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Dual binding sites for translocation catalysis by Escherichia coli glutathionylspermidine synthetase
Pai C.-H.1; Chiang B.-Y.1; Ko T.-P.1; Chou C.-C.2; Chong C.-M.1; Yen F.-J.1; Chen S.5; Coward J.K.3; Wang A.H.-J.1; Lin C.-H.1
2006-12-13
Source PublicationEMBO Journal
ISSN02614189 14602075
Volume25Issue:24Pages:5970-5982
Abstract

Most organisms use glutathione to regulate intracellular thiol redox balance and protect against oxidative stress; protozoa, however, utilize trypanothione for this purpose. Trypanothione biosynthesis requires ATP-dependent conjugation of glutathione (GSH) to the two terminal amino groups of spermidine by glutathionylspermidine synthetase (GspS) and trypanothione synthetase (TryS), which are considered as drug targets. GspS catalyzes the penultimate step of the biosynthesis - amide bond formation between spermidine and the glycine carboxylate of GSH. We report herein five crystal structures of Escherichia coli GspS in complex with substrate, product or inhibitor. The C-terminal of GspS belongs to the ATP-grasp superfamily with a similar fold to the human glutathione synthetase. GSH is likely phosphorylated at one of two GSH-binding sites to form an acylphosphate intermediate that then translocates to the other site for subsequent nucleophilic addition of spermidine. We also identify essential amino acids involved in the catalysis. Our results constitute the first structural information on the biochemical features of parasite homologs (including TryS) that underlie their broad specificity for polyamines. © 2006 European Molecular Biology Organization | All Rights Reserved.

KeywordBinding Site Glutathionylspermidine Mechanism Structure Trypanothione
DOI10.1038/sj.emboj.7601440
URLView the original
Indexed BySCIE
Language英語English
WOS Research AreaBiochemistry & Molecular Biology ; Cell Biology
WOS SubjectBiochemistry & Molecular Biology ; Cell Biology
WOS IDWOS:000242891100032
Scopus ID2-s2.0-33845691877
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Citation statistics
Document TypeJournal article
CollectionInstitute of Chinese Medical Sciences
Corresponding AuthorWang A.H.-J.; Lin C.-H.
Affiliation1.Academia Sinica, Institute of Biological Chemistry
2.Academia Sinica, Genomics Research Center
3.National Taiwan University
4.National Yang-Ming University Taiwan
5.University of Michigan, Ann Arbor
Recommended Citation
GB/T 7714
Pai C.-H.,Chiang B.-Y.,Ko T.-P.,et al. Dual binding sites for translocation catalysis by Escherichia coli glutathionylspermidine synthetase[J]. EMBO Journal, 2006, 25(24), 5970-5982.
APA Pai C.-H.., Chiang B.-Y.., Ko T.-P.., Chou C.-C.., Chong C.-M.., Yen F.-J.., Chen S.., Coward J.K.., Wang A.H.-J.., & Lin C.-H. (2006). Dual binding sites for translocation catalysis by Escherichia coli glutathionylspermidine synthetase. EMBO Journal, 25(24), 5970-5982.
MLA Pai C.-H.,et al."Dual binding sites for translocation catalysis by Escherichia coli glutathionylspermidine synthetase".EMBO Journal 25.24(2006):5970-5982.
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