english Icono del idioma   español Icono del idioma  

Por favor, use este identificador para citar o enlazar este ítem: https://hdl.handle.net/20.500.12008/54159 Cómo citar
Título: A Unique Mode of Coenzyme A Binding to the Nucleotide Binding Pocket of Human Metastasis Suppressor NME1
Autor: Tossounian, Maria-Armineh
Hristov, Stefan Denchev
Semelak, Jonathan Alexis
Yu, Bess Yi Kun
Baczynska, Maria
Zhao, Yuhan
Estrin, Darío Ariel
Trujillo, Madia
Filonenko, Valeriy
Gouge, Jerome
Gout, Iván
Tipo: Artículo
Palabras clave: CoAlation, NDPK-A structure, NM23-H1, NME1, X-ray crystallography, Coenzyme A, Metastasis suppressor, Molecular dynamics, Nucleotide binding, Protein-metabolite regulation
Descriptores: ADENINA, ARGININA, SITIOS DE UNIÓN, COENZIMA A, CRISTALOGRAFÍA POR RAYOS X, HUMANOS, NUCLEÓSIDO DIFOSFATO QUINASAS NM23, GENÉTICA, NUCLEÓTIDOS, TREONINA
Fecha de publicación: 2023
Resumen: Coenzyme A (CoA) is a key cellular metabolite which participates in diverse metabolic pathways, regulation of gene expression and the antioxidant defense mechanism. Human NME1 (hNME1), which is a moonlighting protein, was identified as a major CoA-binding protein. Biochemical studies showed that hNME1 is regulated by CoA through both covalent and non-covalent binding, which leads to a decrease in the hNME1 nucleoside diphosphate kinase (NDPK) activity. In this study, we expanded the knowledge on previous findings by focusing on the non-covalent mode of CoA binding to the hNME1. With X-ray crystallography, we solved the CoA bound structure of hNME1 (hNME1-CoA) and determined the stabilization interactions CoA forms within the nucleotide-binding site of hNME1. A hydrophobic patch stabilizing the CoA adenine ring, while salt bridges and hydrogen bonds stabilizing the phosphate groups of CoA were observed. With molecular dynamics studies, we extended our structural analysis by characterizing the hNME1-CoA structure and elucidating possible orientations of the pantetheine tail, which is absent in the X-ray structure due to its flexibility. Crystallographic studies suggested the involvement of arginine 58 and threonine 94 in mediating specific interactions with CoA. Site-directed mutagenesis and CoA-based affinity purifications showed that arginine 58 mutation to glutamate (R58E) and threonine 94 mutation to aspartate (T94D) prevent hNME1 from binding to CoA. Overall, our results reveal a unique mode by which hNME1 binds CoA, which differs significantly from that of ADP binding: the α- and β-phosphates of CoA are oriented away from the nucleotide-binding site, while 3'-phosphate faces catalytic histidine 118 (H118). The interactions formed by the CoA adenine ring and phosphate groups contribute to the specific mode of CoA binding to hNME1.
Editorial: MDPI
EN: International Journal of Molecular Sciences. 2023;24(11)
Citación: Tossounian M, Hristov S, Semelak J y otros. A Unique Mode of Coenzyme A Binding to the Nucleotide Binding Pocket of Human Metastasis Suppressor NME1. International Journal of Molecular Sciences [en línea]. 2023;24(11) 17 p.
Licencia: Licencia Creative Commons Atribución (CC - By 4.0)
Aparece en las colecciones: Publicaciones Académicas y Científicas - Facultad de Medicina

Ficheros en este ítem:
Fichero Descripción Tamaño Formato   
A Unique Mode of Coenzyme A Binding to the Nucleotide.pdfA Unique Mode of Coenzyme A Binding to the Nucleotide26,25 MBAdobe PDFVisualizar/Abrir


Este ítem está sujeto a una licencia Creative Commons Licencia Creative Commons Creative Commons