Characterization of the amino acids from Neisseria meningitidis MsrA involved in the chemical catalysis of the methionine sulfoxide reduction step

被引:32
作者
Antoine, Mathias [1 ]
Gand, Adeline [1 ]
Boschi-Muller, Sandrine [1 ]
Branlant, Guy [1 ]
机构
[1] Nancy Univ, UHP, CNRS, UMR 7567,Fac Sci & Tech, F-54506 Vandoeuvre Les Nancy, France
关键词
D O I
10.1074/jbc.M608844200
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
Methionine sulfoxide reductases (Msrs) are ubiquitous enzymes that reduce protein-bound methionine sulfoxide back to Met in the presence of thioredoxin. In vivo, the role of the Msrs is described as essential in protecting cells against oxidative damages and as playing a role in infection of cells by pathogenic bacteria. There exist two structurally unrelated classes of Msrs, called MsrA and MsrB, specific for the S and the R epimer of the sulfoxide function of methionine sulfoxide, respectively. Both Msrs present a similar catalytic mechanism, which implies, as a first step, a reductase step that leads to the formation of a sulfenic acid on the catalytic cysteine and a concomitant release of a mole of Met. The reductase step has been previously shown to be efficient and not rate-limiting. In the present study, the amino acids involved in the catalysis of the reductase step of the Neisseria meningitidis MsrA have been characterized. The invariant Glu-94 and to a lesser extent Tyr-82 and Tyr-134 are shown to play a major role in the stabilization of the sulfurane transition state and indirectly in the decrease of the pK(app) of the catalytic Cys-51. Ascenario of the reductase step is proposed in which the substrate binds to the active site with its sulfoxide function largely polarized via interactions with Glu-94, Tyr-82, and Tyr-134 and participates via the positive or partially positive charge borne by the sulfur of the sulfoxide in the stabilization of the catalytic Cys.
引用
收藏
页码:39062 / 39070
页数:9
相关论文
共 15 条
[1]   Kinetic characterization of the chemical steps involved in the catalytic mechanism of methionine sulfoxide reductase a from Neisseria meningitidis [J].
Antoine, M ;
Boschi-Muller, S ;
Branlant, G .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (46) :45352-45357
[2]   Theoretical study of the reduction mechanism of sulfoxides by thiols [J].
Balta, B. ;
Monard, G. ;
Ruiz-Lopez, M. F. ;
Antoine, M. ;
Gand, A. ;
Boschi-Muller, S. ;
Branlant, G. .
JOURNAL OF PHYSICAL CHEMISTRY A, 2006, 110 (24) :7628-7636
[3]   A sulfenic acid enzyme intermediate is involved in the catalytic mechanism of peptide methionine sulfoxide reductase from Escherichia coli [J].
Boschi-Muller, S ;
Azza, S ;
Sanglier-Cianferani, S ;
Talfournier, F ;
Van Dorsselear, A ;
Branlant, G .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (46) :35908-35913
[4]   The enzymology and biochemistry of methionine sulfoxide reductases [J].
Boschi-Muller, S ;
Olry, A ;
Antoine, M ;
Branlant, G .
BIOCHIMICA ET BIOPHYSICA ACTA-PROTEINS AND PROTEOMICS, 2005, 1703 (02) :231-238
[5]   SULFOXIDES AS LIGANDS .1. A PRELIMINARY SURVEY OF METHYL SULFOXIDE COMPLEXES [J].
COTTON, FA ;
FRANCIS, R .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1960, 82 (12) :2986-2991
[6]   Chemical bonding in hypervalent molecules revised.: 2.: Application of the atoms in molecules theory to Y2XZ and Y2XZ2 (Y = H, F, CH3; X = O, S, Se; Z = O, S) compounds [J].
Dobado, JA ;
Martínez-García, H ;
Molina, JM ;
Sundberg, MR .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1999, 121 (13) :3156-3164
[7]  
DREIZLER H, 1964, Z NATURFORSCH PT A, VA 19, P512
[8]   Structure and mechanism of peptide methionine sulfoxide reductase, an "anti-oxidation" enzyme [J].
Lowther, WT ;
Brot, N ;
Weissbach, H ;
Matthews, BW .
BIOCHEMISTRY, 2000, 39 (44) :13307-13312
[9]   Evidence for the chemical activation of essential Cys-302 upon cofactor binding to nonphosphorylating glyceraldehyde 3-phosphate dehydrogenase from Streptococcus mutans [J].
Marchal, S ;
Branlant, G .
BIOCHEMISTRY, 1999, 38 (39) :12950-12958
[10]   Hydration of sulfo and methyl groups in dimethyl sulfoxide is accompanied by the formation of red-shifted hydrogen bonds and improper blue-shifted hydrogen bonds:: An ab initio quantum chemical study [J].
Mrázková, E ;
Hobza, P .
JOURNAL OF PHYSICAL CHEMISTRY A, 2003, 107 (07) :1032-1039