Biosynthetic analysis of the petrobactin siderophore pathway from Bacillus anthracis

被引:91
作者
Lee, Jung Yeop
Janes, Brian K.
Passalacqua, Karla D.
Pfleger, Brian F.
Bergman, Nicholas H.
Liu, Haichuan
Hakansson, Kristina
Somu, Ravindranadh V.
Aldrich, Courtney C.
Cendrowski, Stephen
Hanna, Philip C.
Sherman, David H.
机构
[1] Univ Michigan, Life Sci Inst, Ann Arbor, MI 48109 USA
[2] Univ Michigan, Dept Med Chem, Ann Arbor, MI 48109 USA
[3] Univ Michigan, Sch Med, Dept Microbiol & Immunol, Ann Arbor, MI 48109 USA
[4] Univ Michigan, Sch Med, Bioinformat Program, Ann Arbor, MI 48109 USA
[5] Univ Michigan, Dept Chem, Ann Arbor, MI 48109 USA
[6] Univ Minnesota, Ctr Drug Design, Acad Hlth Ctr, Minneapolis, MN 55455 USA
[7] Michigan State Univ, Dept Microbiol & Mol Genet, E Lansing, MI 48824 USA
[8] Michigan State Univ, Med Technol Program, E Lansing, MI 48824 USA
关键词
D O I
10.1128/JB.01526-06
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The asbABCDEF gene cluster from Bacillus anthracis is responsible for biosynthesis of petrobactin, a catecholate siderophore that functions in both iron acquisition and virulence in a murine model of anthrax. We initiated studies to determine the biosynthetic details of petrobactin assembly based on mutational analysis of the asb operon, identification of accumulated intermediates, and addition of exogenous siderophores to asb mutant strains. As a starting point, in-frame deletions of each of the genes in the asb locus (asbABCDEF) were constructed. The individual mutations resulted in complete abrogation of petrobactin biosynthesis when strains were grown on iron-depleted medium. However, in vitro analysis showed that each asb mutant grew to a very limited extent as vegetative cells in iron-depleted medium. In contrast, none of the B. anthracis asb mutant strains were able to outgrow from spores under the same culture conditions. Provision of exogenous petrobactin was able to rescue the growth defect in each asb mutant strain. Taken together, these data provide compelling evidence that AsbA performs the penultimate step in the biosynthesis of petrobactin, involving condensation of 3,4-dihydroxybenzoyl spermidine with citrate to form 3,4-dihydroxybenzoyl spermidinyl citrate. As a final step, the data reveal that AsbB catalyzes condensation of a second molecule of 3,4-dihydroxybenzoyl spermidine with 3,4-dihydroxybenzoyl spermidinyl citrate to form the mature siderophore. This work sets the stage for detailed biochemical studies with this unique acyl carrier protein-dependent, nonribosomal peptide synthetase-independent biosynthetic system.
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收藏
页码:1698 / 1710
页数:13
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