Bioresource Engineering, McGill University, Ste-Anne-de-Bellevue, QC H9X 3V9, Canada.
J Ind Microbiol Biotechnol. 2012 Oct;39(10):1507-14. doi: 10.1007/s10295-012-1147-4. Epub 2012 May 26.
Proteomics and fermentation technology have begun to integrate to investigate fermentation organisms in bioprocess development. This is the first shotgun proteomics study employed to monitor the proteomes of Scheffersomyces stipitis during xylose fermentation under oxygen limitation. We identified 958 nonredundant proteins and observed highly similar proteomes from exponential to early stationary phases. In analyzing the temporal proteome, we identified unique expression patterns in biological processes and metabolic pathways, including alternative respiration salicylhydroxamic acid (SHAM) pathway, activation of glyoxylate cycle, expression of galactose enzymes, and secondary zinc-containing alcohol dehydrogenase and O-glycosyl hydrolases. We identified the expression of a putative, high-affinity xylose sugar transporter Xut1p, but low-affinity xylose transporters were absent. Throughout cell growth, housekeeping processes included oxidative phosphorylation, glycolysis, nonoxidative branch of the pentose phosphate pathway, gluconeogenesis, biosynthesis of amino acids and aminoacyl total RNA (tRNA), protein synthesis and proteolysis, fatty acid metabolism, and cell division. This study emphasized qualitative analysis and demonstrated that shotgun proteomics is capable of monitoring S. stipitis fermentation and identifying physiological states, such as nutrient deficiency.
蛋白质组学和发酵技术已经开始整合,以研究生物过程开发中的发酵生物。这是首次采用鸟枪法蛋白质组学研究来监测在氧限制下木糖发酵过程中酿酒酵母的蛋白质组。我们鉴定了 958 个非冗余蛋白质,并观察到指数期到早期稳定期的高度相似的蛋白质组。在分析时空调制蛋白质组时,我们在生物过程和代谢途径中鉴定了独特的表达模式,包括替代呼吸水杨酸羟肟酸(SHAM)途径、乙醛酸循环的激活、半乳糖酶的表达以及二级含锌醇脱氢酶和 O-糖基水解酶。我们鉴定了一个假定的、高亲和力木糖糖转运蛋白 Xut1p 的表达,但低亲和力木糖转运蛋白不存在。在整个细胞生长过程中,维持生命的过程包括氧化磷酸化、糖酵解、戊糖磷酸途径的非氧化分支、糖异生、氨基酸和氨酰总 RNA(tRNA)的生物合成、蛋白质合成和蛋白水解、脂肪酸代谢和细胞分裂。本研究强调了定性分析,并表明鸟枪法蛋白质组学能够监测酿酒酵母的发酵并识别生理状态,如营养缺乏。