KINETIC-ANALYSIS OF THE INDUCTION PERIOD IN LIPOXYGENASE CATALYSIS

被引:59
作者
SCHILSTRA, MJ [1 ]
VELDINK, GA [1 ]
VLIEGENTHART, JFG [1 ]
机构
[1] UNIV UTRECHT,DEPT BIOORGAN CHEM,BIJVOET CTR BIOMOLEC RES,PADUALAAN 8,3584 CH UTRECHT,NETHERLANDS
关键词
D O I
10.1021/bi00081a012
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 dioxygenation of 50 muM linoleate at 0.1 muM (13S)-hydroperoxylinoleate, 240 muM O2, pH 10, and 25-degrees-C, catalyzed by varying amounts of soybean lipoxygenase-1, was studied with rapid kinetic techniques. The aim was to assess the effect of transient redistributions of the Fe(II) and Fe(III) enzyme forms on the shape of the reaction progress curves. Reactions initiated with iron(II) lipoxygenase show an initial increase in rate, the ''kinetic lag phase'' or ''induction period''. The duration of this induction period varies from approximately 1 s at [lipoxygenase] > 20 nM to 5 s at [lipoxygenase] = 3 nM. At [lipoxygenase] < 2 nM, the duration of the induction period in these curves is inversely proportional to [lipoxygenase]. The integrated steady-state rate equation for the single fatty acid binding site model of lipoxygenase catalysis [Schilstra et al. (1992) Biochemistry 31, 7692-7699] also shows an induction period whose duration is inversely proportional to [lipoxygenase]. These observations, in combination with non-steady-state numerical simulations, lead to the conclusion that, at [lipoxygenase] < 2 nM, pre-steady-state redistributions of enzyme intermediates occur fast with respect to the rate at which the concentrations of substrates and products change. At higher lipoxygenase concentrations, the pre-steady-state redistributions contribute significantly to the induction period. From a nonlinear least-squares fit to the steady-state rate equation of data obtained at lipoxygenase concentrations of 0.5 and 1 nM, it was calculated that 1% of the linoleate radicals that are formed after hydrogen abstraction dissociate from the active site before enzymic oxygen insertion has occurred.
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页码:7686 / 7691
页数:6
相关论文
共 25 条
[1]  
[Anonymous], 1969, DATA REDUCTION ERROR
[2]  
AOSHIMA H, 1977, BIOCHIM BIOPHYS ACTA, V486, P121
[3]   ANALYSIS OF PROGRESS CURVES IN ENZYME-KINETICS [J].
CORNISHBOWDEN, AJ .
BIOCHEMICAL JOURNAL, 1972, 130 (02) :637-+
[4]   DEMONSTRATION BY EPR SPECTROSCOPY OF FUNCTIONAL ROLE OF IRON IN SOYBEAN LIPOXYGENASE-1 [J].
DEGROOT, JJM ;
VELDINK, GA ;
VLIEGENTHART, JFG ;
BOLDINGH, J ;
WEVER, R ;
VANGELDER, BF .
BIOCHIMICA ET BIOPHYSICA ACTA, 1975, 377 (01) :71-79
[5]   INTERACTION OF SOYBEAN LIPOXYGENASE-1 AND 13-L-HYDROPEROXYLINOLEIC ACID, INVOLVING YELLOW AND PURPLE COLORED ENZYME SPECIES [J].
DEGROOT, JJM ;
GARSSEN, GJ ;
VELDINK, GA ;
VLIEGENTHART, JFG ;
BOLDINGH, J ;
EGMOND, MR .
FEBS LETTERS, 1975, 56 (01) :50-54
[6]   STEREOSPECIFICITY OF HYDROGEN ABSTRACTION AT CARBON-ATOM N-8 IN OXYGENATION OF LINOLEIC ACID BY LIPOXYGENASES FROM CORN GERMS AND SOYA BEANS [J].
EGMOND, MR ;
VLIEGENTHART, JF ;
BOLDINGH, J .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1972, 48 (05) :1055-+
[7]   STEADY-STATE KINETICS OF OXYGENATION OF LINOLEIC-ACID CATALYZED BY SOYBEAN LIPOXYGENASE [J].
EGMOND, MR ;
BRUNORI, M ;
FASELLA, PM .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1976, 61 (01) :93-100
[8]   MECHANISM OF ACTION OF SOYBEAN LIPOXYGENASE-1 - STOPPED-FLOW KINETIC STUDY OF FORMATION AND CONVERSION OF YELLOW AND PURPLE ENZYME SPECIES [J].
EGMOND, MR ;
FASELLA, PM ;
VELDINK, GA ;
VLIEGENTHART, JFG ;
BOLDINGH, J .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1977, 76 (02) :469-479
[9]  
EGMOND MR, 1973, BIOCHIM BIOPHYS ACTA, V326, P279
[10]   INFLUENCE OF OXYGEN ON FLUORESCENCE OF LIPOXYGENASE [J].
FINAZZIAGRO, A ;
AVIGLIANO, L ;
VELDINK, GA ;
VLIEGENTHART, JF ;
BOLDINGH, J .
BIOCHIMICA ET BIOPHYSICA ACTA, 1973, 326 (03) :462-470