting myeloid-specific LXRa phosphorylation promotes FoxM1 expression and modulates atherosclerosis by inducing macrophage proliferation. https://doi.org/10.1073/pnas.1721245115

Macrophages are key immune cells for the initiation and development of atherosclerotic lesions. However, the macrophage regulatory nodes that determine how lesions progress in response to dietary challenges are not fully understood. Liver X receptors... Read More about Disrupting myeloid-specific LXRa phosphorylation promotes FoxM1 expression and modulates atherosclerosis by inducing macrophage proliferation.