Duitman E H, Hamoen L W, Rembold M, Venema G, Seitz H, Saenger W, Bernhard F, Reinhardt R, Schmidt M, Ullrich C, Stein T, Leenders F, Vater J
Department of Genetics, Groningen Biomolecular Sciences and Biotechnology Institute, Kerklaan 30, 9751 NN Haren, The Netherlands.
Proc Natl Acad Sci U S A. 1999 Nov 9;96(23):13294-9. doi: 10.1073/pnas.96.23.13294.
Bacillus subtilis strain ATCC6633 has been identified as a producer of mycosubtilin, a potent antifungal peptide antibiotic. Mycosubtilin, which belongs to the iturin family of lipopeptide antibiotics, is characterized by a beta-amino fatty acid moiety linked to the circular heptapeptide Asn-Tyr-Asn-Gln-Pro-Ser-Asn, with the second, third, and sixth position present in the D-configuration. The gene cluster from B. subtilis ATCC6633 specifying the biosynthesis of mycosubtilin was identified. The putative operon spans 38 kb and consists of four ORFs, designated fenF, mycA, mycB, and mycC, with strong homologies to the family of peptide synthetases. Biochemical characterization showed that MycB specifically adenylates tyrosine, as expected for mycosubtilin synthetase, and insertional mutagenesis of the operon resulted in a mycosubtilin-negative phenotype. The mycosubtilin synthetase reveals features unique for peptide synthetases as well as for fatty acid synthases: (i) The mycosubtilin synthase subunit A (MycA) combines functional domains derived from peptide synthetases, amino transferases, and fatty acid synthases. MycA represents the first example of a natural hybrid between these enzyme families. (ii) The organization of the synthetase subunits deviates from that commonly found in peptide synthetases. On the basis of the described characteristics of the mycosubtilin synthetase, we present a model for the biosynthesis of iturin lipopeptide antibiotics. Comparison of the sequences flanking the mycosubtilin operon of B. subtilis ATCC6633, with the complete genome sequence of B. subtilis strain 168 indicates that the fengycin and mycosubtilin lipopeptide synthetase operons are exchanged between the two B. subtilis strains.
枯草芽孢杆菌菌株ATCC6633已被鉴定为真菌枯草菌素的产生菌,真菌枯草菌素是一种强效抗真菌肽抗生素。真菌枯草菌素属于脂肽抗生素的iturin家族,其特征在于与环状七肽Asn-Tyr-Asn-Gln-Pro-Ser-Asn相连的β-氨基脂肪酸部分,其中第二、第三和第六位为D-构型。鉴定了来自枯草芽孢杆菌ATCC6633的指定真菌枯草菌素生物合成的基因簇。推测的操纵子跨度为38 kb,由四个开放阅读框组成,分别命名为fenF、mycA、mycB和mycC,与肽合成酶家族具有高度同源性。生化特性表明,MycB特异性地使酪氨酸腺苷酸化,这与真菌枯草菌素合成酶预期的情况一致,并且该操纵子的插入诱变导致了真菌枯草菌素阴性表型。真菌枯草菌素合成酶揭示了肽合成酶和脂肪酸合成酶独特的特征:(i)真菌枯草菌素合成酶亚基A(MycA)结合了源自肽合成酶、氨基转移酶和脂肪酸合成酶的功能域。MycA代表了这些酶家族之间天然杂交的第一个例子。(ii)合成酶亚基的组织不同于肽合成酶中常见的组织。基于所描述的真菌枯草菌素合成酶的特征,我们提出了iturin脂肽抗生素生物合成的模型。将枯草芽孢杆菌ATCC6633的真菌枯草菌素操纵子侧翼序列与枯草芽孢杆菌菌株168的完整基因组序列进行比较,表明丰原素和真菌枯草菌素脂肽合成酶操纵子在这两种枯草芽孢杆菌菌株之间发生了交换。