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Molecular Cell|April 2, 2021
Empowering MYC carcinogenesis via RNA loopsSuzanne G Mays, Juan ValcárcelBiorxiv : the Preprint Server for Biology|February 7, 2023
The nuclear receptor LRH-1 discriminates between ligands using distinct allosteric signaling circuitsSuzanne G Mays, David Hercules, Eric A Ortlund, et al.Protein Science : a Publication of the Protein Society|August 12, 2023
The nuclear receptor LRH-1 discriminates between ligands using distinct allosteric signaling circuitsSuzanne G Mays, David Hercules, Eric A Ortlund, et al.ACS Medicinal Chemistry Letters|October 23, 2018
Development of Hybrid Phospholipid Mimics as Effective Agonists for Liver Receptor Homologue-1Autumn R Flynn, Suzanne G Mays, Eric A Ortlund, et al.Accounts of Chemical Research|December 15, 2020
Atomic-Level Mechanism of Pre-mRNA Splicing in Health and DiseaseJure Borišek, Lorenzo Casalino, Andrea Saltalamacchia, et al.Scientific Reports|December 18, 2020
Enantiomer-specific activities of an LRH-1 and SF-1 dual agonistSuzanne G Mays, Józef Stec, Xu Liu, et al.ACS Medicinal Chemistry Letters|March 19, 2020
Development of a Versatile and Sensitive Direct Ligand Binding Assay for Human NR5A Nuclear ReceptorsEmma H D'Agostino, Autumn R Flynn, Jeffery L Cornelison, et al.Molecular Pharmacology|April 2, 2017
Structure and Dynamics of the Liver Receptor Homolog 1-PGC1α ComplexSuzanne G Mays, C Denise Okafor, Micheal L Tuntland, et al.The Journal of Biological Chemistry|October 4, 2016
Crystal Structures of the Nuclear Receptor, Liver Receptor Homolog 1, Bound to Synthetic AgonistsSuzanne G Mays, C Denise Okafor, Richard J Whitby, et al.Bioorganic & Medicinal Chemistry Letters|July 8, 2020
Development of a new class of liver receptor homolog-1 (LRH-1) agonists by photoredox conjugate additionJeffery L Cornelison, Michael L Cato, Alyssa M Johnson, et al.Pageof 2