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Catalytic Roles for Two Water Bridged Residues (Asp-98 and His-255) in the Active Site of Copper-containing Nitrite Reductase*

Authors :
Boulanger, Martin J.
Kukimoto, Mutsuko
Nishiyama, Makoto
Horinouchi, Sueharu
Murphy, Michael E.P.
Source :
Journal of Biological Chemistry; August 2000, Vol. 275 Issue: 31 p23957-23964, 8p
Publication Year :
2000

Abstract

Two active site residues, Asp-98 and His-255, of copper-containing nitrite reductase (NIR) from Alcaligenes faecalishave been mutated to probe the catalytic mechanism. Three mutations at these two sites (D98N, H255D, and H255N) result in large reductions in activity relative to native NIR, suggesting that both residues are involved intimately in the reaction mechanism. Crystal structures of these mutants have been determined using data collected to better than 1.9-Å resolution. In the native structure, His-255 Nε2 forms a hydrogen bond through a bridging water molecule to the side chain of Asp-98, which also forms a hydrogen bond to a water or nitrite oxygen ligated to the active site copper. In the D98N mutant, reorientation of the Asn-98 side chain results in the loss of the hydrogen bond to the copper ligand water, consistent with a negatively charged Asp-98 directing the binding and protonation of nitrite in the native enzyme. An additional solvent molecule is situated between residues 255 and the bridging water in the H255N and H255D mutants and likely inhibits nitrite binding. The interaction of His-255 with the bridging water appears to be necessary for catalysis and may donate a proton to reaction intermediates in addition to Asp-98.

Details

Language :
English
ISSN :
00219258 and 1083351X
Volume :
275
Issue :
31
Database :
Supplemental Index
Journal :
Journal of Biological Chemistry
Publication Type :
Periodical
Accession number :
ejs7242332
Full Text :
https://doi.org/10.1074/jbc.M001859200