Bacillus subtilis ResA is a thiol-disulfide oxidoreductase involved in cytochrome c synthesis

被引:73
作者
Erlendsson, LS
Acheson, RM
Hederstedt, L
Le Brun, NE [1 ]
机构
[1] Univ E Anglia, Sch Chem Sci & Pharm, Ctr Met Prot Spect & Biol, Norwich NR4 7TJ, Norfolk, England
[2] Lund Univ, Dept Cell & Organism Biol, SE-22362 Lund, Sweden
关键词
D O I
10.1074/jbc.M300103200
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
Covalent attachment of heme to apocytochromes c in bacteria occurs on the outside of the cytoplasmic membrane and requires two reduced cysteinyls at the heme binding site. A constructed ResA-deficient Bacillus subtilis strain was found to lack c-type cytochromes. Cytochrome c synthesis was restored in the mutant by: (i) in trans expression of resA; (ii) deficiency in BdbD, a thioldisulfide oxidoreductase that catalyzes formation of an intramolecular disulfide bond in apocytochrome c after transfer of the polypeptide across the cytoplasmic membrane; or (iii) by addition of the reductant dithiothreitol to the growth medium. In vivo studies of ResA showed that it is membrane-associated with its thioredoxin-like domain on the outside of the cytoplasmic membrane. Analysis of a soluble form of the protein revealed two redox reactive cysteine residues with a midpoint potential of about -340 mV at pH 7. We conclude that ResA, probably together with another thiol-disulfide oxidoreductase, CcdA, is required for the reduction of the cysteinyls in the heme binding site of apocytochrome c.
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页码:17852 / 17858
页数:7
相关论文
共 65 条
[1]   STRUCTURE AND MORPHOGENESIS OF BACTERIAL SPORE COAT [J].
ARONSON, AI ;
FITZJAMES, P .
BACTERIOLOGICAL REVIEWS, 1976, 40 (02) :360-402
[2]   A PATHWAY FOR DISULFIDE BOND FORMATION INVIVO [J].
BARDWELL, JCA ;
LEE, JO ;
JANDER, G ;
MARTIN, N ;
BELIN, D ;
BECKWITH, J .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1993, 90 (03) :1038-1042
[3]   Four genes are required for the system II cytochrome c biogenesis pathway in Bordetella pertussis, a unique bacterial model [J].
Beckett, CS ;
Loughman, JA ;
Karberg, KA ;
Donato, GM ;
Goldman, WE ;
Kranz, RG .
MOLECULAR MICROBIOLOGY, 2000, 38 (03) :465-481
[4]  
BENGTSSON J, 1998, J BACTERIOL, V181, P6825
[5]  
BERGLUND O, 1970, J BIOL CHEM, V245, P6030
[6]   COUNTING INTEGRAL NUMBERS OF AMINO-ACID-RESIDUES PER POLYPEPTIDE-CHAIN [J].
CREIGHTON, TE .
NATURE, 1980, 284 (5755) :487-489
[7]   In vitro formation of a c-type cytochrome [J].
Daltrop, O ;
Allen, JWA ;
Willis, AC ;
Ferguson, SJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (12) :7872-7876
[8]   Mutations in the thiol-disulfide oxidoreductases BdbC and BdbD can suppress cytochrome c deficiency of CcdA-defective Bacillus subtilis cells [J].
Erlendsson, LS ;
Hederstedt, L .
JOURNAL OF BACTERIOLOGY, 2002, 184 (05) :1423-1429
[9]   The active-site cysteines of the periplasmic thioredoxin-like protein CcmG of Escherichia coli are important but not essential for cytochrome c maturation in vivo [J].
Fabianek, RA ;
Hennecke, H ;
Thöny-Meyer, L .
JOURNAL OF BACTERIOLOGY, 1998, 180 (07) :1947-1950
[10]   Characterization of the Bradyrhizobium japonicum CycY protein, a membrane-anchored periplasmic thioredoxin that may play a role as a reductant in the biogenesis of c-type cytochromes [J].
Fabianek, RA ;
HuberWunderlich, M ;
Glockshuber, R ;
Kunzler, P ;
Hennecke, H ;
ThonyMeyer, L .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (07) :4467-4473