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Organization of the biosynthetic gene cluster for the polyketide anthelmintic macrolide avermectin in Streptomyces avermitilis

机译:阿维链霉菌中聚酮化合物驱虫药大环内酯阿维菌素的生物合成基因簇的组织

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摘要

Analysis of the gene cluster from Streptomyces avermitilis that governs the biosynthesis of the polyketide anthelmintic avermectin revealed that it contains four large ORFs encoding giant multifunctional polypeptides of the avermectin polyketide synthase (AVES 1, AVES 2, AVES 3, and AVES 4). These clustered polyketide synthase genes responsible for avermectin biosynthesis together encode 12 homologous sets of enzyme activities (modules), each catalyzing a specific round of polyketide chain elongation. The clustered genes encoding polyketide synthase are organized as two sets of six modular repeats, aveA1-aveA2 and aveA3-aveA4, which are convergently transcribed. The total of 55 constituent active sites makes this the most complex multifunctional enzyme system identified to date. The sequenced DNA region contains 14 additional ORFs, some of which encode polypeptides governing other key steps in avermectin biosynthesis. Between the two sets of polyketide synthase genes lie two genes involved in postpolyketide modification, one of which encodes cynthochrome P450 hydroxylase that probably catalyzes furan ring formation at C6 to C8a. Immediately right of the large polyketide synthase genes is a set of genes involved in oleandrose biosynthesis and its transglycosylation to polyketide-derived aglycons. This cluster includes nine genes, but one is not functional in the biosynthesis of avermectin. On the left side of polyketide synthase genes, two ORFs encoding methyltransferase and nonpolyketide synthase ketoreductase involved in postpolyketide modification are located to the left of the polyketide synthase genes, and an adjacent gene encodes a regulatory function that may be involved in activation of the transcription of avermectin biosynthetic genes.
机译:阿维链霉菌控制聚酮类驱虫药阿维菌素生物合成的基因簇的分析表明,它含有四个编码ORVectin聚酮合成酶的巨型多功能多肽的大型ORF(AVES 1,AVES 2,AVES 3和AVES 4)。这些聚集的负责阿维菌素生物合成的聚酮化合物合酶基因一起编码12组酶活性(模块)的同源集合,每个催化特定的一轮聚酮化合物链延长。编码聚酮化合物合酶的聚簇基因被组织为两个六个模块重复序列,即aveA1-aveA2和aveA3-aveA4,它们会被转录。总共55个组成性活性位点使它成为迄今为止鉴定出的最复杂的多功能酶系统。测序的DNA区域包含14个其他ORF,其中一些编码控制阿维菌素生物合成中其他关键步骤的多肽。在两组聚酮化合物合酶基因之间有两个与聚酮化合物后修饰有关的基因,其中一个基因编码cynthochrome P450羟化酶,该酶可能催化C6至C8a的呋喃环形成。大型聚酮化合物合酶基因的正好是一组与夹竹桃糖生物合成及其转糖基化为聚酮化合物衍生的糖苷配基有关的基因。该簇包括九个基因,但一个在阿维菌素的生物合成中不起作用。在聚酮化合物合酶基因的左侧,参与聚酮化合物合酶修饰的编码甲基转移酶和非聚酮化合物合酶酮还原酶的两个ORF位于聚酮化合物合酶基因的左侧,并且一个相邻的基因编码一种调节功能,该功能可能参与了转录激活阿维菌素生物合成基因。

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