β-ketoacyl-acyl carrier protein synthase III (FabH) is a determining factor in branched-chain fatty acid biosynthesis

被引:224
作者
Choi, KH
Heath, RJ
Rock, CO
机构
[1] St Jude Childrens Res Hosp, Dept Biochem, Memphis, TN 38105 USA
[2] Univ Tennessee, Dept Biochem, Memphis, TN 38163 USA
关键词
D O I
10.1128/JB.182.2.365-370.2000
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
A universal set of genes encodes the components of the dissociated, type II, fatty acid synthase system that is responsible for producing the multitude of fatty acid structures found in bacterial membranes. We examined the biochemical basis for the production of branched-chain fatty acids by gram-positive bacteria. Two genes that mere predicted to encode homologs of the beta-ketoacyl-acyl carrier protein synthase LII of Escherichia coli (eFabH) were identified in the Bacillus subtilis genome. Their protein products were expressed, purified, and biochemically characterized. Both B. subtilis FabH homologs, bFabH1 and bFabH2, carried out the initial condensation reaction of fatty acid biosynthesis with acetyl-coenzyme A (acetyl-CoA) as a primer, although they possessed lower specific activities than eFabH, bFabH1 and bFabH2 also utilized iso- and anteiso-branched-chain acyl-CoA primers as substrates. eFabH was not able to accept these CoA thioesters. Reconstitution of a complete round of fatty acid synthesis in vitro with purified E. coli proteins showed that eFabH was the only E, coli enzyme incapable of using branched-chain substrates. Expression of either bFabH1 or bFabH2 in E. coli resulted in the appearance of a branched-chain 17-carbon fatty acid, Thus, the substrate specificity of FabH is an important determinant of branched-chain fatty acid production.
引用
收藏
页码:365 / 370
页数:6
相关论文
共 34 条
[1]   Purification and properties of the Streptomyces peucetius DpsC β-ketoacyl:acyl carrier protein synthase III that specifies the propionate-starter unit for type II polyketide biosynthesis [J].
Bao, WL ;
Sheldon, PJ ;
Hutchinson, CR .
BIOCHEMISTRY, 1999, 38 (30) :9752-9757
[2]   The complete genome sequence of Escherichia coli K-12 [J].
Blattner, FR ;
Plunkett, G ;
Bloch, CA ;
Perna, NT ;
Burland, V ;
Riley, M ;
ColladoVides, J ;
Glasner, JD ;
Rode, CK ;
Mayhew, GF ;
Gregor, J ;
Davis, NW ;
Kirkpatrick, HA ;
Goeden, MA ;
Rose, DJ ;
Mau, B ;
Shao, Y .
SCIENCE, 1997, 277 (5331) :1453-+
[3]  
BLIGH EG, 1959, CAN J BIOCHEM PHYS, V37, P911
[4]  
BRADFORD MM, 1976, ANAL BIOCHEM, V72, P248, DOI 10.1016/0003-2697(76)90527-3
[5]  
BUTTERWORTH P H W, 1970, European Journal of Biochemistry, V12, P496, DOI 10.1111/j.1432-1033.1970.tb00878.x
[6]   Direct targets of phosphoinositide 3-kinase products in membrane traffic and signal transduction [J].
Corvera, S ;
Czech, MP .
TRENDS IN CELL BIOLOGY, 1998, 8 (11) :442-446
[7]  
CRONAN JE, 1996, ESCHERICHIA COLI SAL, P612
[8]   The complete genome of the hyperthermophilic bacterium Aquifex aeolicus [J].
Deckert, G ;
Warren, PV ;
Gaasterland, T ;
Young, WG ;
Lenox, AL ;
Graham, DE ;
Overbeek, R ;
Snead, MA ;
Keller, M ;
Aujay, M ;
Huber, R ;
Feldman, RA ;
Short, JM ;
Olsen, GJ ;
Swanson, RV .
NATURE, 1998, 392 (6674) :353-358
[9]   WHOLE-GENOME RANDOM SEQUENCING AND ASSEMBLY OF HAEMOPHILUS-INFLUENZAE RD [J].
FLEISCHMANN, RD ;
ADAMS, MD ;
WHITE, O ;
CLAYTON, RA ;
KIRKNESS, EF ;
KERLAVAGE, AR ;
BULT, CJ ;
TOMB, JF ;
DOUGHERTY, BA ;
MERRICK, JM ;
MCKENNEY, K ;
SUTTON, G ;
FITZHUGH, W ;
FIELDS, C ;
GOCAYNE, JD ;
SCOTT, J ;
SHIRLEY, R ;
LIU, LI ;
GLODEK, A ;
KELLEY, JM ;
WEIDMAN, JF ;
PHILLIPS, CA ;
SPRIGGS, T ;
HEDBLOM, E ;
COTTON, MD ;
UTTERBACK, TR ;
HANNA, MC ;
NGUYEN, DT ;
SAUDEK, DM ;
BRANDON, RC ;
FINE, LD ;
FRITCHMAN, JL ;
FUHRMANN, JL ;
GEOGHAGEN, NSM ;
GNEHM, CL ;
MCDONALD, LA ;
SMALL, KV ;
FRASER, CM ;
SMITH, HO ;
VENTER, JC .
SCIENCE, 1995, 269 (5223) :496-512
[10]   Characterization of β-ketoacyl-acyl carrier protein synthase III from Streptomyces glaucescens and its role in initiation of fatty acid biosynthesis [J].
Han, L ;
Lobo, S ;
Reynolds, KA .
JOURNAL OF BACTERIOLOGY, 1998, 180 (17) :4481-4486