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Facile Detection of Acyl- and Peptidyl- intermediates on Thiotemplate Carrier Domains via Phosphopantetheinyl Elimination Reactions During Tandem Mass Spectrometry

机译:在串联质谱分析中通过磷泛亚乙烯基消除反应轻松检测硫代模板载体结构域上的酰基和肽基中间体

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摘要

With the emergence of drug resistance and the genomic revolution there has been a renewed interest in the genes that are responsible for the generation of bioactive natural products. Secondary metabolites of one major class are biosynthesized at one or more sites by ultra large enzymes that carry covalent intermediates on phosphopantetheine arms. Because such intermediates are difficult to characterize in vitro, we have developed a new approach for streamlined detection of substrates, intermediates and products attached to a phosphopantetheinyl arm of the carrier site. During vibrational activation of gas phase carrier domains, facile elimination occurs in benchtop and Fourier-Transform mass spectrometers alike. Phosphopantetheinyl ejections quickly reduce >100 kDa megaenzymes to <1000 Da ions for structural assignment of intermediates at <0.007 Da mass accuracy without proteolytic digestion. This “Top Down” approach quickly illuminated diverse acyl-intermediates on the carrier domains of the nonribosomal peptide synthetases (NRPSs) or polyketide synthases (PKSs) found in the biosynthetic pathways of prodigiosin, pyoluteorin, mycosubtilin, nikkomycin, enterobactin, gramicidin and several proteins from the orphan pksX gene cluster from Bacillus subtilis. By focusing on just those regions undergoing covalent chemistry, the method delivered clean proof for the reversible dehydration of hydroxymethylglutaryl-S-PksL via incorporation of 2H or 18O from the buffer. The facile nature of this revised assay will allow diverse laboratories to spearhead their NRPS/PKS projects with benchtop mass spectrometers.
机译:随着耐药性的出现和基因组的革命,人们对引起生物活性天然产物产生的基因有了新的兴趣。一种主要类别的次要代谢物是通过一种超大酶在一个或多个位点生物合成的,超大酶在磷酸泛肽臂上带有共价中间体。由于此类中间体很难在体外进行表征,因此我们开发了一种新方法,可简化检测载体,载体上磷酸泛肽亚基臂上的底物,中间体和产物的方法。在气相载流子域的振动激活过程中,在台式和傅立叶变换质谱仪中都容易消除。磷酸泛素的喷射可将> 100 kDa的大酶迅速还原为<1000 Da的离子,从而以<0.007 Da的质量精度对中间体进行结构分配,而无需进行蛋白水解消化。这种“自上而下”的方法迅速阐明了在原黄体素,焦磷酸叶黄素,霉菌素,尼古霉素,肠抑菌素,葡聚糖酶和几种蛋白质的生物合成途径中发现的非核糖体肽合成酶(NRPSs)或聚酮化合物合成酶(PKSs)的载体结构域上的各种酰基中间体。来自枯草芽孢杆菌的孤儿pksX基因簇。通过仅关注那些经历共价化学作用的区域,该方法通过从缓冲液中引入 2 H或 18 O为羟甲基戊二烯基-S-PksL可逆脱水提供了清晰的证据。 。修订后的分析方法简便易行,可让各种实验室利用台式质谱仪带头开展其NRPS / PKS项目。

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