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表征马克斯克鲁维酵母中使用的酵母启动子。

Characterizing yeast promoters used in Kluyveromyces marxianus.

作者信息

Yang Chun, Hu Shenglin, Zhu Songli, Wang Dongmei, Gao Xiaolian, Hong Jiong

机构信息

School of Life Science, University of Science and Technology of China, Hefei, 230027, Anhui, People's Republic of China.

Hefei National Laboratory for Physical Science at the Microscale, University of Science and Technology of China, Hefei, 230026, Anhui, People's Republic of China.

出版信息

World J Microbiol Biotechnol. 2015 Oct;31(10):1641-6. doi: 10.1007/s11274-015-1899-x. Epub 2015 Jul 12.

Abstract

Fermentation at higher temperatures can potentially reduce the cooling cost in large-scale fermentation and reduce the contamination risk. Thus, the thermotolerant yeast, Kluyveromyces marxianus, which can grow and ferment at elevated temperatures, is a promising biotechnological tool for future applications. However, the promoters used in K. marxianus are not well characterized, especially at elevated temperatures, which is important in efficient metabolic pathway construction. In this study, six constitutive promoters (P(TDH3), P(PGK), and P(ADH1) from both Saccharomyces cerevisiae and K. marxianus) were evaluated in K. marxianus through the heterologous expression of the KlLAC4, GUSA, and SH BLE genes at various temperatures, with various carbon sources and oxygen conditions. The expression was evaluated at the transcription and protein level using real-time PCR and protein activity determination to eliminate the effect of heterologous protein stability. While the transcription of all the promoters decreased at higher temperatures, the order of their promoting strength at various temperatures with glucose as the carbon source was P(KmPGK) > P(KmTDH3) > P(ScPGK) > P(ScTDH3) > P(KmADH1) > P(ScADH1). When glycerol or xylose was supplied as the carbon source at 42 °C, the order of promoter strength was P(KmPGK) > P(ScPGK) > P(KmADH1) > P(ScADH1) > P(ScTDH3) > P(KmTDH3). The promoter activity of P TDH3 decreased significantly, while the promoter activity of both of the P(ADH1) promoters increased. Oxygen conditions had non-significant effect. The results of this study provide important information for fine-tuned pathway construction for the metabolic engineering of K. marxianus.

摘要

在较高温度下进行发酵有可能降低大规模发酵中的冷却成本,并降低污染风险。因此,能够在高温下生长和发酵的耐热酵母马克斯克鲁维酵母是未来应用中一种很有前景的生物技术工具。然而,马克斯克鲁维酵母中使用的启动子尚未得到很好的表征,尤其是在高温下,而这对于高效代谢途径构建很重要。在本研究中,通过在不同温度、不同碳源和氧气条件下对KlLAC4、GUSA和SH BLE基因进行异源表达,在马克斯克鲁维酵母中评估了六个组成型启动子(来自酿酒酵母和马克斯克鲁维酵母的P(TDH3)、P(PGK)和P(ADH1))。使用实时PCR和蛋白质活性测定在转录和蛋白质水平评估表达,以消除异源蛋白质稳定性的影响。虽然所有启动子的转录在较高温度下均下降,但以葡萄糖为碳源时,它们在不同温度下的促进强度顺序为P(KmPGK) > P(KmTDH3) > P(ScPGK) > P(ScTDH3) > P(KmADH1) > P(ScADH1)。当在42℃以甘油或木糖作为碳源时,启动子强度顺序为P(KmPGK) > P(ScPGK) > P(KmADH1) > P(ScADH1) > P(ScTDH3) > P(KmTDH3)。P TDH3的启动子活性显著下降,而两个P(ADH1)启动子的启动子活性均增加。氧气条件影响不显著。本研究结果为马克斯克鲁维酵母代谢工程的精细途径构建提供了重要信息。

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