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新生霉素生物合成中香豆素的形成:细胞色素P450 NovI对氨酰基酶酪氨酰-S-NovH进行β-羟基化作用。

Coumarin formation in novobiocin biosynthesis: beta-hydroxylation of the aminoacyl enzyme tyrosyl-S-NovH by a cytochrome P450 NovI.

作者信息

Chen H, Walsh C T

机构信息

Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, 240 Longwood Avenue, Boston, MA 02115, USA.

出版信息

Chem Biol. 2001 Apr;8(4):301-12. doi: 10.1016/s1074-5521(01)00009-6.

Abstract

BACKGROUND

Coumarin group antibiotics, such as novobiocin, coumermycin A1 and clorobiocin, are potent inhibitors of DNA gyrase. These antibiotics have been isolated from various Streptomyces species and all possess a 3-amino-4-hydroxy-coumarin moiety as their structural core. Prior labeling experiments on novobiocin established that the coumarin moiety was derived from L-tyrosine, probably via a beta-hydroxy-tyrosine (beta-OH-Tyr) intermediate. Recently the novobiocin gene cluster from Streptomyces spheroides was cloned and sequenced and allows analysis of the biosynthesis of the coumarin at the biochemical level using overexpressed and purified proteins.

RESULTS

Two open reading frames (ORFs), NovH and NovI, from the novobiocin producer S. spheroides have been overexpressed in Escherichia coli, purified and characterized for tyrosine activation and oxygenation which are the initial steps in coumarin formation. The 65 kDa NovH has two predicted domains, an adenylation (A) and a peptidyl carrier protein (PCP), reminiscent of non-ribosomal peptide synthetases. Purified NovH catalyzes L-tyrosyl-AMP formation by its A domain, can be posttranslationally phosphopantetheinylated on the PCP domain, and accumulates the covalent L-tyrosyl-S-enzyme intermediate on the holo PCP domain. The second enzyme in the pathway, NovI, is a 45 kDa heme protein that functions as a cytochrome P450-type monooxygenase with specificity for the tyrosyl-S-NovH acyl enzyme. The product beta-OH-tyrosyl-S-NovH was detected by alkaline release and high performance liquid chromatography analysis of radioactive [3H]beta-OH-Tyr and by mass spectrometry. Also detected was 4-OH-benzaldehyde, a retro aldol breakdown product of beta-OH-Tyr. The amino acid released was (3R,2S)-3-OH-Tyr by comparison with authentic standards.

CONCLUSIONS

This work establishes that NovH and NovI are responsible for the formation of a beta-OH-Tyr intermediate that is covalently tethered to NovH in novobiocin biosynthesis. Comparable A-PCP/P450 pairs for amino acid beta-hydroxylation are found in various biosynthetic gene clusters, such as ORF19/ORF20 in the chloroeremomycin cluster for tyrosine, CumC/CumD in the coumermycin A1 cluster for tyrosine, and NikP1/NikQ in the nikkomycin cluster for histidine. This phenomenon of covalent docking of the amino acid in a kinetically stable thioester linkage prior to chemical modification by downstream tailoring enzymes, could represent a common strategy for controlling the partitioning of the amino acid for incorporation into secondary metabolites.

摘要

背景

香豆素类抗生素,如新生霉素、香豆霉素A1和氯新生霉素,是DNA回旋酶的有效抑制剂。这些抗生素已从各种链霉菌属中分离出来,并且都具有一个3-氨基-4-羟基香豆素部分作为其结构核心。先前对新生霉素的标记实验表明,香豆素部分源自L-酪氨酸,可能是通过β-羟基酪氨酸(β-OH-Tyr)中间体。最近,来自球形链霉菌的新生霉素基因簇被克隆和测序,这使得能够在生化水平上使用过表达和纯化的蛋白质来分析香豆素的生物合成。

结果

来自新生霉素产生菌球形链霉菌的两个开放阅读框(ORF),NovH和NovI,已在大肠杆菌中过表达、纯化,并对酪氨酸激活和氧化进行了表征,这是香豆素形成的初始步骤。65 kDa的NovH有两个预测结构域,一个腺苷化(A)结构域和一个肽基载体蛋白(PCP)结构域,让人联想到非核糖体肽合成酶。纯化的NovH通过其A结构域催化L-酪氨酰-AMP的形成,可在PCP结构域上进行翻译后磷酸泛酰巯基化,并在全酶PCP结构域上积累共价L-酪氨酰-S-酶中间体。该途径中的第二种酶NovI是一种45 kDa的血红素蛋白,作为细胞色素P450型单加氧酶发挥作用,对酪氨酰-S-NovH酰基酶具有特异性。通过碱性释放以及放射性[3H]β-OH-Tyr的高效液相色谱分析和质谱检测到了产物β-OH-酪氨酰-S-NovH。还检测到了4-羟基苯甲醛,它是β-OH-Tyr的逆羟醛分解产物。与标准品比较,释放出的氨基酸为(3R,2S)-3-OH-Tyr。

结论

这项工作确定NovH和NovI负责在新生霉素生物合成中形成与NovH共价连接的β-OH-Tyr中间体。在各种生物合成基因簇中发现了用于氨基酸β-羟基化的类似A-PCP/P450对,例如氯埃雷莫霉素簇中用于酪氨酸的ORF19/ORF20、香豆霉素A1簇中用于酪氨酸的CumC/CumD以及尼可霉素簇中用于组氨酸的NikP1/NikQ。在下游修饰酶进行化学修饰之前,氨基酸以动力学稳定的硫酯键共价对接的这种现象,可能代表了一种控制氨基酸分配以纳入次级代谢产物的常见策略。

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