3-Deoxy-D-manno-oct-2-ulosonic acid (Kdo) transferase (WaaA) and Kdo kinase (KdkA) of Haemophilus influenzae are both required to complement a waaA knockout mutation of Escherichia coli

被引:31
作者
Brabetz, W [1 ]
Müller-Loennies, S [1 ]
Brade, H [1 ]
机构
[1] Res Ctr Borstel, Ctr Med & Biosci, Div Med & Biochem Microbiol, D-23845 Borstel, Germany
关键词
D O I
10.1074/jbc.M005204200
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 lipopolysaccharide (LPS) of the deep rough mutant Haemophilus influenzae I69 consists of lipid A and a single 3-deoxy-D-manno-oct-2-ulosonic acid (Kdo) residue substituted with one phosphate at position 4 or 5 (Helander, I. M,, Lindner, B,, Brade, H., Altmann, K,, Lindberg, A. A., Rietschel, E, T,, and Zahringer, U, (1988) fur. J, Biochem, 177, 483-492), The waaA gene encoding the essential LPS-specific Kdo transferase was cloned from this strain, and its nucleotide sequence was identical to H, influenzae DSM11121, The gene was expressed in the Gram-positive host Corynebacterium glutamicum: and characterized in vitro to encode a monofunctional Kdo transferase. waaA of H, influenzae could not complement a knockout mutation in the corresponding gene of an Re-type Escherichia coli strain. However, complementation was possible by coexpressing the recombinant waaA together with the LPS-specific Kdo kinase gene (kdkA) of H, influenzae DSM11121 or I69, respectively. The sequences of both kdkA genes were determined and differed in 25 nucleotides, giving rise to six amino acid exchanges between the deduced proteins. Both E, coli strains which expressed waaA and kdkA from H, influenzae synthesized an LPS containing a single Kdo residue that was exclusively phosphorylated: at position 4, The structure was determined by nuclear magnetic resonance spectroscopy of deacylated LPS, Therefore, the reaction products of both cloned Kdo kinases represent only one of the two chemical structures synthesized by H, influenzae I69.
引用
收藏
页码:34954 / 34962
页数:9
相关论文
共 43 条
[1]  
Ausubel F. M., 1999, SHORT PROTOCOLS MOL
[2]   SENSITIVITY-ENHANCED TWO-DIMENSIONAL HETERONUCLEAR SHIFT CORRELATION NMR-SPECTROSCOPY [J].
BAX, A ;
SUBRAMANIAN, S .
JOURNAL OF MAGNETIC RESONANCE, 1986, 67 (03) :565-569
[3]   INHIBITION OF LIPOPOLYSACCHARIDE BIOSYNTHESIS AND CELL-GROWTH FOLLOWING INACTIVATION OF THE KDTA GENE IN ESCHERICHIA-COLI [J].
BELUNIS, CJ ;
CLEMENTZ, T ;
CARTY, SM ;
RAETZ, CRH .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (46) :27646-27652
[4]  
BELUNIS CJ, 1992, J BIOL CHEM, V267, P9988
[5]   Cloning and characterization of 3-deoxy-D-manno-oct-2-ulosonic acid (Kdo) transferase genes (kdtA) from Acinetobacter baumannii and Acinetobacter haemolyticus [J].
Bode, CE ;
Brabetz, W ;
Brade, H .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1998, 254 (02) :404-412
[6]   Comparative analyses of secondary gene products of 3-deoxy-D-manno-oct-2-ulosonic acid transferases from Chlamydiaceae in Escherichia coli K-12 [J].
Brabetz, W ;
Lindner, B ;
Brade, H .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 2000, 267 (17) :5458-5465
[7]   Deletion of the heptosyltransferase genes rfaC and rfaF in Escherichia coli K-12 results in an Re-type lipopolysaccharide with a high degree of 2-aminoethanol phosphate substitution [J].
Brabetz, W ;
MullerLoennies, S ;
Holst, O ;
Brade, H .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1997, 247 (02) :716-724
[8]   PHOSPHOTRANSFERASE SEQUENCE HOMOLOGY [J].
BRENNER, S .
NATURE, 1987, 329 (6134) :21-21
[9]  
BROZEK KA, 1989, J BIOL CHEM, V264, P6956
[10]  
BULLOCK WO, 1987, BIOTECHNIQUES, V5, P376