马quandii拟青霉分生孢子色素saintopin的生物合成。

Q1 Agricultural and Biological Sciences
Carsten Wieder, Sarah Galwas, Rainer Wiechert, Kevin Seipp, Alexander Yemelin, Eckhard Thines, Till Opatz, Anja Schüffler
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引用次数: 0

摘要

马quandii拟青霉ibwf003 -21产生鲜艳的紫色色素分生孢子,其颜色可归因于萘环二酮天然产物saintopin(1)。目标化合物先前被报道显示出有效的拓扑异构酶抑制活性,但尚未被广泛研究,也没有生物合成被阐明。为了阐明1的生物合成,我们挖掘了马quandii拟青霉的非还原多酮合成酶(nrPKS)基因组,并将其引入异源宿主米曲霉OP12中,并确定了1的生物合成的主要候选物,我们将其命名为stpA。在本地生产者马孔地p.a marquandii中,stpA的缺失使1的产生消失,使分生孢子颜色透明。stpA在系统发育上与进化枝V nrPKS聚集,通常需要反式作用的金属β-内酰胺酶样硫酯酶(MβL)进行产物卸载,然而,在stpA附近没有MβL编码。相反,blast搜索发现了一个单独的m - β l, stpB,编码在马孔虫基因组的其他地方,伴随着黄素依赖性单加氧酶(FMO), stpC和o -甲基转移酶,stpD。即使没有额外的stpB共表达,stpA和stpC的异源共表达也足以重建A. oryzae OP12中的1生物合成。stpC与参与TAN-1612生物合成的十肽合成酶adaA的共表达也导致1的产生,这意味着1的形成是通过随后被缩短的十肽前体进行的。虽然1的结构和生物合成与其他真菌萘环二酮相比是独特的,但需要进一步的研究来阐明1的形成机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biosynthesis of the Paecilomyces marquandii conidial pigment saintopin.

Paecilomyces marquandii IBWF 003-21 produces vibrant purple pigmented conidia, the color of which can be attributed to the naphthacenedione natural product saintopin (1). The target compound was previously reported to exhibit potent topoisomerase-inhibitory activity, yet has not been extensively studied nor has the biosynthesis been elucidated. In an effort to elucidate the biosynthesis of 1, we mined the genome of Paecilomyces marquandii for non-reducing polyketide synthases (nrPKS), introduced them into the heterologous host Aspergillus oryzae OP12 and identified a prime candidate for the biosynthesis of 1 we termed stpA. Deletion of stpA in the native producer P. marquandii abolished production of 1, rendering conidia hyaline in color. stpA phylogenetically clusters with clade V nrPKS, canonically requiring trans-acting metallo-β-lactamase-like thioesterases (MβL) for product offloading, however, no MβL is encoded in the vicinity of stpA. Instead, a BLAST-search revealed a single MβL, stpB, encoded elsewhere in the P. marquandii genome, accompanied by a flavin-dependent monooxygenase (FMO), stpC, and an O-methyltransferase, stpD. Heterologous coexpression of stpA and stpC sufficed for reconstituting 1 biosynthesis in A. oryzae OP12 even without additional coexpression of stpB. Coexpression of stpC alongside the decaketide-synthase adaA involved in TAN-1612 biosynthesis also resulted in the production of 1, which implies that the formation of 1 proceeds via a decaketide precursor that is subsequently shortened. While the structure and biosynthesis of 1 are unique compared to other fungal naphthacenediones, further research is necessary to elucidate the elusive mechanism underlying the formation of 1.

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来源期刊
Fungal Biology and Biotechnology
Fungal Biology and Biotechnology Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
10.20
自引率
0.00%
发文量
17
审稿时长
9 weeks
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