Active site mutations and substrate inhibition in human sulfotransferase 1A1 and 1A3


Autoria(s): Barnett, Amanda C.; Tsvetanov, Sergey; Gamage, Niranjali; Martin, Jennifer L.; Duggleby, Ronald G.; McManus, Michael E.
Data(s)

30/04/2004

Resumo

Human SULT1A1 is primarily responsible for sulfonation of xenobiotics, including the activation of promutagens, and it has been implicated in several forms of cancer. Human SULT1A3 has been shown to be the major sulfotransferase that sulfonates dopamine. These two enzymes shares 93% amino acid sequence identity and have distinct but overlapping substrate preferences. The resolution of the crystal structures of these two enzymes has enabled us to elucidate the mechanisms controlling their substrate preferences and inhibition. The presence of two p-nitrophenol (pNP) molecules in the crystal structure of SULT1A1 was postulated to explain cooperativity at low and inhibition at high substrate concentrations, respectively. In SULT1A1, substrate inhibition occurs with pNP as the substrate but not with dopamine. For SULT1A3, substrate inhibition is found for dopamine but not with pNP. We investigated how substrate inhibition occurs in these two enzymes using molecular modeling, site-directed mutagenesis, and kinetic analysis. The results show that residue Phe-247 of SULT1A1, which interacts with both p-nitrophenol molecules in the active site, is important for substrate inhibition. Mutation of phenylalanine to leucine at this position in SULT1A1 results in substrate inhibition by dopamine. We also propose, based on modeling and kinetic studies, that substrate inhibition by dopamine in SULT1A3 is caused by binding of two dopamine molecules in the active site. © 2004 by The American Society for Biochemistry and Molecular Biology, Inc.

Identificador

http://espace.library.uq.edu.au/view/UQ:74329

Idioma(s)

eng

Publicador

The American Society for Biochemistry and Molecular Biology,.

Palavras-Chave #Biochemistry & molecular biology #Human estrogen sulfotransferase #Human dopamine sulfotransferase #Form phenol sulfotransferases #Crystal-structure #Breast-cancer #Cytosolic sulfotransferases #Bacterial expression #Heterocyclic amines #Sulfuryl transfer #Specificity #C1 #270108 Enzymes #780105 Biological sciences
Tipo

Journal Article