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The Presence of Pretreated Lignocellulosic Solids from Birch during Saccharomyces cerevisiae Fermentations Leads to Increased Tolerance to Inhibitors – A Proteomic Study of the Effects

机译:啤酒酵母发酵过程中桦木中预处理木质纤维素的存在导致对抑制剂的耐受性增加–蛋白质组学研究

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摘要

The fermentation performance of Saccharomyces cerevisiae in the cellulose to ethanol conversion process is largely influenced by the components of pretreated biomass. The insoluble solids in pretreated biomass predominantly constitute cellulose, lignin, and -to a lesser extent- hemicellulose. It is important to understand the effects of water-insoluble solids (WIS) on yeast cell physiology and metabolism for the overall process optimization. In the presence of synthetic lignocellulosic inhibitors, we observed a reduced lag phase and enhanced volumetric ethanol productivity by S. cerevisiae CEN.PK 113-7D when the minimal medium was supplemented with WIS of pretreated birch or spruce and glucose as the carbon source. To investigate the underlying molecular reasons for the effects of WIS, we studied the response of WIS at the proteome level in yeast cells in the presence of acetic acid as an inhibitor. Comparisons were made with cells grown in the presence of acetic acid but without WIS in the medium. Altogether, 729 proteins were detected and quantified, of which 246 proteins were significantly up-regulated and 274 proteins were significantly down-regulated with a fold change≥1.2 in the presence of WIS compared to absence of WIS. The cells in the presence of WIS up-regulated several proteins related to cell wall, glycolysis, electron transport chain, oxidative stress response, oxygen and radical detoxification and unfolded protein response; and down-regulated most proteins related to biosynthetic pathways including amino acid, purine, isoprenoid biosynthesis, aminoacyl-tRNA synthetases and pentose phosphate pathway. Overall, the identified differentially regulated proteins may indicate that the likelihood of increased ATP generation in the presence of WIS was used to defend against acetic acid stress at the expense of reduced biomass formation. Although, comparative proteomics of cells with and without WIS in the acetic acid containing medium revealed numerous changes, a direct effect of WIS on cellular physiology remains to be investigated.
机译:酿酒酵母在纤维素转化为乙醇的过程​​中的发酵性能在很大程度上受到预处理的生物质成分的影响。预处理的生物质中的不溶性固体主要构成纤维素,木质素和(在较小程度上)半纤维素。重要的是要了解水不溶性固体(WIS)对酵母细胞生理学和新陈代谢的影响,以优化整个过程。在存在合成木质纤维素抑制剂的情况下,当基本培养基中加入经预处理的桦木或云杉的WIS以及葡萄糖作为碳源时,我们观察到酿酒酵母CEN.PK 113-7D减少了滞后相并提高了乙醇的体积生产率。为了研究WIS影响的潜在分子原因,我们研究了在乙酸作为抑制剂存在下酵母细胞中WIS在蛋白质组水平上的反应。用在乙酸存在下生长但在培养基中没有WIS的细胞进行比较。与不存在WIS相比,在存在WIS的情况下,检测到并定量了729种蛋白,其中246种蛋白显着上调,而274种蛋白显着下调,其倍数变化≥1.2。在存在WIS的情况下,细胞上调了几种与细胞壁,糖酵解,电子转运链,氧化应激反应,氧和自由基解毒以及未折叠的蛋白质反应有关的蛋白质。并下调了大多数与生物合成途径相关的蛋白质,包括氨基酸,嘌呤,类异戊二烯生物合成,氨酰基-tRNA合成和磷酸戊糖途径。总的来说,鉴定出的差异调节蛋白可能表明存在WIS时增加ATP生成的可能性被用来抵御乙酸胁迫,但以减少生物量形成为代价。尽管含乙酸的培养基中有和没有WIS的细胞的比较蛋白质组学显示了许多变化,但是WIS对细胞生理的直接影响仍有待研究。

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