Crystal structures of glycinamide ribonucleotide synthetase, PurD, from thermophilic eubacteria

Glycinamide ribonucleotide synthetase (GAR-syn, PurD) catalyses the second reaction of the purine biosynthetic pathway; the conversion of phosphoribosylamine, glycine and ATP to glycinamide ribonucleotide (GAR), ADP and Pi. In the present study, crystal structures of GAR-syn's from Thermus ther...

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Veröffentlicht in:Journal of biochemistry (Tokyo) 2010-10, Vol.148 (4), p.429-438
Hauptverfasser: Sampei, Gen-ichi, Baba, Seiki, Kanagawa, Mayumi, Yanai, Hisaaki, Ishii, Takeshi, Kawai, Hiroya, Fukai, Yoko, Ebihara, Akio, Nakagawa, Noriko, Kawai, Gota
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Sprache:eng
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Zusammenfassung:Glycinamide ribonucleotide synthetase (GAR-syn, PurD) catalyses the second reaction of the purine biosynthetic pathway; the conversion of phosphoribosylamine, glycine and ATP to glycinamide ribonucleotide (GAR), ADP and Pi. In the present study, crystal structures of GAR-syn's from Thermus thermophilus, Geobacillus kaustophilus and Aquifex aeolicus were determined in apo forms. Crystal structures in ligand-bound forms were also determined for G. kaustophilus and A. aeolicus proteins. In general, overall structures of GAR-syn's are similar to each other. However, the orientations of the B domains are varied among GAR-syn's and the MD simulation suggested the mobility of the B domain. Furthermore, it was demonstrated that the B loop in the B domain fixes the position of the β- and γ- phosphate groups of the bound ATP. The structures of GAR-syn's and the bound ligands were compared with each other in detail, and structures of GAR-syn's with full ligands, as well as the possible reaction mechanism, were proposed.
ISSN:0021-924X
1756-2651
DOI:10.1093/jb/mvq088