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A combination of polyunsaturated fatty acid, nonribosomal peptide and polyketide biosynthetic machinery is used to assemble the zeamine antibiotics

机译:多不饱和脂肪酸,非纤维素肽和聚酮化合物生物合成机械的组合用于组装Zeamine抗生素

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The zeamines are a unique group of antibiotics produced by Serratia plymuthica RVH1 that contain variable hybrid peptide–polyketide moieties connected to a common pentaamino-hydroxyalkyl chain. They exhibit potent activity against a broad spectrum of Gram-positive and Gram-negative bacteria. Here we report a combination of targeted gene deletions, high resolution LC-MS(/MS) analyses, in vitro biochemical assays and feeding studies that define the functions of several key zeamine biosynthetic enzymes. The pentaamino-hydroxyalkyl chain is assembled by an iterative multienzyme complex (Zmn10–13) that bears a close resemblance to polyunsaturated fatty acid synthases. Zmn14 was shown to function as an NADH-dependent thioester reductase and is proposed to release a tetraamino-hydroxyalkyl thioester from the acyl carrier protein domain of Zmn10 as an aldehyde. Despite the intrinsic ability of Zmn14 to catalyze further reduction of aldehydes to alcohols, the initially-formed aldehyde intermediate is proposed to undergo preferential transamination to produce zeamine II. In a parallel pathway, hexapeptide-monoketide and hexapeptide-diketide thioesters are generated by a hybrid nonribosomal peptide synthetase-polyketide synthase multienzyme complex (Zmn16–18) and subsequently conjugated to zeamine II by a stand-alone condensing enzyme (Zmn19). Structures for the resulting prezeamines were elucidated using a combination of high resolution LC-MS/MS and 1- and 2-D NMR spectroscopic analyses. The prezeamines are hypothesized to be precursors of the previously-identified zeamines, which are generated by the action of Zmn22, an acylpeptide hydrolase that specifically cleaves the N-terminal pentapeptide of the prezeamines in a post-assembly processing step. Thus, the zeamine antibiotics are assembled by a unique combination of nonribosomal peptide synthetase, type I modular polyketide synthase and polyunsaturated fatty acid synthase-like biosynthetic machinery.
机译:Zeamines是由Serratia Plymuthica RVH1产生的独特抗生素组,其含有连接到普通的羟基 - 羟烷基链的可变杂种肽 - 聚酮化合物部分。它们对革兰氏阳性和革兰氏阴性细菌的广谱表现出有效的活性。在这里,我们报告了靶向基因缺失,高分辨率LC-MS(/ MS)分析的组合,体外生化测定和饲养研究,其定义了几个关键的Zeamine生物合成酶的功能。五氨基 - 羟基烷基链通过迭代偏见(ZMN10-13)组装,其与多不饱和脂肪酸合成酶紧密相似。显示ZMN14用作依赖于NADH依赖性硫酯还原酶,并提出从ZMN10的酰基载体蛋白结构酯作为醛释放四氨基 - 羟烷基硫酯。尽管ZMN14的内在能力催化进一步将醛还原为醇,但提出了最初形成的醛中间体以进行优先级重级以产生Zeamine II。在平行途径中,通过杂交非纤维素肽合成酶 - 聚酮合酶偏见(ZMN16-18)产生Hexapeptide-monoketide和Hexapeptide-Diketide硫酯,随后通过独立的冷凝酶(ZMN19)与Zeamine II缀合。使用高分辨率LC-MS / MS和1-和2-D NMR光谱分析的组合阐明了所得预沸点的结构。将预沸点假设为先前鉴定的血氨酸的前体,其由ZMN22的作用产生丙二肽水解酶,该酰肽水解酶在后组装后处理步骤中具体地切割预先偏见的N-末端五肽。因此,Zeamine抗生素通过非纤维素肽合成酶的独特组合组装,I型模块化聚酮合酶和多不饱和脂肪酸合酶样生物合成机械。

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