Shao Zengyi, Blodgett Joshua A V, Circello Benjamin T, Eliot Andrew C, Woodyer Ryan, Li Gongyong, van der Donk Wilfred A, Metcalf William W, Zhao Huimin
Department of Chemical and Biomolecular Engineering and Chemistry, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.
J Biol Chem. 2008 Aug 22;283(34):23161-8. doi: 10.1074/jbc.M801788200. Epub 2008 Jun 10.
Phosphonic acids encompass a common yet chemically diverse class of natural products that often possess potent biological activities. Here we report that, despite the significant structural differences among many of these compounds, their biosynthetic routes contain an unexpected common intermediate, 2-hydroxyethyl-phosphonate, which is synthesized from phosphonoacetaldehyde by a distinct family of metal-dependent alcohol dehydrogenases (ADHs). Although the sequence identity of the ADH family members is relatively low (34-37%), in vitro biochemical characterization of the homologs involved in biosynthesis of the antibiotics fosfomycin, phosphinothricin tripeptide, and dehydrophos (formerly A53868) unequivocally confirms their enzymatic activities. These unique ADHs have exquisite substrate specificity, unusual metal requirements, and an unprecedented monomeric quaternary structure. Further, sequence analysis shows that these ADHs form a monophyletic group along with additional family members encoded by putative phosphonate biosynthetic gene clusters. Thus, the reduction of phosphonoacetaldehyde to hydroxyethyl-phosphonate may represent a common step in the biosynthesis of many phosphonate natural products, a finding that lends insight into the evolution of phosphonate biosynthetic pathways and the chemical structures of new C-P containing secondary metabolites.
膦酸类化合物包含一类常见但化学结构多样的天然产物,这类产物通常具有强大的生物活性。在此我们报告,尽管这些化合物中的许多在结构上存在显著差异,但其生物合成途径却含有一个意想不到的共同中间体——2-羟乙基膦酸酯,它由膦酰乙醛通过一类独特的金属依赖性醇脱氢酶(ADHs)合成。尽管ADH家族成员的序列同一性相对较低(34 - 37%),但参与抗生素磷霉素、草丁膦三肽和脱氢膦(原A53868)生物合成的同源物的体外生化特性明确证实了它们的酶活性。这些独特的ADHs具有精确的底物特异性、不寻常的金属需求以及前所未有的单体四级结构。此外,序列分析表明,这些ADHs与假定的膦酸生物合成基因簇编码的其他家族成员一起形成了一个单系类群。因此,将膦酰乙醛还原为羟乙基膦酸酯可能是许多膦酸天然产物生物合成中的一个共同步骤,这一发现有助于深入了解膦酸生物合成途径的进化以及含C-P新次级代谢产物的化学结构。