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野生型和OPI1缺失的酿酒酵母菌株在乳酸胁迫下的蛋白质聚集和膜脂修饰

Protein aggregation and membrane lipid modifications under lactic acid stress in wild type and OPI1 deleted Saccharomyces cerevisiae strains.

作者信息

Berterame Nadia Maria, Porro Danilo, Ami Diletta, Branduardi Paola

机构信息

Department of Biotechnology and Biosciences, University of Milano-Bicocca, Piazza della Scienza 2, Milan, 20126, Italy.

SYSBIO - Centre of Systems Biology, Milano and Roma, Italy.

出版信息

Microb Cell Fact. 2016 Feb 17;15:39. doi: 10.1186/s12934-016-0438-2.

Abstract

BACKGROUND

Lactic acid is a versatile chemical platform with many different industrial applications. Yeasts have been demonstrated as attractive alternative to natural lactic acid producers since they can grow at low pH, allowing the direct purification of the product in the desired acidic form. However, when very high concentrations of organic acids are reached, the major limitation for a viable production is the toxic effect of the product. The accumulation in the cytosol of H(+) and of the weak organic counter-anions triggers a cellular reprogramming. Here, the effects of lactic acid exposure on Saccharomyces cerevisiae have been evaluated by Fourier transform infrared (FTIR) microspectroscopy. In addition to -omic techniques, describing these responses in terms of systems and networks, FTIR microspectroscopy allows a rapid acquisition of the cellular biochemical fingerprint, providing information on the major classes of macromolecules.

RESULTS

FTIR analyses on Saccharomyces cerevisiae cells under lactic acid stress at low pH revealed some still uncharacterized traits: (1) a direct correlation between lactic acid exposure and a rearrangement in lipid hydrocarbon tails, together with a decrease in the signals of phosphatidylcholine (PC), one of the main components of cell membrane; (2) a rearrangement in the cell wall carbohydrates, including glucans and mannans (3) a significant yet transient protein aggregation, possibly responsible for the observed transient decrease of the growth rate. When repeated on the isogenic strain deleted in OPI1, encoding for a transcriptional repressor of genes involved in PC biosynthesis, FTIR analysis revealed that not only the PC levels were affected but also the cell membrane/wall composition and the accumulation of protein aggregates, resulting in higher growth rate in the presence of the stressing agent.

CONCLUSIONS

This work revealed novel effects evoked by lactic acid on cell membrane/wall composition and protein aggregation in S. cerevisiae cells. We consequently demonstrated that the targeted deletion of OPI1 resulted in improved lactic acid tolerance. Considering that stress response involves many and different cellular networks and regulations, most of which are still not implemented in modelling, these findings constitute valuable issues for interpreting cellular rewiring and for tailoring ameliorated cell factories for lactic acid production.

摘要

背景

乳酸是一种具有多种不同工业应用的通用化学平台。酵母已被证明是天然乳酸生产者的有吸引力的替代物,因为它们可以在低pH值下生长,从而允许以所需的酸性形式直接纯化产物。然而,当达到非常高浓度的有机酸时,可行生产的主要限制是产物的毒性作用。H(+)和弱有机抗衡阴离子在细胞质中的积累引发细胞重编程。在此,通过傅里叶变换红外(FTIR)显微光谱法评估了乳酸暴露对酿酒酵母的影响。除了以系统和网络描述这些反应的组学技术外,FTIR显微光谱法还允许快速获取细胞生化指纹,提供有关主要大分子类别的信息。

结果

对低pH值下乳酸胁迫下的酿酒酵母细胞进行的FTIR分析揭示了一些尚未表征的特征:(1)乳酸暴露与脂质烃尾部重排之间的直接相关性,以及细胞膜主要成分之一磷脂酰胆碱(PC)信号的降低;(2)细胞壁碳水化合物(包括葡聚糖和甘露聚糖)的重排;(3)显著但短暂的蛋白质聚集,这可能是观察到的生长速率短暂下降的原因。当在缺失OPI1的同基因菌株上重复进行时,OPI1编码参与PC生物合成的基因的转录阻遏物,FTIR分析表明,不仅PC水平受到影响,而且细胞膜/壁组成和蛋白质聚集体的积累也受到影响,导致在存在应激剂的情况下生长速率更高。

结论

这项工作揭示了乳酸对酿酒酵母细胞膜/壁组成和蛋白质聚集产生的新影响。因此,我们证明了OPI1的靶向缺失导致乳酸耐受性提高。考虑到应激反应涉及许多不同的细胞网络和调节,其中大多数仍未在建模中实现,这些发现对于解释细胞重排和定制用于乳酸生产的改良细胞工厂构成了有价值的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cc1/4756461/e233465c82b3/12934_2016_438_Fig1_HTML.jpg

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