Crystal structure of the first dissimilatory nitrate reductase at 1.9 Å solved by MAD methods

被引:271
作者
Dias, JM
Than, ME
Humm, A
Huber, R
Bourenkov, GP
Bartunik, HD
Bursakov, S
Calvete, J
Caldeira, J
Carneiro, C
Moura, JJG
Moura, I
Romao, MJ [1 ]
机构
[1] Univ Nova Lisboa, FCT, CQFB, Dept Quim, P-2825114 Caparica, Portugal
[2] Univ Nova Lisboa, Inst Tecnol Quim & Biol, P-2780 Oeiras, Portugal
[3] Max Planck Inst Biochem, D-82152 Martinsried, Germany
[4] DESY, MPG, ASMB, Max Planck Res Unit Struct Mol Biol, D-22603 Hamburg, Germany
[5] Russian Acad Sci, AN Bach Inst Biochem, Moscow 117071, Russia
[6] Inst Reprod Med, D-30559 Hannover, Germany
[7] Inst Super Ciencias Saude Sul, P-2825114 Caparica, Portugal
关键词
crystal structure; dissimilatory nitrate reductase; 4Fe-4S] cluster; molybdopterin cofactor; multiwavelength anomalous diffraction;
D O I
10.1016/S0969-2126(99)80010-0
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Background: The periplasmic nitrate reductase (NAP) from the sulphate reducing bacterium Desulfovibrio desulfuricans ATCC 27774 is induced by growth on nitrate and catalyses the reduction of nitrate to nitrite for respiration, NAP is a molybdenum-containing enzyme with one bis-molybdopterin guanine dinucleotide (MGD) cofactor and one [4Fe-4S] cluster in a single polypeptide chain of 723 amino acid residues. To date, there is no crystal structure of a nitrate reductase. Results: The first crystal structure of a dissimilatoty (respiratory) nitrate reductase was determined at 1.9 Angstrom resolution by multiwavelength anomalous diffraction (MAD) methods. The structure is folded into four domains with an alpha/beta-type topology and all four domains are involved in cofactor binding. The [4Fe-4S] centre is located near the periphery of the molecule, whereas the MGD cofactor extends across the interior of the molecule interacting with residues from all four domains. The molybdenum atom is located at the bottom of a 15 A deep crevice, and is positioned 12 Angstrom from the [4Fe-4S] cluster. The structure of NAP reveals the details of the catalytic molybdenum site, which is coordinated to two MGD cofactors, Cys140, and a water/hydroxo ligand. A facile electron-transfer pathway through bonds connects the molybdenum and the [4Fe-4S] cluster. Conclusions: The polypeptide fold of NAP and the arrangement of the cofactors is related to that of Escherichia coli formate dehydrogenase (FDH) and distantly resembles dimethylsulphoxide reductase. The close structural homology of NAP and FDH shows how small changes in the vicinity of the molybdenum catalytic site are sufficient for the substrate specificity.
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页码:65 / 79
页数:15
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