Abolishing storage lipids induces protein misfolding and stress responses in Yarrowia lipolytica.

IF 3.2 4区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Simone Zaghen, Oliver Konzock, Jing Fu, Eduard J Kerkhoven
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引用次数: 0

Abstract

Yarrowia lipolytica naturally saves excess carbon as storage lipids. Engineering efforts allow redirecting the high precursor flux required for lipid synthesis toward added-value chemicals such as polyketides, flavonoids, and terpenoids. To redirect precursor flux from storage lipids to other products, four genes involved in triacylglycerol and sterol ester synthesis (DGA1, DGA2, LRO1, and ARE1) can be deleted. To elucidate the effect of the deletions on cell physiology and regulation, we performed chemostat cultivations under carbon and nitrogen limitations, followed by transcriptome analysis. We found that storage lipid-free cells show an enrichment of the unfolded protein response, and several biological processes related to protein refolding and degradation are enriched. Additionally, storage lipid-free cells show an altered lipid class distribution with an abundance of potentially cytotoxic free fatty acids under nitrogen limitation. Our findings not only highlight the importance of lipid metabolism on cell physiology and proteostasis, but can also aid the development of improved chassy strains of Y. lipolytica for commodity chemical production.

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在解脂Yarrowia中,取消储存脂质诱导蛋白质错误折叠和应激反应。
Yarrowia lipolytica自然地将多余的碳作为储存脂质保存下来。工程努力使脂质合成所需的高前体通量转向附加值化学物质,如聚酮、类黄酮和萜类化合物。为了将前体流量从储存脂质重定向到其他产物,可以删除四个参与三酰甘油和甾醇酯合成的基因(DGA1、DGA2、LRO1、ARE1)。为了阐明缺失对细胞生理和调节的影响,我们在碳和氮限制下进行恒化器培养,然后进行转录组分析。我们发现,储存的无脂细胞显示出未折叠蛋白质反应的富集,并且与蛋白质重折叠和降解相关的几个生物学过程也得到了富集。此外,在氮限制下,储存的无脂质细胞显示出改变的脂质类别分布,具有丰富的潜在细胞毒性游离脂肪酸。我们的发现不仅突出了脂质代谢对细胞生理和蛋白稳定的重要性,而且有助于开发用于商品化学品生产的改良的溶脂Y。
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来源期刊
Journal of Industrial Microbiology & Biotechnology
Journal of Industrial Microbiology & Biotechnology 工程技术-生物工程与应用微生物
CiteScore
7.70
自引率
0.00%
发文量
25
审稿时长
3 months
期刊介绍: The Journal of Industrial Microbiology and Biotechnology is an international journal which publishes papers describing original research, short communications, and critical reviews in the fields of biotechnology, fermentation and cell culture, biocatalysis, environmental microbiology, natural products discovery and biosynthesis, marine natural products, metabolic engineering, genomics, bioinformatics, food microbiology, and other areas of applied microbiology
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