One Key and Multiple Locks: Substrate Binding in Structures of Tryptophan Dioxygenases and Hydroxylases.
Andrea Mammoli, Alessandra Riccio, Elisa Bianconi, Alice Coletti, Emidio Camaioni, Antonio Macchiarulo
Journal: ChemMedChem
2022;16(18):2732-2743
PMID: 34137184
Abstract
["Since its discovery at the beginning of the past century, the essential nutrient l-Tryptophan (l-Trp) and its catabolic pathways have acquired an increasing interest in an ever wider scientific community for their pivotal roles in underlying many important physiological functions and associated pathological conditions. As a consequence, enzymes catalyzing rate limiting steps along l-Trp catabolic pathways - including IDO1, TDO, TPH1 and TPH2 - have turned to be interesting drug targets for the design and development of novel therapeutic agents for different disorders such as carcinoid syndrome, cancer and autoimmune diseases. This article provides a fresh comparative overview on the most recent advancements that crystallographic studies, biophysical and computational works have brought on structural aspects and molecular recognition patterns of these enzymes toward l-Trp. Finally, a conformational analysis of l-Trp is also discussed as part of the molecular recognition process governing the binding of a substrate to its cognate enzymes.",{"copyright":"\u00a9 2021 The Authors. ChemMedChem published by Wiley-VCH GmbH."}]
Address:
Department of Pharmaceutical Sciences, University of Perugia, Via del Liceo N. 1, 06123, Perugia, Italy.; Department of Medicine and Surgery, University of Perugia, P. le Gambuli, 06132, Perugia, Italy.
Link outs
Free resources
Full Text Sources:
Miscellaneous:
Research Materials:
Subscription / membership required
MeSH Terms:
Binding Sites,
Enzyme Inhibitors,
Humans,
Indoleamine-Pyrrole 2,3,-Dioxygenase,
Models, Molecular,
Molecular Structure,
Tryptophan Hydroxylase,
Tryptophan Oxygenase