Characterization of the methionine sulfoxide reductase activities of PILB, a probable virulence factor from Neisseria meningitidis

被引:105
作者
Olry, A
Boschi-Muller, S
Marraud, M
Sanglier-Cianferani, S
Van Dorsselear, A
Branlant, G
机构
[1] UHP, CNRS, UMR Maturat ARN & Enzymol Mol 7567, Fac Sci, F-54506 Vandoeuvre Les Nancy, France
[2] INPL, CNRS, UMR 7568, Lab Chim Phys Macromol,Grp ENSIC, F-54001 Nancy, France
[3] Univ Strasbourg, CNRS, ULP,Lab Spectrometrie Mass Bioorgan, UMR 7509, F-67087 Strasbourg, France
关键词
D O I
10.1074/jbc.M112350200
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
PILB has been described as being involved in the virulence of bacteria of Neisseria genus. The PILB protein is composed of three subdomains. In the present study, the central subdomain (PILB-MsrA), the C terminus subdomain (PILB-MsrB), and the fused subdomain (PILB-MsrA/MsrB) of N. meningitidis were produced as folded entities. The central subdomain shows a methionine sulfoxide reductase A (MsrA) activity, whereas PILB-MsrB displays a methionine sulfoxide reductase B (MsrB) activity. The catalytic mechanism of PILB-MsrB can be divided into two steps: 1) an attack of the Cys-494 on the sulfur atom of the sulfoxide substrate, leading to formation of a sulfenic acid intermediate and release of 1 mol of methionine/mol of enzyme and 2) a regeneration of Cys-494 via formation of an intradisulfide bond with Cys-439 followed by reduction with thioredoxin. The study also shows that 1) MsrA and MsrB display opposite stereoselectivities toward the sulfoxide function; 2) the active sites of both Msrs, particularly MsrB, are rather adapted for binding protein-bound MetSO more efficiently than free MetSO; 3) the carbon Calpha is not a determining factor for efficient binding to both Msrs; and 4) the presence of the sulfoxide function is a prerequisite for binding to Msrs. The fact that the two Msrs exhibit opposite stereoselectivities argues for a structure of the active site of MsrBs different from that of MsrAs. This is further supported by the absence of sequence homology between the two Msrs in particular around the cysteine that is involved in formation of the sulfenic acid derivative. The fact that the catalytic mechanism takes place through formation of a sulfenic acid intermediate for both Msrs supports the idea that sulfenic acid chemistry is a general feature in the reduction of sulfoxides by thiols.
引用
收藏
页码:12016 / 12022
页数:7
相关论文
共 25 条
[1]  
BODANSZKY M, 1984, PRACTICE PEPTIDE SYN, P103
[2]   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
[3]   E-coli methionine sulfoxide reductase with a truncated N terminus or C terminus, or both, retains the ability to reduce methionine sulfoxide [J].
Boschi-Muller, S ;
Azza, S ;
Branlant, G .
PROTEIN SCIENCE, 2001, 10 (11) :2272-2279
[4]  
BOSE AK, 1960, ORG SYNTH, V40, P82
[5]   Peptide methionine sulfoxide reductase (MsrA) is a virulence determinant in Mycoplasma genitalium [J].
Dhandayuthapani, S ;
Blaylock, MW ;
Bebear, CM ;
Rasmussen, WG ;
Baseman, JB .
JOURNAL OF BACTERIOLOGY, 2001, 183 (19) :5645-5650
[6]   The minimal gene set member msrA, encoding peptide methionine sulfoxide reductase, is a virulence determinant of the plant pathogen Erwinia chrysanthemi [J].
El Hassouni, M ;
Chambost, JP ;
Expert, D ;
Van Gijsegem, F ;
Barras, F .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (03) :887-892
[7]   Repair of oxidized proteins - Identification of a new methionine sulfoxide reductase [J].
Grimaud, R ;
Ezraty, B ;
Mitchell, JK ;
Lafitte, D ;
Briand, C ;
Derrick, PJ ;
Barras, F .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2001, 276 (52) :48915-48920
[8]   In vitro and in vivo oxidation of methionine residues in small, acid-soluble spore proteins from Bacillus species [J].
Hayes, CS ;
Illades-Aguiar, B ;
Casillas-Martinez, L ;
Setlow, P .
JOURNAL OF BACTERIOLOGY, 1998, 180 (10) :2694-2700
[9]   Biocatalytic and chemical routes to all the stereoisomers of methionine and ethionine sulfoxides [J].
Holland, HL ;
Andreana, PR ;
Brown, FM .
TETRAHEDRON-ASYMMETRY, 1999, 10 (15) :2833-2843
[10]   Thioredoxin-dependent hydroperoxide peroxidase activity of bacterioferritin comigratory protein (BCP) as a new member of the thiol-specific antioxidant protein (TSA)/alkyl hydroperoxide peroxidase C (AhpC) family [J].
Jeong, W ;
Cha, MK ;
Kim, IH .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (04) :2924-2930