Stabilization of active-site loops in NH3-dependent NAD+ synthetase from Bacillus subtilis

被引:31
作者
Devedjiev, Y
Symersky, J
Singh, R
Jedrzejas, M
Brouillette, C
Brouillette, W
Muccio, D
Chattopadhyay, D
DeLucas, L [1 ]
机构
[1] Univ Alabama Birmingham, Ctr Biophys Sci & Engn, Birmingham, AL 35294 USA
[2] Univ Alabama Birmingham, Dept Microbiol, Birmingham, AL 35294 USA
[3] Univ Alabama Birmingham, Dept Biochem, Birmingham, AL 35294 USA
[4] Univ Alabama Birmingham, Dept Chem, Birmingham, AL 35294 USA
[5] Univ Alabama Birmingham, Sch Med, Div Geog Med, Birmingham, AL 35294 USA
来源
ACTA CRYSTALLOGRAPHICA SECTION D-STRUCTURAL BIOLOGY | 2001年 / 57卷
关键词
D O I
10.1107/S0907444901003523
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
The NH3-dependent NAD(+) synthetase (NADS) participates in the biosynthesis of nicotinamide adenine dinucleotide (NAD(+)) by transforming nicotinic acid adenine dinucleotide (NaAD) to NAD(+). The structural behavior of the active site, including stabilization of flexible loops 82-87 and 204-225, has been studied by determination of the crystal structures of complexes of NADS with natural substrates and a substrate analog. Both loops are stabilized independently of NaAD and solely from the ATP-binding site. Analysis of the binding contacts suggests that the minor loop 82-87 is stabilized primarily by a hydrogen bond with the adenine base of ATP. Formation of a coordination complex with Mg2+ in the ATP-binding site may contribute to the stabilization of the major loop 204-225. The major loop has a role in substrate recognition and stabilization, in addition to the protection of the reaction intermediate described previously. A second and novel Mg2+ position has been observed closer to the NaAD-binding site in the structure crystallized at pH 7.5, where the enzyme is active. This could therefore be the catalytically active Mg2+.
引用
收藏
页码:806 / 812
页数:7
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