Bidirectional histone-gene promoters in Aspergillus: characterization and application for multi-gene expression.

Q1 Agricultural and Biological Sciences
Fungal Biology and Biotechnology Pub Date : 2019-12-09 eCollection Date: 2019-01-01 DOI:10.1186/s40694-019-0088-3
Jakob K H Rendsvig, Christopher T Workman, Jakob B Hoof
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引用次数: 0

Abstract

Background: Filamentous fungi are important producers of enzymes and bioactive secondary metabolites and are exploited for industrial purposes. Expression and characterization of biosynthetic pathways requires stable expression of multiple genes in the production host. Fungal promoters are indispensable for the accomplishment of this task, and libraries of promoters that show functionality across diverse fungal species facilitate synthetic biology approaches, pathway expression, and cell-factory construction.

Results: In this study, we characterized the intergenic region between the genes encoding histones H4.1 and H3, from five phylogenetically diverse species of Aspergillus, as bidirectional promoters (Ph4h3). By expression of the genes encoding fluorescent proteins mRFP1 and mCitrine, we show at the translational and transcriptional level that this region from diverse species is applicable as strong and constitutive bidirectional promoters in Aspergillus nidulans. Bioinformatic analysis showed that the divergent gene orientation of h4.1 and h3 appears maintained among fungi, and that the Ph4h3 display conserved DNA motifs among the investigated 85 Aspergilli. Two of the heterologous Ph4h3s were utilized for single-locus expression of four genes from the putative malformin producing pathway from Aspergillus brasiliensis in A. nidulans. Strikingly, heterologous expression of mlfA encoding the non-ribosomal peptide synthetase is sufficient for biosynthesis of malformins in A. nidulans, which indicates an iterative use of one adenylation domain in the enzyme. However, this resulted in highly stressed colonies, which was reverted to a healthy phenotype by co-expressing the residual four genes from the putative biosynthetic gene cluster.

Conclusions: Our study has documented that Ph4h3 is a strong constitutive bidirectional promoter and a valuable new addition to the genetic toolbox of at least the genus Aspergillus.

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曲霉中的双向组蛋白基因启动子:表征及在多基因表达中的应用。
背景:丝状真菌是酶和生物活性次生代谢产物的重要生产者,可用于工业目的。生物合成途径的表达和特征描述需要多个基因在生产宿主中稳定表达。真菌启动子是完成这一任务不可或缺的因素,在不同真菌物种中显示出功能性的启动子库有助于合成生物学方法、途径表达和细胞工厂构建:在这项研究中,我们将五个系统发育不同的曲霉物种中编码组蛋白 H4.1 和 H3 的基因间区表征为双向启动子(Ph4h3)。通过表达编码荧光蛋白 mRFP1 和 mCitrine 的基因,我们在翻译和转录水平上表明,来自不同物种的这一区域在裸曲霉中可作为强组成型双向启动子。生物信息学分析表明,h4.1 和 h3 的不同基因取向在真菌中似乎保持不变,而且在所研究的 85 种曲霉中,Ph4h3 显示出保守的 DNA 基序。其中两个异源 Ph4h3 被用于在裸曲曲霉(A. nidulans)中单病灶表达来自巴西曲霉(Aspergillus brasiliensis)假定恶霉灵生产途径的四个基因。令人吃惊的是,编码非核糖体肽合成酶的 mlfA 的异源表达足以在裸曲曲霉中生物合成恶霉灵,这表明该酶中的一个腺苷酸化结构域被反复使用。然而,这导致菌落高度受压,通过共表达假定生物合成基因簇中剩余的四个基因,菌落恢复了健康表型:我们的研究证明,Ph4h3 是一个强组成型双向启动子,至少是曲霉属基因工具箱中的一个有价值的新成员。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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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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