Evolution of vitamin B2 biosynthesis:: 6,7-dimethyl-8-ribityllumazine synthases of Brucella

被引:20
作者
Zylberman, Vanesa
Klinke, Sebastian
Haase, Ilka
Bacher, Adelbert
Fischer, Markus
Goldbaum, Fernando Alberto
机构
[1] Fdn Inst Leloir, Buenos Aires, DF, Argentina
[2] Tech Univ Munich, Lehrstuhl Organ Chem & Biochem, D-85748 Garching, Germany
关键词
D O I
10.1128/JB.00207-06
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The penultimate step in the biosynthesis of riboflavin (vitamin 132) involves the condensation of 3,4-dihydroxy-2-butanone 4-phosphate with 5-amino-6-ribitylamino-2,4(1-H,3H)-pyrimidinedione, which is catalyzed by 6,7-dimethyl-8-ribityliumazine synthase (lumazine synthase). Pathogenic Brucella species adapted to an intracellular lifestyle have two genes involved in riboflavin synthesis, ribH1 and ribH2, which are located on different chromosomes. The ribH2 gene was shown previously to specify a lumazine synthase (type II lumazine synthase) with an unusual decameric structure and a very high K. for 3,4-dihydroxy-2-butanone 4-phosphate. Moreover, the protein was found to be an immunodominant Brucella antigen and was able to generate strong humoral as well as cellular immunity against Brucella abortus in mice. We have now cloned and expressed the ribH1 gene, which is located inside a small riboflavin operon, together with two other putative riboflavin biosynthesis genes and the nusB gene, specifying an antitermination factor. The RibH1 protein (type I lumazine synthase) is a homopentamer catalyzing the formation of 6,7-dimethyl-8-ribityliumazine at a rate of 18 nmol mg(-1) min(-1). Sequence comparison of lumazine synthases from archaea, bacteria, plants, and fungi suggests a family of proteins comprising archaeal lumazine and riboflavin synthases, type I lumazine synthases, and the eubacterial type II lumazine synthases.
引用
收藏
页码:6135 / 6142
页数:8
相关论文
共 58 条
[1]  
BACHER A, 1986, METHOD ENZYMOL, V122, P192
[2]   A polymeric bacterial protein activates dendritic cells via TLR4 [J].
Bergner, PM ;
Mundiñano, J ;
Piazzon, I ;
Goldbaum, FA .
JOURNAL OF IMMUNOLOGY, 2006, 176 (04) :2366-2372
[3]  
BULLOCK WO, 1987, BIOTECHNIQUES, V5, P376
[4]   The genome sequence of the facultative intracellular pathogen Brucella melitensis [J].
DelVecchio, VG ;
Kapatral, V ;
Redkar, RJ ;
Patra, G ;
Mujer, C ;
Los, T ;
Ivanova, N ;
Anderson, I ;
Bhattacharyya, A ;
Lykidis, A ;
Reznik, G ;
Jablonski, L ;
Larsen, N ;
D'Souza, M ;
Bernal, A ;
Mazur, M ;
Goltsman, E ;
Selkov, E ;
Elzer, PH ;
Hagius, S ;
O'Callaghan, D ;
Letesson, JJ ;
Haselkorn, R ;
Kyrpides, N ;
Overbeek, R .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2002, 99 (01) :443-448
[5]   Cloning, sequencing, mapping and hyperexpression of the ribC gene coding for riboflavin synthase of Escherichia coli [J].
Eberhardt, S ;
Richter, G ;
Gimbel, W ;
Werner, T ;
Bacher, A .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1996, 242 (03) :712-719
[6]   Biosynthesis of riboflavin: An unusual riboflavin synthase of Methanobacterium thermoautotrophicum [J].
Eberhardt, S ;
Korn, S ;
Lottspeich, F ;
Bacher, A .
JOURNAL OF BACTERIOLOGY, 1997, 179 (09) :2938-2943
[7]   Potential anti-infective targets in pathogenic yeasts:: Structure and properties of 3,4-dihydroxy-2-butanone 4-phosphate synthase of Candida albicans [J].
Echt, S ;
Bauer, S ;
Steinbacher, S ;
Huber, R ;
Bacher, A ;
Fischer, M .
JOURNAL OF MOLECULAR BIOLOGY, 2004, 341 (04) :1085-1096
[8]  
FELSENSTEIN J, 1987, EVOLUTION, V12, P783
[9]   Biosynthesis of flavocoenzymes [J].
Fischer, M ;
Bacher, A .
NATURAL PRODUCT REPORTS, 2005, 22 (03) :324-350
[10]   Biosynthesis of vitamin B2 in plants [J].
Fischer, M ;
Bacher, A .
PHYSIOLOGIA PLANTARUM, 2006, 126 (03) :304-318