BORONIC ACIDS AS MECHANISTIC PROBES FOR THE BACTERIAL LUCIFERASE REACTION

被引:10
作者
AHRENS, M
MACHEROUX, P
EBERHARD, A
GHISLA, S
BRANCHAUD, BP
HASTINGS, JW
机构
[1] UNIV CONSTANCE,FAK BIOL,W-7750 CONSTANCE,GERMANY
[2] UNIV OREGON,DEPT CHEM,EUGENE,OR 97403
[3] HARVARD UNIV,BIOL LABS,CAMBRIDGE,MA 02138
[4] ITHACA COLL,DEPT CHEM,ITHACA,NY 14850
关键词
D O I
10.1111/j.1751-1097.1991.tb02019.x
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
Bacterial luciferase uses long chain aldehydes as substrates. Alkylboronic acid analogs of these substrates with chain lengths of C7 and C9 have been synthesized, characterized, and used as mechanistic probes for the light emitting reaction. They behave as inhibitors in the in vitro luminescence reaction. Contrary to an earlier report (Macheroux and Ghisla, 1985, Nachr. Chem. Tech. Lab. 33, 785-790) they are not substrates for bacterial luciferase, in that they do not lead to light emission and are not oxidized by the flavin-4a-hydroperoxide to the products boric acid and the corresponding alcohol, as would be expected from a Baeyer-Villiger reaction. However, the particular conformation of a putative boronic acid hydroperoxide at the active center might be such that it would preclude a Baeyer-Villiger fragmentation. Thus, while the results do not support the postulate that luciferase proceeds via a Baeyer-Villiger mechanism, they also do not exclude it. A further observation was that the endogenous light emission (no added aldehyde) decays more rapidly than does the luciferase bound flavin-4a-hydroperoxide. This suggests that the endogeneous light is not caused by the decomposition of the flavin-4a-hydroperoxide.
引用
收藏
页码:295 / 299
页数:5
相关论文
共 21 条
[1]   REVERSIBLE STEPS IN THE REACTION OF ALDEHYDES WITH BACTERIAL LUCIFERASE INTERMEDIATES [J].
BAUMSTARK, AL ;
CLINE, TW ;
HASTINGS, JW .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1979, 193 (02) :449-455
[2]   ACTIVITY AND STABILITY OF LUCIFERASE-FLAVIN INTERMEDIATE [J].
BECVAR, JE ;
TU, SC ;
HASTINGS, JW .
BIOCHEMISTRY, 1978, 17 (09) :1807-1812
[3]  
BOLTZ DF, 1978, CHEM ANAL, V8, P1
[4]   FUNCTIONAL-GROUP DIVERSITY IN ENZYMATIC OXYGENATION REACTIONS CATALYZED BY BACTERIAL FLAVIN-CONTAINING CYCLOHEXANONE OXYGENASE [J].
BRANCHAUD, BP ;
WALSH, CT .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1985, 107 (07) :2153-2161
[5]   POSTULATED MECHANISM FOR BIOLUMINESCENT OXIDATION OF REDUCED FLAVIN MONONUCLEOTIDE [J].
EBERHARD, A ;
HASTINGS, JW .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1972, 47 (02) :348-&
[6]   A TIME-DEPENDENT BACTERIAL BIOLUMINESCENCE EMISSION-SPECTRUM IN AN INVITRO SINGLE TURNOVER SYSTEM - ENERGY-TRANSFER ALONE CANNOT ACCOUNT FOR THE YELLOW EMISSION OF VIBRIO-FISCHERI Y-1 [J].
ECKSTEIN, JW ;
CHO, KW ;
COLEPICOLO, P ;
GHISLA, S ;
HASTINGS, JW ;
WILSON, T .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1990, 87 (04) :1466-1470
[7]  
Ghisla S., 1987, FLAVINS FLAVOPROTEIN, P601
[8]  
Hastings J.W., 1966, BIOLUMINESCENCE PROG, P151
[9]   BIOCHEMISTRY AND PHYSIOLOGY OF BIOLUMINESCENT BACTERIA [J].
HASTINGS, JW ;
POTRIKUS, CJ ;
GUPTA, SC ;
KURFURST, M ;
MAKEMSON, JC .
ADVANCES IN MICROBIAL PHYSIOLOGY, 1985, 26 :235-291
[10]  
HASTINGS JW, 1963, J BIOL CHEM, V238, P2537