首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Regiospecific O-Methylation of Naphthoic Acids Catalyzed by NcsB1 an O-Methyltransferase Involved in the Biosynthesis of the Enediyne Antitumor Antibiotic Neocarzinostatin
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Regiospecific O-Methylation of Naphthoic Acids Catalyzed by NcsB1 an O-Methyltransferase Involved in the Biosynthesis of the Enediyne Antitumor Antibiotic Neocarzinostatin

机译:NcsB1催化的萘甲酸的区域专一性O-甲基化NcsB1是一种参与Enediyne抗肿瘤抗生素新carzinostatin的生物合成的O-甲基转移酶。

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摘要

Neocarzinostatin, a clinical anticancer drug, is the archetypal member of the chromoprotein family of enediyne antitumor antibiotics that are composed of a nonprotein chromophore and an apoprotein. The neocarzinostatin chromophore consists of a nine-membered enediyne core, a deoxyaminosugar, and a naphthoic acid moiety. We have previously cloned and sequenced the neocarzinostatin biosynthetic gene cluster and proposed that the biosynthesis of the naphthoic acid moiety and its incorporation into the neocarzinostatin chromophore are catalyzed by five enzymes NcsB, NcsB1, NcsB2, NcsB3, and NcsB4. Here we report the biochemical characterization of NcsB1, unveiling that: (i) NcsB1 is an S-adenosyl-l-methionine-dependent O-methyltransferase; (ii) NcsB1 catalyzes regiospecific methylation at the 7-hydroxy group of its native substrate, 2,7-dihydroxy-5-methyl-1-naphthoic acid; (iii) NcsB1 also recognizes other dihydroxynaphthoic acids as substrates and catalyzes regiospecific O-methylation; and (iv) the carboxylate and its ortho-hydroxy groups of the substrate appear to be crucial for NcsB1 substrate recognition and binding, and O-methylation takes place only at the free hydroxy group of these dihydroxynaphthoic acids. These findings establish that NcsB1 catalyzes the third step in the biosynthesis of the naphthoic acid moiety of the neocarzinostatin chromophore and further support the early proposal for the biosynthesis of the naphthoic acid and its incorporation into the neocarzinostatin chromophore with free naphthoic acids serving as intermediates. NcsB1 represents another opportunity that can now be exploited to produce novel neocarzinostatin analogs by engineering neocarzinostatin biosynthesis or applying directed biosynthesis strategies.
机译:Neocarzinostatin是一种临床抗癌药物,是由非蛋白发色团和载脂蛋白组成的二烯类抗肿瘤抗生素的色蛋白家族的原型成员。新卡司他汀生色团由一个九元烯二炔核,一个脱氧氨基糖和一个萘甲酸部分组成。我们之前已经克隆和测序了新carcarinostatin生物合成基因簇,并提出了萘甲酸部分的生物合成及其掺入neurocarzinostatin生色团是由五个酶NcsB,NcsB1,NcsB2,NcsB3和NcsB4催化的。在这里,我们报告NcsB1的生化特性,揭示:(i)NcsB1是S-腺苷-1-蛋氨酸依赖性O-甲基转移酶; (ii)NcsB1催化其天然底物2,7-二羟基-5-甲基-1-甲基萘甲酸的7-羟基处的区域特异性甲基化; (iii)NcsB1还识别其他二羟基萘甲酸作为底物并催化区域特异性O-甲基化; (iv)底物的羧酸盐及其邻羟基似乎对于NcsB1底物的识别和结合至关重要,并且O-甲基化仅在这些二羟基萘甲酸的游离羟基处发生。这些发现表明,NcsB1催化新碳抑制素生色团的萘甲酸部分生物合成的第三步,并进一步支持了萘酸的生物合成及其以游离萘甲酸为中间体并入新碳抑素生色团的早期提议。 NcsB1代表了另一个机会,现在可以通过工程化新碳素抑制素生物合成或应用定向生物合成策略来开发新的新碳素抑制素类似物。

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