Methylmalonyl coenzyme A selectivity of cloned and expressed acyltransferase and beta-ketoacyl synthase domains of mycocerosic acid synthase from Mycobacterium bovis BCG

被引:14
作者
Fernandes, ND
Kolattukudy, PE
机构
[1] OHIO STATE UNIV,NEUROBIOTECHNOL CTR,COLUMBUS,OH 43210
[2] OHIO STATE UNIV,DEPT BIOCHEM,COLUMBUS,OH 43210
[3] OHIO STATE UNIV,DEPT MED BIOCHEM,COLUMBUS,OH 43210
关键词
D O I
10.1128/jb.179.23.7538-7543.1997
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Methyl-branched fatty acids and polyketides occur in a variety of living organisms. Previous studies have established that multifunctional enzymes use methylmalonyl coenzyme A (CoA) as the substrate to generate methyl-branched products such as mycocerosic acids and polyketides. However, eve do not know which of the component activities show selectivity for methylmalonyl-CoA in any biological system. A comparison of homologies of the domains of the multifunctional synthases that selectively use malonyl-CoA or methylmalonyl-CoA suggested that the acyltransferase (AT) and beta-ketoacyl synthase (KS) domains might he responsible for the substrate selectivity. To test this hypothesis, we expressed the AT and KS domains of the mycocerosic acid synthase (MAS) gene from Mycobacterium bovis BCG in Escherichia coli and examined whether they confer to synthases that normally do not use methylmalonyl-CoA the ability to incorporate methylmalonyl-Coh into fatty acids. Both the AT and the KS domains of MAS showed selectivity for methylmalonyl-CoA over malonyl-CoA. Acyl carrier protein (ACP)-dependent elongation of the n-C-12 acyl primer mainly by one methylmalonyl-CoA unit mas catalyzed by an E. coli fatty acid synthase preparation only in the presence of the expressed MAS domains. An ACP-dependent elongation of the n-C-20 acyl primer by one methylmalonyl-CoA extender unit was catalyzed by fatty acid synthase from Mycobacterium smegmatis only in the presence of the expressed MAS domains. These results show methylmalonyl-CoA selectivity for the AT and KS domains of MAS. These domains may be useful in producing novel polyketides by genetic engineering.
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页码:7538 / 7543
页数:6
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