Functional exploration of co-expression networks identifies a nexus for modulating protein and citric acid titres in Aspergillus niger submerged culture.

Q1 Agricultural and Biological Sciences
Fungal Biology and Biotechnology Pub Date : 2019-11-09 eCollection Date: 2019-01-01 DOI:10.1186/s40694-019-0081-x
Timothy C Cairns, Claudia Feurstein, Xiaomei Zheng, Li Hui Zhang, Ping Zheng, Jibin Sun, Vera Meyer
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引用次数: 0

Abstract

Background: Filamentous fungal cell factories are used to produce numerous proteins, enzymes, and organic acids. Protein secretion and filamentous growth are tightly coupled at the hyphal tip. Additionally, both these processes require ATP and amino acid precursors derived from the citric acid cycle. Despite this interconnection of organic acid production and protein secretion/filamentous growth, few studies in fungi have identified genes which may concomitantly impact all three processes.

Results: We applied a novel screen of a global co-expression network in the cell factory Aspergillus niger to identify candidate genes which may concomitantly impact macromorphology, and protein/organic acid fermentation. This identified genes predicted to encode the Golgi localized ArfA GTPase activating protein (GAP, AgeB), and ArfA guanine nucleotide exchange factors (GEFs SecG and GeaB) to be co-expressed with citric acid cycle genes. Consequently, we used CRISPR-based genome editing to place the titratable Tet-on expression system upstream of ageB, secG, and geaB in A. niger. Functional analysis revealed that ageB and geaB are essential whereas secG was dispensable for early filamentous growth. Next, gene expression was titrated during submerged cultivations under conditions for either protein or organic acid production. ArfA regulators played varied and culture-dependent roles on pellet formation. Notably, ageB or geaB expression levels had major impacts on protein secretion, whereas secG was dispensable. In contrast, reduced expression of each predicted ArfA regulator resulted in an absence of citric acid in growth media. Finally, titrated expression of either GEFs resulted in an increase in oxaloacetic acid concentrations in supernatants.

Conclusion: Our data suggest that the Golgi may play an underappreciated role in modulating organic acid titres during industrial applications, and that this is SecG, GeaB and AgeB dependent in A. niger. These data may lead to novel avenues for strain optimization in filamentous fungi for improved protein and organic acid titres.

共表达网络的功能探索确定了调节黑曲霉深层培养中蛋白质和柠檬酸滴度的关系
背景:丝状真菌细胞工厂用于生产大量蛋白质、酶和有机酸。蛋白质分泌和丝状生长在顶端紧密结合。此外,这两个过程都需要柠檬酸循环产生的 ATP 和氨基酸前体。尽管有机酸生产和蛋白质分泌/丝状生长相互关联,但很少有真菌研究发现可能同时影响这三个过程的基因:我们对黑曲霉细胞工厂中的全球共表达网络进行了一次新颖的筛选,以确定可能同时影响大形态和蛋白质/有机酸发酵的候选基因。结果发现,预测编码高尔基体定位的 ArfA GTPase 激活蛋白(GAP,AgeB)和 ArfA 鸟嘌呤核苷酸交换因子(GEF,SecG 和 GeaB)的基因与柠檬酸循环基因共表达。因此,我们使用基于 CRISPR 的基因组编辑技术,将滴定 Tet-on 表达系统置于黑木耳中 ageB、secG 和 geaB 的上游。功能分析显示,ageB 和 geaB 是早期丝状生长所必需的,而 secG 则是不可或缺的。接下来,在蛋白质或有机酸生产条件下,对浸没培养过程中的基因表达进行了滴定。ArfA 调控因子在颗粒形成过程中发挥了不同的作用,且其作用取决于培养条件。值得注意的是,ageB 或 geaB 的表达水平对蛋白质分泌有重大影响,而 secG 则无关紧要。与此相反,减少每个预测的 ArfA 调节因子的表达会导致生长介质中缺乏柠檬酸。最后,滴定表达任何一种 GEFs 都会导致上清液中草酰乙酸浓度的增加:我们的数据表明,在工业应用过程中,高尔基体可能在调节有机酸滴度方面发挥着未被重视的作用,而这在黑木耳中依赖于 SecG、GeaB 和 AgeB。这些数据可能会为丝状真菌的菌株优化提供新的途径,以提高蛋白质和有机酸滴度。
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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