CRYSTAL-STRUCTURE OF A FLAVOPROTEIN RELATED TO THE SUBUNITS OF BACTERIAL LUCIFERASE

被引:38
作者
MOORE, SA
JAMES, MNG
OKANE, DJ
LEE, J
机构
[1] UNIV ALBERTA,DEPT BIOCHEM,MED RES COUNCIL CANADA,PROT STRUCT & FUNCT GRP,EDMONTON T6G 2H7,ALBERTA,CANADA
[2] UNIV GEORGIA,DEPT BIOCHEM,ATHENS,GA 30602
关键词
CRYSTAL STRUCTURE; LUXF PROTEIN; NONFLUORESCENT FLAVOPROTEIN; PHOTOBACTERIUM-LEIOGNATHI;
D O I
10.1002/j.1460-2075.1993.tb05824.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
The molecular structure of the luxF protein from the bioluminescent bacterium Photobacterium leiognathi has been determined by X-ray diffraction techniques and refined to a conventional R-factor of 17.8% at 2.3 angstrom resolution. The 228 amino acid polypeptide exists as a symmetrical homodimer and 33% of the monomer's solvent-accessible surface area is buried upon dimerization. The monomer displays a novel fold that contains a central seven-stranded beta-barrel. The solvent-exposed surface of the monomer is covered by seven alpha-helices, whereas the dimer interface is primarily a flat surface composed of beta-strands. The protein monomer binds two molecules of flavin mononucleotide, each of which has C6 of the flavin isoalloxazine moiety covalently attached to the C3' carbon atom of myristic acid. Both myristyl groups of these adducts are buried within the hydrophobic core of the protein. One of the cofactors contributes to interactions at the dimer interface. The luxF protein displays considerable amino acid sequence homology with both alpha- and beta-subunits of bacterial luciferase, especially the beta-subunit. Conserved amino acid residues shared between luxF and the luciferase subunits cluster predominantly in two distinct regions of the luxF protein molecule. These homologous regions in the luciferase subunits probably share a three-dimensional fold similar to that of the luxF protein.
引用
收藏
页码:1767 / 1774
页数:8
相关论文
共 37 条
[1]  
[Anonymous], FLAVINS FLAVOPROTEIN
[2]   AN INVESTIGATION OF PROTEIN SUBUNIT AND DOMAIN INTERFACES [J].
ARGOS, P .
PROTEIN ENGINEERING, 1988, 2 (02) :101-113
[3]   THE COMPLETE NUCLEOTIDE-SEQUENCE OF THE LUX REGULON OF VIBRIO-FISCHERI AND THE LUXABN REGION OF PHOTOBACTERIUM-LEIOGNATHI AND THE MECHANISM OF CONTROL OF BACTERIAL BIOLUMINESCENCE [J].
BALDWIN, TO ;
DEVINE, JH ;
HECKEL, RC ;
LIN, JW ;
SHADEL, GS .
JOURNAL OF BIOLUMINESCENCE AND CHEMILUMINESCENCE, 1989, 4 (01) :326-341
[4]  
BALDWIN TO, 1992, CHEM BIOCH FLAVOENZY, P467
[5]  
BRANDEN C, 1991, INTRO PROTEIN STRUCT, P47
[6]   SLOW-COOLING PROTOCOLS FOR CRYSTALLOGRAPHIC REFINEMENT BY SIMULATED ANNEALING [J].
BRUNGER, AT ;
KRUKOWSKI, A ;
ERICKSON, JW .
ACTA CRYSTALLOGRAPHICA SECTION A, 1990, 46 :585-593
[7]   CRYSTALLOGRAPHIC R-FACTOR REFINEMENT BY MOLECULAR-DYNAMICS [J].
BRUNGER, AT ;
KURIYAN, J ;
KARPLUS, M .
SCIENCE, 1987, 235 (4787) :458-460
[8]   ANALYTICAL MOLECULAR-SURFACE CALCULATION [J].
CONNOLLY, ML .
JOURNAL OF APPLIED CRYSTALLOGRAPHY, 1983, 16 (OCT) :548-558
[9]   YELLOW LIGHT-EMISSION OF VIBRIO-FISCHERI STRAIN Y-1 - PURIFICATION AND CHARACTERIZATION OF THE ENERGY-ACCEPTING YELLOW FLUORESCENT PROTEIN [J].
DAUBNER, SC ;
ASTORGA, AM ;
LEISMAN, GB ;
BALDWIN, TO .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1987, 84 (24) :8912-8916
[10]   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