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L-苏氨酸转醛醇酶是奥巴霉素生物合成中 L-赤式-β-羟基-α-氨基酸组装所必需的。

An L-threonine transaldolase is required for L-threo-β-hydroxy-α-amino acid assembly during obafluorin biosynthesis.

机构信息

Department of Molecular Microbiology, John Innes Centre, Norwich Research Park, Norwich NR4 7UH, UK.

出版信息

Nat Commun. 2017 Jun 26;8:15935. doi: 10.1038/ncomms15935.

Abstract

β-Lactone natural products occur infrequently in nature but possess a variety of potent and valuable biological activities. They are commonly derived from β-hydroxy-α-amino acids, which are themselves valuable chiral building blocks for chemical synthesis and precursors to numerous important medicines. However, despite a number of excellent synthetic methods for their asymmetric synthesis, few effective enzymatic tools exist for their preparation. Here we report cloning of the biosynthetic gene cluster for the β-lactone antibiotic obafluorin and delineate its biosynthetic pathway. We identify a nonribosomal peptide synthetase with an unusual domain architecture and an L-threonine:4-nitrophenylacetaldehyde transaldolase responsible for (2S,3R)-2-amino-3-hydroxy-4-(4-nitrophenyl)butanoate biosynthesis. Phylogenetic analysis sheds light on the evolutionary origin of this rare enzyme family and identifies further gene clusters encoding L-threonine transaldolases. We also present preliminary data suggesting that L-threonine transaldolases might be useful for the preparation of L-threo-β-hydroxy-α-amino acids.

摘要

β-内酰胺天然产物在自然界中很少见,但具有多种有效且有价值的生物活性。它们通常来源于β-羟基-α-氨基酸,这些氨基酸本身就是化学合成有价值的手性构建块,也是许多重要药物的前体。然而,尽管有许多用于不对称合成的出色合成方法,但用于制备它们的有效酶工具却很少。在这里,我们报道了β-内酰胺抗生素 obafluorin 的生物合成基因簇的克隆,并阐明了其生物合成途径。我们鉴定了一种具有不寻常结构域架构的非核糖体肽合成酶和一种 L-苏氨酸:4-硝基苯乙醛转醛酶,它们负责(2S,3R)-2-氨基-3-羟基-4-(4-硝基苯基)丁酸盐的生物合成。系统发育分析阐明了这种稀有酶家族的进化起源,并确定了进一步编码 L-苏氨酸转醛酶的基因簇。我们还提供了初步数据,表明 L-苏氨酸转醛酶可能有助于制备 L-苏氨酸-β-羟基-α-氨基酸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f07/5490192/dc59a8d25f4f/ncomms15935-f1.jpg

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