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在海洋生源二萜类化合物尤尼醇型的生物合成中,一种假定蛋白的功能冗余和双重功能。

Functional Redundancy and Dual Function of a Hypothetical Protein in the Biosynthesis of Eunicellane-Type Diterpenoids.

机构信息

Institute for Molecular Bio Science, Goethe University Frankfurt, Max-von-Laue Strasse 9, 60438 Frankfurt am Main, Germany.

LOEWE Center for Translational Biodiversity Genomics (TBG), Senckenberganlage 25, 60325 Frankfurt am Main, Germany.

出版信息

ACS Chem Biol. 2024 Nov 15;19(11):2314-2322. doi: 10.1021/acschembio.4c00413. Epub 2024 Nov 1.

Abstract

Many complex terpenoids, predominantly isolated from plants and fungi, show drug-like physicochemical properties. Recent advances in genome mining revealed actinobacteria as an almost untouched treasure trove of terpene biosynthetic gene clusters (BGCs). In this study, we characterized a terpene BGC with an unusual architecture. The selected BGC includes, among others, genes encoding a terpene cyclase fused to a truncated reductase domain and a cytochrome P450 monooxygenase (P450) that is split over three gene fragments. Functional characterization of the BGC in a heterologous host led to the identification of several new members of the -eunicellane family of diterpenoids, the euthailols, that feature unique oxidation patterns. A combination of bioinformatic analyses, structural modeling studies, and heterologous expression revealed a dual function of the pathway-encoded hypothetical protein that acts as an isomerase and an oxygenase. Moreover, in the absence of other tailoring enzymes, a P450 hydroxylates the eunicellane scaffold at a position that is not modified in other eunicellanes. Surprisingly, both the modifications installed by the hypothetical protein and one of the P450s exhibit partial redundancy. Bioactivity assays revealed that some of the euthailols show growth inhibitory properties against Gram-negative ESKAPE pathogens. The characterization of the euthailol BGC in this study provides unprecedented insights into the partial functional redundancy of tailoring enzymes in complex diterpenoid biosynthesis and highlights hypothetical proteins as an important and largely overlooked family of tailoring enzymes involved in the maturation of complex terpenoids.

摘要

许多复杂的萜类化合物,主要从植物和真菌中分离出来,表现出类似药物的物理化学性质。基因组挖掘的最新进展揭示了放线菌是萜类生物合成基因簇(BGC)几乎未被触及的宝库。在这项研究中,我们对具有不寻常结构的萜类 BGC 进行了表征。所选 BGC 除其他外,还包含编码萜烯环化酶的基因,该酶与截短的还原酶结构域融合,并与细胞色素 P450 单加氧酶(P450)融合,该酶分为三个基因片段。在异源宿主中对 BGC 的功能表征导致了几种新的 -eunicellane 家族二萜类化合物的鉴定,即 euthailols,其特征在于独特的氧化模式。生物信息学分析、结构建模研究和异源表达的组合揭示了途径编码的假设蛋白的双重功能,该蛋白既作为异构酶又作为加氧酶起作用。此外,在没有其他修饰酶的情况下,P450 将 eunicellane 支架羟基化在其他 eunicellanes 中未修饰的位置。令人惊讶的是,假设蛋白和 P450 之一安装的修饰都具有部分冗余性。生物活性测定表明,一些 euthailols 对革兰氏阴性 ESKAPE 病原体具有生长抑制特性。本研究中 euthailol BGC 的表征提供了对复杂二萜生物合成中修饰酶部分功能冗余的前所未有的见解,并强调了假设蛋白作为参与复杂萜类化合物成熟的重要且在很大程度上被忽视的修饰酶家族的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e827/11574762/a1c9e3b20c32/cb4c00413_0001.jpg

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