Escherichia coli NifS-like proteins provide selenium in the pathway for the biosynthesis of selenophosphate

被引:60
作者
Lacourciere, GM
Mihara, H
Kurihara, T
Esaki, N
Stadtman, TC
机构
[1] NHLBI, Biochem Lab, NIH, Bethesda, MD 20892 USA
[2] Kyoto Univ, Chem Res Inst, Kyoto 6110011, Japan
关键词
D O I
10.1074/jbc.M000926200
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
Selenophosphate synthetase (SPS), the selD gene product from Escherichia coli, catalyzes the biosynthesis of monoselenophosphate, AMP, and orthophosphate in a 1:1:1 ratio from selenide and ATP. Kinetic characterization revealed the K-m value for selenide approached levels that; are toxic to the cell, Our previous demonstration that a Se-0-generating system consisting of L-selenocysteine and the Azotobacter vinelandii NifS protein can replace selenide for selenophosphate biosynthesis in vitro suggested a mechanism whereby cells can overcome selenide toxicity. Recently, three E. coli NifS-like proteins, CsdB, CSD, and IscS, have been overexpressed and characterized. All three enzymes act on selenocysteine and cysteine to produce Se-0 and S-0, respectively. In the present study, we demonstrate the ability of each E. coli NifS-like protein to function as a selenium delivery protein for the in vitro biosynthesis of selenophosphate by E. coli wild-type SPS. Significantly, the SPS (C17S) mutant, which is inactive in the standard in vitro assay with selenide as substrate, was found to exhibit detectable activity in the presence of CsdB, CSD, or IscS and L-selenocysteine. Taken together the ability of the NifS-like proteins to generate a selenium substrate for SPS and the activation of the SPS (C17S) mutant suggest a selenium delivery function for the proteins in vivo.
引用
收藏
页码:23769 / 23773
页数:5
相关论文
共 39 条
[1]  
Aiba H, 1996, DNA Res, V3, P363, DOI 10.1093/dnares/3.6.363
[2]   The enzymology of sulfur activation during thiamin and biotin biosynthesis [J].
Begley, TP ;
Xi, J ;
Kinsland, C ;
Taylor, S ;
McLafferty, F .
CURRENT OPINION IN CHEMICAL BIOLOGY, 1999, 3 (05) :623-629
[3]   PURIFICATION AND CHARACTERIZATION OF SELENOCYSTEINE BETA-LYASE FROM CITROBACTER-FREUNDII [J].
CHOCAT, P ;
ESAKI, N ;
TANIZAWA, K ;
NAKAMURA, K ;
TANAKA, H ;
SODA, K .
JOURNAL OF BACTERIOLOGY, 1985, 163 (02) :669-676
[4]  
ESAKI N, 1982, J BIOL CHEM, V257, P4386
[5]   PURIFICATION AND CHARACTERIZATION OF CLOSTRIDIUM-STICKLANDII D-SELENOCYSTINE-ALPHA,BETA-LYASE [J].
ESAKI, N ;
SERANEEPRAKARN, V ;
TANAKA, H ;
SODA, K .
JOURNAL OF BACTERIOLOGY, 1988, 170 (02) :751-756
[6]   WHOLE-GENOME RANDOM SEQUENCING AND ASSEMBLY OF HAEMOPHILUS-INFLUENZAE RD [J].
FLEISCHMANN, RD ;
ADAMS, MD ;
WHITE, O ;
CLAYTON, RA ;
KIRKNESS, EF ;
KERLAVAGE, AR ;
BULT, CJ ;
TOMB, JF ;
DOUGHERTY, BA ;
MERRICK, JM ;
MCKENNEY, K ;
SUTTON, G ;
FITZHUGH, W ;
FIELDS, C ;
GOCAYNE, JD ;
SCOTT, J ;
SHIRLEY, R ;
LIU, LI ;
GLODEK, A ;
KELLEY, JM ;
WEIDMAN, JF ;
PHILLIPS, CA ;
SPRIGGS, T ;
HEDBLOM, E ;
COTTON, MD ;
UTTERBACK, TR ;
HANNA, MC ;
NGUYEN, DT ;
SAUDEK, DM ;
BRANDON, RC ;
FINE, LD ;
FRITCHMAN, JL ;
FUHRMANN, JL ;
GEOGHAGEN, NSM ;
GNEHM, CL ;
MCDONALD, LA ;
SMALL, KV ;
FRASER, CM ;
SMITH, HO ;
VENTER, JC .
SCIENCE, 1995, 269 (5223) :496-512
[7]  
Flint DH, 1996, J BIOL CHEM, V271, P16068
[8]  
FORCHHAMMER K, 1991, J BIOL CHEM, V266, P6318
[9]   Structure of a NifS homologue:: X-ray structure analysis of CsdB, an Escherichia coli counterpart of mammalian selenocysteine lyase [J].
Fujii, T ;
Maeda, M ;
Mihara, H ;
Kurihara, T ;
Esaki, N ;
Hata, Y .
BIOCHEMISTRY, 2000, 39 (06) :1263-1273
[10]   Reconstitution of the [4Fe-4S] cluster in FNR and demonstration of the aerobic-anaerobic transcription switch in vitro [J].
Green, J ;
Bennett, B ;
Jordan, P ;
Ralph, ET ;
Thomson, AJ ;
Guest, JR .
BIOCHEMICAL JOURNAL, 1996, 316 :887-892