STOPPED-FLOW KINETIC-ANALYSIS OF THE BACTERIAL LUCIFERASE REACTION

被引:33
|
作者
ABUSOUD, H
MULLINS, LS
BALDWIN, TO
RAUSHEL, FM
机构
[1] TEXAS A&M UNIV SYST,DEPT CHEM,COLLEGE STN,TX 77843
[2] TEXAS A&M UNIV SYST,DEPT BIOCHEM & BIOPHYS,COLLEGE STN,TX 77843
[3] TEXAS A&M UNIV SYST,CTR MACROMOLEC DESIGN,COLLEGE STN,TX 77843
关键词
D O I
10.1021/bi00130a011
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 kinetics of the reaction catalyzed by bacterial luciferase have been measured by stopped-flow spectrophotometry at pH 7 and 25-degrees-C. Luciferase catalyzes the formation of visible light, FMN, and a carboxylic acid from FMNH2, O2, and the corresponding aldehyde. The time courses for the formation and decay of the various intermediates have been followed by monitoring the absorbance changes at 380 and 445 nm along with the emission of visible light using n-decanal as the alkyl aldehyde. The synthesis of the 4a-hydroperoxyflavin intermediate (FMNOOH) was monitored at 380 nm after various concentrations of luciferase, O2, and FMNH2 were mixed. The second-order rate constant for the formation of FMNOOH from the luciferase-FMNH2 complex was found to be 2.4 X 10(6) M-1 s-1. In the absence of n-decanal, this complex decays to FMN and H2O2 with a rate constant of 0.10 s-1. The enzyme-FMNH2 complex was found to isomerize prior to reaction with oxygen. The production of visible light reaches a maximum intensity within 1 s and then decays exponentially over the next 10 s. The formation of FMN from the intermediate pseudobase (FMNOH) was monitored at 445 nm. This step of the reaction mechanism was inhibited by high levels of n-decanal which indicated that a dead-end luciferase-FMNOH-decanal could form. The time courses for the these optical changes have been incorporated into a comprehensive kinetic model. Estimates for 15 individual rate constants have been obtained for this model by numeric simulations of the various time courses.
引用
收藏
页码:3807 / 3813
页数:7
相关论文
共 50 条
  • [1] STOPPED-FLOW KINETIC-ANALYSIS FOR MONITORING SUPEROXIDE DECAY IN AQUEOUS SYSTEMS
    RILEY, DP
    RIVERS, WJ
    WEISS, RH
    ANALYTICAL BIOCHEMISTRY, 1991, 196 (02) : 344 - 349
  • [2] FLUORESCENCE STOPPED-FLOW KINETIC-ANALYSIS OF ANTHRACYCLINES-DNA INTERACTION
    RIZZO, V
    SACCHI, N
    VALENTINI, L
    BIOCHEMICAL PHARMACOLOGY, 1988, 37 (09) : 1819 - 1820
  • [3] STOPPED-FLOW KINETIC-ANALYSIS OF FUNCTIONAL MIMICS OF MANGANESE SUPEROXIDE-DISMUTASE
    RILEY, DP
    RIVERS, WJ
    ASTON, KW
    WEISS, RH
    FREE RADICAL BIOLOGY AND MEDICINE, 1993, 15 (05) : 514 - 514
  • [4] NONLINEAR MULTICOMPONENT KINETIC-ANALYSIS FOR THE SIMULTANEOUS STOPPED-FLOW DETERMINATION OF CHEMILUMINESCENCE ENHANCERS
    DIAZ, AN
    GARCIA, JAG
    ANALYTICAL CHEMISTRY, 1994, 66 (07) : 988 - 993
  • [5] STOPPED-FLOW KINETIC-ANALYSIS OF THE ENZYMATIC DEHALOGENATION OF 4-CHLOROBENZOYL-COENZYME-A
    LIU, RQ
    YANG, G
    LIANG, PH
    TAYLOR, KL
    WU, X
    PRICE, JN
    ZHANG, WH
    DUNAWAYMARIANO, D
    FASEB JOURNAL, 1995, 9 (06): : A1292 - A1292
  • [6] MODULAR STOPPED-FLOW DIODE-ARRAY DETECTION SYSTEM FOR SIMULTANEOUS KINETIC-ANALYSIS
    GUTIERREZ, MC
    GOMEZHENS, A
    PEREZBENDITO, D
    ANALYTICA CHIMICA ACTA, 1989, 225 (01) : 115 - 122
  • [7] KINETIC-ANALYSIS OF BINARY-MIXTURES OF ALIPHATIC CARBOXYLIC-ACIDS WITH A STOPPED-FLOW TECHNIQUE
    MENTASTI, E
    PELIZZETTI, E
    SAINI, G
    ANALYTICA CHIMICA ACTA, 1976, 86 (OCT) : 303 - 307
  • [8] STOPPED-FLOW KINETIC-ANALYSIS OF EXOCYTOSIS AND RISE IN CYTOSOLIC CALCIUM-CONCENTRATION IN HUMAN PLATELETS
    SAGE, SO
    HEEMSKERK, JWM
    JOURNAL OF PHYSIOLOGY-LONDON, 1992, 446 : P344 - P344
  • [9] AUTOMATED STOPPED-FLOW KINETIC ANALYSIS OF SERUM ENZYMES
    LOTT, JA
    TURNER, K
    AMERICAN JOURNAL OF CLINICAL PATHOLOGY, 1973, 59 (06) : 846 - 857
  • [10] CRITICAL-EVALUATION OF PUTATIVE SUPEROXIDE-DISMUTASE MIMICS BY THE DIRECT TECHNIQUE OF STOPPED-FLOW KINETIC-ANALYSIS
    WEISS, RH
    RILEY, DP
    RIVERS, WJ
    FASEB JOURNAL, 1992, 6 (04): : A1304 - A1304