Centre for Integrative Genomics

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Publications | Phd and Masters theses

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13 publications

2023 | 2022 | 2021 | 2020 | 2019 | 2018 |
 
Hepatic lipid overload triggers biliary epithelial cell activation via E2Fs.
Yildiz E., El Alam G., Perino A., Jalil A., Denechaud P.D., Huber K., Fajas L., Auwerx J., Sorrentino G., Schoonjans K., 2023/03/06. eLife, 12 pp. e81926. Peer-reviewed.
Oxidative stress-induced FAK activation contributes to uterine serous carcinoma aggressiveness.
Lopez-Mejia I.C., Pijuan J., Navaridas R., Santacana M., Gatius S., Velasco A., Castellà G., Panosa A., Cabiscol E., Pinyol M. et al., 2023/01. Molecular oncology, 17 (1) pp. 98-118. Peer-reviewed.
Adipocyte-specific CDK7 ablation leads to progressive loss of adipose tissue and metabolic dysfunction.
Chen Y., Fernandez E.A., Roger C., Lopez-Mejia I.C., Fajas Coll L., Ji H., 2022/06. FEBS letters, 596 (11) pp. 1434-1444. Peer-reviewed.
 
The multifunctional protein E4F1 links P53 to lipid metabolism in adipocytes.
Lacroix M., Linares L.K., Rueda-Rincon N., Bloch K., Di Michele M., De Blasio C., Fau C., Gayte L., Blanchet E., Mairal A. et al., 2021/12/02. Nature communications, 12 (1) p. 7037. Peer-reviewed.
The multifaceted role of cell cycle regulators in the coordination of growth and metabolism.
Huber K., Mestres-Arenas A., Fajas L., Leal-Esteban L.C., 2021/06. The FEBS journal, 288 (12) pp. 3813-3833. Peer-reviewed.
 
Tumor regression and resistance mechanisms upon CDK4 and RAF1 inactivation in KRAS/P53 mutant lung adenocarcinomas.
Esteban-Burgos L., Wang H., Nieto P., Zheng J., Blanco-Aparicio C., Varela C., Gómez-López G., Fernández-García F., Sanclemente M., Guerra C. et al., 2020/09/29. Proceedings of the National Academy of Sciences of the United States of America, 117 (39) pp. 24415-24426. Peer-reviewed.
 
Hypothalamic CDK4 regulates thermogenesis by modulating sympathetic innervation of adipose tissues.
Castillo-Armengol J., Barquissau V., Geller S., Ji H., Severi I., Venema W., Fenandez E.A., Moret C., Huber K., Leal-Esteban L.C. et al., 2020/09/03. EMBO reports, 21 (9) pp. e49807. Peer-reviewed.
 
CDK7 Mediates the Beta-Adrenergic Signaling in Thermogenic Brown and White Adipose Tissues.
Ji H., Chen Y., Castillo-Armengol J., Dreos R., Moret C., Niederhäuser G., Delacuisine B., Lopez-Mejia I.C., Denechaud P.D., Fajas L., 2020/06/26. iScience, 23 (6) p. 101163. Peer-reviewed.
 
CDK4 Regulates Lysosomal Function and mTORC1 Activation to Promote Cancer Cell Survival.
Martínez-Carreres L., Puyal J., Leal-Esteban L.C., Orpinell M., Castillo-Armengol J., Giralt A., Dergai O., Moret C., Barquissau V., Nasrallah A. et al., 2019/10/15. Cancer research, 79 (20) pp. 5245-5259. Peer-reviewed.
 
Inter-organ communication: a gatekeeper for metabolic health.
Castillo-Armengol J., Fajas L., Lopez-Mejia I.C., 2019/09. EMBO reports, 20 (9) pp. e47903. Peer-reviewed.
E2F1 promotes hepatic gluconeogenesis and contributes to hyperglycemia during diabetes.
Giralt A., Denechaud P.D., Lopez-Mejia I.C., Delacuisine B., Blanchet E., Bonner C., Pattou F., Annicotte J.S., Fajas L., 2018/05. Molecular metabolism, 11 pp. 104-112. Peer-reviewed.
 
Role of cell cycle regulators in adipose tissue and whole body energy homeostasis.
Lopez-Mejia I.C., Castillo-Armengol J., Lagarrigue S., Fajas L., 2018/03. Cellular and molecular life sciences, 75 (6) pp. 975-987. Peer-reviewed.
CDK4, a new metabolic sensor that antagonizes AMPK.
Fajas L., Lopez-Mejia I.C., 2018. Molecular & cellular oncology, 5 (5) pp. e1409862. Peer-reviewed.
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