Yim Grace, Kalan Lindsay, Koteva Kalinka, Thaker Maulik N, Waglechner Nicholas, Tang Irene, Wright Gerard D
Department of Biochemistry and Biomedical Sciences, The M. G. DeGroote Institute for Infectious Disease Research, McMaster University, Hamilton, ON, L8N 3Z5 (Canada).
Chembiochem. 2014 Nov 24;15(17):2613-23. doi: 10.1002/cbic.201402179. Epub 2014 Sep 26.
In this study, a draft genome sequence of Actinoplanes sp. ATCC 53533 was assembled, and an 81-kb biosynthetic cluster for the unusual sulfated glycopeptide UK-68,597 was identified. Glycopeptide antibiotics are important in the treatment of infections caused by Gram-positive bacteria. Glycopeptides contain heptapeptide backbones that are modified by many tailoring enzymes, including glycosyltransferases, sulfotransferases, methyltransferases, and halogenases, generating extensive chemical and functional diversity. Several tailoring enzymes in the cluster were examined in vitro for their ability to modify glycopeptides, resulting in the synthesis of novel molecules. Tailoring enzymes were also expressed in the producer of the glycopeptide aglycone A47934, generating additional chemical diversity. This work characterizes the biosynthetic program of UK-68,597 and demonstrates the capacity to expand glycopeptide chemical diversity by harnessing the unique chemistry of tailoring enzymes.
在本研究中,组装了游动放线菌属菌株ATCC 53533的基因组序列草图,并鉴定出一个81 kb的用于合成不寻常的硫酸化糖肽UK-68,597的生物合成基因簇。糖肽类抗生素在治疗革兰氏阳性菌引起的感染中很重要。糖肽含有七肽主链,这些主链会被许多修饰酶修饰,包括糖基转移酶、磺基转移酶、甲基转移酶和卤化酶,从而产生广泛的化学和功能多样性。对该基因簇中的几种修饰酶进行了体外修饰糖肽的能力检测,从而合成了新分子。修饰酶也在糖肽苷元A47934的产生菌中表达,产生了更多的化学多样性。这项工作表征了UK-68,597的生物合成程序,并证明了通过利用修饰酶的独特化学性质来扩展糖肽化学多样性的能力。