Department of Chemistry, The University of Adelaide, Adelaide, South Australia 5005, Australia.
Nat Prod Rep. 2020 Oct 1;37(10):1334-1366. doi: 10.1039/d0np00018c. Epub 2020 Jun 30.
Covering: Up to January 2020Meroterpenoids derived from the polyketide 1,3,6,8-tetrahydroxynaphthalene (THN) are complex natural products produced exclusively by Streptomyces bacteria. These antibacterial compounds include the napyradiomycins, merochlorins, marinones, and furaquinocins and have inspired many attempts at their chemical synthesis. In this review, we highlight the role played by biosynthetic studies in the stimulation of biomimetic and, ultimately, chemoenzymatic total syntheses of these natural products. In particular, the application of genome mining techniques to marine Streptomyces bacteria led to the discovery of unique prenyltransferase and vanadium-dependent haloperoxidase enzymes that can be used as highly selective biocatalysts in fully enzymatic total syntheses, thus overcoming the limitations of purely chemical reagents.
截至 2020 年 1 月,来源于 1,3,6,8-四羟基萘(THN)的倍半萜类化合物是由链霉菌属细菌专门产生的复杂天然产物。这些具有抗菌活性的化合物包括萘拉菌素、红紫素、马里酮和呋喃喹啉,并激发了许多对其化学合成的尝试。在这篇综述中,我们强调了生物合成研究在刺激这些天然产物的生物模拟和最终化学酶促全合成中的作用。特别是,对海洋链霉菌属细菌的基因组挖掘技术的应用导致了独特的 prenyltransferase 和钒依赖性卤过氧化物酶的发现,这些酶可以作为高度选择性的生物催化剂用于完全酶促全合成,从而克服了纯化学试剂的局限性。