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Molecular Cell|December 9, 2008
COP1 and ELF3 control circadian function and photoperiodic flowering by regulating GI stabilityJae-Woong Yu, Vicente Rubio, Na-Yeoun Lee, et al.Journal of Inherited Metabolic Disease|December 16, 2011
Understanding pyrroline-5-carboxylate synthetase deficiency: clinical, molecular, functional, and expression studies, structure-based analysis, and novel therapy with arginineDiego Martinelli, Johannes Häberle, Vicente Rubio, et al.The Plant Cell|August 1, 2019
Arabidopsis ALIX Regulates Stomatal Aperture and Turnover of Abscisic Acid ReceptorsMarta García-León, Laura Cuyas, Diaa Abd El-Moneim, et al.Plant, Cell & Environment|May 14, 2024
The E3 ubiquitin ligase COP1 regulates salt tolerance via GIGANTEA degradation in rootsMyung Geun Ji, Dhruba Khakurel, Ji-Won Hwang, et al.Proceedings of the National Academy of Sciences of the United States of America|May 23, 2018
Epigenetic switch from repressive to permissive chromatin in response to cold stressJunghoon Park, Chae Jin Lim, Mingzhe Shen, et al.Blood|April 16, 2010
Risk-adapted treatment of acute promyelocytic leukemia based on all-trans retinoic acid and anthracycline with addition of cytarabine in consolidation therapy for high-risk patients: further improvements in treatment outcomeMiguel A Sanz, Pau Montesinos, Chelo Rayón, et al.Molecular Plant|September 7, 2019
Rheostatic Control of ABA Signaling through HOS15-Mediated OST1 DegradationAkhtar Ali, Jae Kyoung Kim, Masood Jan, et al.Elife|September 8, 2018
DET1-mediated degradation of a SAGA-like deubiquitination module controls H2Bub homeostasisAmr Nassrallah, Martin Rougée, Clara Bourbousse, et al.Haematologica|July 18, 2009
Central nervous system involvement at first relapse in patients with acute promyelocytic leukemia treated with all-trans retinoic acid and anthracycline monochemotherapy without intrathecal prophylaxisPau Montesinos, Joaquín Díaz-Mediavilla, Guillermo Debén, et al.ACS Omega|December 1, 2025
A Tetrapodal Tryptophan Derivative with Multiple Exposed Free Carboxylic Acids Blocks Host Cell Entry of Omicron SARS-Cov-2 and Respiratory Syncytial VirusOlaia Martí-Marí, Marta Moreno-Simoni, Ana Isabel Avilés-Alía, et al.Pageof 16