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(R)-β-酪氨酸的生物合成及其掺入到由红软骨霉产生的高细胞毒性软骨酰胺中。

Biosynthesis of (R)-beta-tyrosine and its incorporation into the highly cytotoxic chondramides produced by Chondromyces crocatus.

作者信息

Rachid Shwan, Krug Daniel, Weissman Kira J, Müller Rolf

机构信息

Institute for Pharmaceutical Biotechnology, Saarland University, Saarbrücken, Germany.

出版信息

J Biol Chem. 2007 Jul 27;282(30):21810-7. doi: 10.1074/jbc.M703439200. Epub 2007 Jun 1.

Abstract

The chondramides are mixed non-ribosomal peptide/polyketide secondary metabolites produced by the myxobacterium Chondromyces crocatus Cm c5, which exhibit strong cytotoxic activity. On the basis of their striking structural similarity to the marine depsipeptides jaspamides, the chondramides have been assumed to incorporate a (R)-beta-tyrosine moiety, an expectation we confirm here. Thus, the recent sequencing of the chondramide biosynthetic gene cluster provided the opportunity to probe the shared origin of this unusual beta-amino acid. We demonstrate here that (R)-beta-tyrosine is produced directly from l-tyrosine by the aminomutase CmdF. Along with the tyrosine aminomutase SgcC4 from the C-1027 enediyne pathway, this enzyme belongs to a novel family of tyrosine aminomutases related to the ammonium lyase family of enzymes but exhibits opposite facial selectivity for the hydroxycinnamate intermediate. We also show that the adenylation (A) domain in the chondramide pathway, which activates the beta-tyrosine building block, exhibits the required preference for (R)-beta-tyrosine, further arguing against alternative origins for the moiety in the chondramides. Comparison to the (S)-beta-tyrosine specific A domain SgcC1 should enhance our understanding of the structural and stereochemical determinants guiding amino acid selection by non-ribosomal peptide synthetase multienzymes.

摘要

软骨酰胺是由粘细菌软骨霉Chondromyces crocatus Cm c5产生的混合非核糖体肽/聚酮类次生代谢产物,具有很强的细胞毒性活性。基于它们与海洋缩肽jaspaamides惊人的结构相似性,推测软骨酰胺含有一个(R)-β-酪氨酸部分,我们在此证实了这一推测。因此,最近对软骨酰胺生物合成基因簇的测序为探究这种不寻常的β-氨基酸的共同起源提供了机会。我们在此证明,(R)-β-酪氨酸是由氨基变位酶CmdF直接从L-酪氨酸产生的。与来自C-1027烯二炔途径的酪氨酸氨基变位酶SgcC4一起,这种酶属于与铵裂解酶家族相关的新型酪氨酸氨基变位酶家族,但对羟基肉桂酸中间体表现出相反的面选择性。我们还表明,软骨酰胺途径中激活β-酪氨酸构建块的腺苷化(A)结构域对(R)-β-酪氨酸表现出所需的偏好,这进一步反驳了软骨酰胺中该部分的其他起源。与(S)-β-酪氨酸特异性A结构域SgcC1的比较应能增强我们对指导非核糖体肽合成酶多酶选择氨基酸的结构和立体化学决定因素的理解。

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