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Biochemistry|November 9, 2021
Evidence for Proline Catabolic Enzymes in the Metabolism of Thiazolidine CarboxylatesYizi Mao, Javier Seravalli, Thomas G Smith, et al.Bioscience Reports|October 16, 2016
Engineering a trifunctional proline utilization A chimaera by fusing a DNA-binding domain to a bifunctional PutABenjamin W Arentson, Erin L Hayes, Weidong Zhu, et al.Biochemistry|December 10, 2009
The structure of the proline utilization a proline dehydrogenase domain inactivated by N-propargylglycine provides insight into conformational changes induced by substrate binding and flavin reductionDhiraj Srivastava, Weidong Zhu, William H Johnson, et al.Biochemistry|February 8, 2014
Structural studies of yeast Δ(1)-pyrroline-5-carboxylate dehydrogenase (ALDH4A1): active site flexibility and oligomeric stateTravis A Pemberton, Dhiraj Srivastava, Nikhilesh Sanyal, et al.ACS Omega|January 30, 2023
Functional Impact of a Cancer-Related Variant in Human Δ1-Pyrroline-5-Carboxylate Reductase 1Oseeyi I Daudu, Kaylen R Meeks, Lu Zhang, et al.Cancer Cell|February 13, 2020
Dynamic ROS Regulation by TIGAR: Balancing Anti-cancer and Pro-metastasis EffectsSarah-Maria Fendt, Sophia Y LuntMethods in Molecular Biology (Clifton, N.J.)|October 14, 2018
Assessing the Impact of the Nutrient Microenvironment on the Metabolism of Effector CD8+ T CellsJuan Fernández-García, Sarah-Maria FendtPhysiological Reviews|July 28, 2025
Metabolic adaptations in cancer progressionYiming Peng-Winkler, Sarah-Maria FendtACS Chemical Biology|April 21, 2026
Targeting a Unique Cysteine Residue to Achieve Isoform-Selective Inhibition of the Proline Biosynthetic Enzyme Pyrroline-5-Carboxylate Reductase 2Tyrell C Rossman, Kaylen R Meeks, Gunjan Purohit, et al.The Journal of Biological Chemistry|September 29, 2016
Structures of Proline Utilization A (PutA) Reveal the Fold and Functions of the Aldehyde Dehydrogenase Superfamily Domain of Unknown FunctionMin Luo, Thameesha T Gamage, Benjamin W Arentson, et al.Pageof 33