| Literature DB >> 16707489 |
Sébastien Graziani1, Julie Bernauer, Stéphane Skouloubris, Marc Graille, Cong-Zhao Zhou, Christophe Marchand, Paulette Decottignies, Herman van Tilbeurgh, Hannu Myllykallio, Ursula Liebl.
Abstract
By using biochemical and structural analyses, we have investigated the catalytic mechanism of the recently discovered flavin-dependent thymidylate synthase ThyX from Paramecium bursaria chlorella virus-1 (PBCV-1). Site-directed mutagenesis experiments have identified several residues implicated in either NADPH oxidation or deprotonation activity of PBCV-1 ThyX. Chemical modification by diethyl pyrocarbonate and mass spectroscopic analyses identified a histidine residue (His53) crucial for NADPH oxidation and located in the vicinity of the redox active N-5 atom of the FAD ring system. Moreover, we observed that the conformation of active site key residues of PBCV-1 ThyX differs from earlier reported ThyX structures, suggesting structural changes during catalysis. Steady-state kinetic analyses support a reaction mechanism where ThyX catalysis proceeds via formation of distinct ternary complexes without formation of a methyl enzyme intermediate.Entities:
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Year: 2006 PMID: 16707489 DOI: 10.1074/jbc.M600745200
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157