QUINOLINATE SYNTHETASE - THE OXYGEN-SENSITIVE SITE OF DE-NOVO NAD(P)+ BIOSYNTHESIS

被引:46
作者
GARDNER, PR [1 ]
FRIDOVICH, I [1 ]
机构
[1] DUKE UNIV,MED CTR,DEPT BIOCHEM,DURHAM,NC 27710
基金
美国国家卫生研究院; 美国国家科学基金会;
关键词
D O I
10.1016/0003-9861(91)90270-S
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
The ability of niacin to relieve the growth-inhibiting effect of hyperoxia on Escherichia coli can be attributed to the dioxygen sensitivity of quinolinate synthetase. The activity of this enzyme within E. coli was diminished by exposure of the cells to 4.2 atm O2, while the activity in extracts was rapidly decreased by 0.2 atm O2. Neither catalase nor superoxide dismutase afforded detectable protection against the inactivating effect of O2, indicating that H2O2 and O2- were not significant intermediates in this process. Nevertheless, H2O2 at 1.0 mm did inactivate quinolinate synthetase, even under anaerobic conditions and in the absence of catalatic activity which might have generated O2. Addition of paraquat to aerobic cultures of E. coli caused an inactivation of quinolinate synthetase, which may be explained in terms of an increase in the production of H2O2. The O2-dependent inactivation of quinolinate synthetase in extracts was gradually reversed during anaerobic incubation and this reactivation was blocked by α,α′-dipyridyl or by 1,10-phenanthroline. The sequence of the quinolinate synthetase "A" protein contains a-cys-w-x-cys-y-z-cys-sequence, which is characteristic of (FeS)4-containing proteins. This sequence, together with the effect of the Fe(II)-chelating agents, suggests that the O2-sensitive site of quinolinate synthetase is an iron-sulfur cluster which is essential for the dehydration reaction catalyzed by the A protein. © 1991.
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页码:106 / 111
页数:6
相关论文
共 25 条
[1]  
BEERS RF, 1952, J BIOL CHEM, V195, P133
[2]   RECENT DEVELOPMENTS IN THE FIELD OF IRON-SULFUR PROTEINS [J].
BEINERT, H .
FASEB JOURNAL, 1990, 4 (08) :2483-2491
[3]   REACTION OF BACILLUS-SUBTILIS GLUTAMINE PHOSPHORIBOSYLPYROPHOSPHATE AMIDOTRANSFERASE WITH OXYGEN - CHEMISTRY AND REGULATION BY LIGANDS [J].
BERNLOHR, DA ;
SWITZER, RL .
BIOCHEMISTRY, 1981, 20 (20) :5675-5681
[4]   PARAQUAT TOXICITY AND PYRIDINE-NUCLEOTIDE COENZYME SYNTHESIS - A DATA CORRECTION [J].
BROWN, OR ;
SEITHER, RL .
FREE RADICAL BIOLOGY AND MEDICINE, 1990, 8 (02) :113-116
[5]   PYRIDINE-NUCLEOTIDE COENZYME BIOSYNTHESIS - CELLULAR SITE OF OXYGEN-TOXICITY [J].
BROWN, OR ;
SONG, CS .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1980, 93 (01) :172-178
[6]   OXYGEN POISONING OF NAD BIOSYNTHESIS - PROPOSED SITE OF CELLULAR OXYGEN-TOXICITY [J].
BROWN, OR ;
YEIN, F ;
BOEHME, D ;
FOUDIN, L ;
SONG, CS .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1979, 91 (03) :982-990
[7]   STUDIES ON DE-NOVO BIOSYNTHESIS OF NAD IN ESCHERICHIA-COLI .2. QUANTITATIVE METHOD FOR ISOLATING QUINOLINIC ACID FROM BIOLOGICAL-MATERIALS [J].
CHANDLER, JL ;
GHOLSON, RK .
ANALYTICAL BIOCHEMISTRY, 1972, 48 (02) :529-&
[8]   MOLECULAR-BIOLOGY OF PYRIDINE-NUCLEOTIDE BIOSYNTHESIS IN ESCHERICHIA-COLI - CLONING AND CHARACTERIZATION OF QUINOLINATE SYNTHESIS GENES NADA AND NADB [J].
FLACHMANN, R ;
KUNZ, N ;
SEIFERT, J ;
GUTLICH, M ;
WIENTJES, FJ ;
LAUFER, A ;
GASSEN, HG .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1988, 175 (02) :221-228
[9]  
FLINT CH, 1988, BIOSYNTHESIS BRANCHE, P285
[10]   QUINOLINATE PHOSPHORIBOSYL TRANSFERASE IS NOT THE OXYGEN-SENSITIVE SITE OF NICOTINAMIDE ADENINE-DINUCLEOTIDE BIOSYNTHESIS [J].
GARDNER, PR ;
FRIDOVICH, I .
FREE RADICAL BIOLOGY AND MEDICINE, 1990, 8 (02) :117-119