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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Effect of a Novel Alpha/Beta Hydrolase Domain Protein on Tolerance of K. marxianus to Lignocellulosic Biomass Derived Inhibitors
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Effect of a Novel Alpha/Beta Hydrolase Domain Protein on Tolerance of K. marxianus to Lignocellulosic Biomass Derived Inhibitors

机译:新型α/β水解酶结构域蛋白对木质纤维素生物质衍生抑制剂K.Marxianus耐受性的影响

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摘要

The multiple inhibitors tolerance of microorganism is important in bioconversion of lignocellulosic biomass which is a promising renewable and sustainable source for biofuels and other chemicals. The disruption of an unknown α/β hydrolase, which was termed KmYME and located in mitochondria in this study, resulted in the yeast more susceptible to lignocellulose-derived inhibitors, particularly to acetic acid, furfural and 5-HMF. The KmYME disrupted strain lost more mitochondrial membrane potential, showed increased plasma membrane permeability, severer redox ratio imbalance, and increased ROS accumulation, compared with those of the non-disrupted strain in the presence of the same inhibitors. The intracellular concentration of ATP, NAD and NADP in the KmYME disrupted strain was decreased. However, disruption of KmYME did not result in a significant change of gene expression at the transcriptional level. The KmYME possessed esterase/thioesterase activity which was necessary for the resistance to inhibitors. In addition, KmYME was also required for the resistance to other stresses including ethanol, temperature, and osmotic pressure. Disruption of two possible homologous genes in S. cerevisiae also reduced its tolerance to inhibitors.
机译:微生物的多种抑制剂耐受性在木质纤维素生物量的生物转化中是重要的,这对于生物燃料和其他化学品是一种有前途的可再生和可持续的来源。在该研究中被称为KMYME并位于该研究的线粒体中的未知α/β水解酶的破坏,导致酵母更容易受到木质纤维素衍生的抑制剂,特别是乙酸,糠醛和5-HMF。与在存在相同抑制剂的非破坏菌株的情况下,基米中断菌株损失更高的线粒体膜电位,显示出增加的血浆膜渗透性,更严重的氧化还原比不平衡和增加的ROS积累。降低了KMYME中断菌株中的ATP,NAD和NADP的细胞内浓度。然而,KMMYME的破坏并未导致转录水平在基因表达的显着变化。 KMYME具有酯酶/硫酯酶活性,这对于抑制剂的抗性是必需的。此外,还需要对包括乙醇,温度和渗透压的其他应力的抗性需要KMYME。酿酒酵母中两种可能的同源基因的破坏也降低了其对抑制剂的耐受性。

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