首页> 外文OA文献 >Oxazolomycin Biosynthesis in Streptomyces albus JA3453 Featuring an “Acyltransferase-less” Type I Polyketide Synthase That Incorporates Two Distinct Extender Units*
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Oxazolomycin Biosynthesis in Streptomyces albus JA3453 Featuring an “Acyltransferase-less” Type I Polyketide Synthase That Incorporates Two Distinct Extender Units*

机译:阿维链霉菌JA3453中的恶唑球霉素生物合成具有“无酰基转移酶”的I型聚酮化合物合酶,其中包含两个不同的延伸单元*

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摘要

The oxazolomycins (OZMs) are a growing family of antibiotics produced by several Streptomyces species that show diverse and important antibacterial, antitumor, and anti-human immunodeficiency virus activity. Oxazolomycin A is a peptide-polyketide hybrid compound containing a unique spiro-linked β-lactone/γ-lactam, a 5-substituted oxazole ring. The oxazolomycin biosynthetic gene cluster (ozm) was identified from Streptomyces albus JA3453 and localized to 79.5-kb DNA, consisting of 20 open reading frames that encode non-ribosomal peptide synthases, polyketide synthases (PKSs), hybrid non-ribosomal peptide synthase-PKS, trans-acyltransferases (trans-ATs), enzymes for methoxymalonyl-acyl carrier protein (ACP) synthesis, putative resistance genes, and hypothetical regulation genes. In contrast to classical type I polyketide or fatty acid biosynthases, all 10 PKS modules in the gene cluster lack cognate ATs. Instead, discrete ATs OzmM (with tandem domains OzmM-AT1 and OzmM-AT2) and OzmC were equipped to carry out all of the loading functions of both malonyl-CoA and methoxymalonyl-ACP extender units. Strikingly, only OzmM-AT2 is required for OzmM activity for OZM biosynthesis, whereas OzmM-AT1 seemed to be a cryptic AT domain. The above findings, together with previous results using isotope-labeled precursor feeding assays, are assembled for the OZM biosynthesis model to be proposed. The incorporation of both malonyl-CoA (by OzmM-AT2) and methoxymalonyl-ACP (by OzmC) extender units seemed to be unprecedented for this class of trans-AT type I PKSs, which might be fruitfully manipulated to create structurally diverse novel compounds.
机译:恶唑菌霉素(OZMs)是由数个链霉菌属物种产生的不断增长的抗生素家族,它们显示出多种重要的抗菌,抗肿瘤和抗人类免疫缺陷病毒活性。恶唑霉素A是一种肽-聚酮化合物杂化化合物,它含有一个独特的螺旋连接的β-内酯/γ-内酰胺,一个5-取代的恶唑环。从白色链霉菌JA3453中鉴定出恶唑霉素的生物合成基因簇(ozm),并定位于79.5-kb DNA,该DNA由20个开放阅读框组成,编码非核糖体肽合酶,聚酮化合物合酶(PKS),杂合非核糖体肽合酶-PKS ,反式酰基转移酶(trans-ATs),甲氧基丙二酰基-酰基载体蛋白(ACP)合成的酶,推定的抗性基因和假设的调控基因。与经典的I型聚酮化合物或脂肪酸生物合成酶相反,基因簇中的所有10个PKS模块均缺乏同源AT。取而代之的是,配备了离散的ATs OzmM(具有串联域OzmM-AT1和OzmM-AT2)和OzmC,以执行丙二酰辅酶A和甲氧基丙二酰-ACP补充剂单元的所有加载功能。令人惊讶的是,Ozm生物合成的OzmM活性仅需要OzmM-AT2,而OzmM-AT1似乎是一个隐蔽的AT域。上面的发现,连同使用同位素标记的前体进料测定的先前结果,被组装用于拟议的OZM生物合成模型。丙二酰辅酶A(由OzmM-AT2提供)和甲氧基丙二酰ACP(由OzmC提供)增量剂单元的掺入对于此类反式I型I PKS似乎是空前的,可以对其进行有成果的操作以创建结构多样的新型化合物。

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