Use of firefly luciferase for ATP measurement: Other nucleotides enhance turnover

被引:0
作者
Ford, SR [1 ]
Chenault, KH [1 ]
Bunton, LS [1 ]
Hampton, GJ [1 ]
McCarthy, J [1 ]
Hall, MS [1 ]
Pangburn, SJ [1 ]
Buck, LM [1 ]
Leach, FR [1 ]
机构
[1] OKLAHOMA STATE UNIV,DEPT BIOCHEM & MOL BIOL,STILLWATER,OK 74078
来源
JOURNAL OF BIOLUMINESCENCE AND CHEMILUMINESCENCE | 1996年 / 11卷 / 03期
关键词
firefly luciferase; nucleotides; ATP; bioluminescence; activation; inhibition; product release;
D O I
10.1002/(SICI)1099-1271(199605)11:3<149::AID-BIO411>3.0.CO;2-Q
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
Firefly luciferase utilizes only ATP and a few closely related nucleotides as substrates for the formation of luciferyl adenylate which is an intermediate in the bioluminescent reaction sequence that oxidizes firefly luciferin. The enzyme shows two different time courses of light production depending on ATP concentration used: a flash with high concentrations of ATP (>8 mu M) or a fairly constant production of light with lower concentrations of ATP (<1 mu M). Many nucleotides. nucleotide-containing substances and other compounds, when added either prior to or 1 min after the addition of ATP, change the time course of light production. When added before ATP, these compounds yield a reaction mixture in which light production is fairly constant (at the level characteristic of the flash observed with that ATP concentration). When the compounds are added after ATP addition, light production is markedly stimulated and the higher rate of light production is maintained for several minutes. There is an increase in quanta of light produced per luciferase dimer from 1 to 5/min with the addition of any of several nucleotide analogues. These results are consistent with a stimulated release of the inhibitory product oxyluciferin, allowing turnover of the enzyme. This enzyme turnover permits more light output at high ATP concentrations, thus enhancing the sensitivity of enzyme determination.
引用
收藏
页码:149 / 167
页数:19
相关论文
共 61 条
[1]   THE FUNCTION OF COENZYME-A IN LUMINESCENCE [J].
AIRTH, RL ;
RHODES, WC ;
MCELROY, WD .
BIOCHIMICA ET BIOPHYSICA ACTA, 1958, 27 (03) :519-532
[2]   X-RAY STUDIES OF THE BINDING OF CIBACRON BLUE F3GA TO LIVER ALCOHOL-DEHYDROGENASE [J].
BIELLMANN, JF ;
SAMAMA, JP ;
BRANDEN, CI ;
EKLUND, H .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1979, 102 (01) :107-110
[3]   2 KINETICALLY DISTINGUISHABLE ATP SITES IN FIREFLY LUCIFERASE [J].
DELUCA, M ;
MCELROY, WD .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1984, 123 (02) :764-770
[4]   FACTORS AFFECTING THE KINETICS OF LIGHT-EMISSION FROM CRUDE AND PURIFIED FIREFLY LUCIFERASE [J].
DELUCA, M ;
WANNLUND, J ;
MCELROY, WD .
ANALYTICAL BIOCHEMISTRY, 1979, 95 (01) :194-198
[5]  
DELUCA M, 1976, ADV ENZYMOL RAMB, V44, P37
[6]   KINETICS OF FIREFLY LUCIFERASE CATALYZED REACTIONS [J].
DELUCA, M ;
MCELROY, WD .
BIOCHEMISTRY, 1974, 13 (05) :921-925
[7]   HYDROPHOBIC NATURE OF ACTIVE SITE OF FIREFLY LUCIFERASE [J].
DELUCA, M .
BIOCHEMISTRY, 1969, 8 (01) :160-&
[8]  
DeLuca M., 1978, METHOD ENZYMOL, V57, P3, DOI DOI 10.1016/0076-6879(78)57003-1
[9]  
DEMENTEVA EI, 1986, BIOCHEMISTRY-MOSCOW+, V51, P111
[10]   PSEUDO-ALLOSTERIC BEHAVIOR OF FIREFLY LUCIFERASE [J].
DENBURG, J ;
DELUCA, M .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1968, 31 (03) :453-&