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酿酒酵母醇脱氢酶在木质纤维素生物转化衍生醛抑制剂解毒中的作用。

Alcohol dehydrogenases from Scheffersomyces stipitis involved in the detoxification of aldehyde inhibitors derived from lignocellulosic biomass conversion.

机构信息

Institute of Ecological and Environmental Sciences, Sichuan Agricultural University, No. 211 Huimin Road, Wenjiang, Sichuan, 611130, People's Republic of China.

出版信息

Appl Microbiol Biotechnol. 2013 Sep;97(18):8411-25. doi: 10.1007/s00253-013-5110-8. Epub 2013 Aug 4.

Abstract

Aldehyde inhibitors such as furfural and 5-hydroxymethylfurfural (HMF) are generated from biomass pretreatment. Scheffersomyces stipitis is able to reduce furfural and HMF to less toxic furanmethanol and furan-2,5-dimethanol; however, the enzymes involved in the reductive reaction still remain unknown. In this study, transcription responses of two known and five putative alcohol dehydrogenase genes from S. stipitis were analyzed under furfural and HMF stress conditions. All the seven alcohol dehydrogenase genes were also cloned and overexpressed for their activity analyses. Our results indicate that transcriptions of SsADH4 and SsADH6 were highly induced under furfural and HMF stress conditions, and the proteins encoded by them exhibited NADH- and/or NADPH-dependent activities for furfural and HMF reduction, respectively. For furfural reduction, NADH-dependent activity was also observed in SsAdh1p and NAD(P)H-dependent activities were also observed in SsAdh5p and SsAdh7p. For HMF reduction, NADPH-dependent activities were also observed in SsAdh5p and SsAdh7p. SsAdh4p displayed the highest NADPH-dependent specific activity and catalytic efficiency for reduction of both furfural and HMF among the seven alcohol dehydrogenases. Enzyme activities of all SsADH proteins were more stable under acidic condition. For most SsADH proteins, the optimum temperature for enzyme activities was 30 °C and more than 50 % enzyme activities remained at 60 °C. Reduction activities of formaldehyde, acetaldehyde, isovaleraldehyde, benzaldehyde, and phenylacetaldehyde were also observed in some SsADH proteins. Our results indicate that multiple alcohol dehydrogenases in S. stipitis are involved in the detoxification of aldehyde inhibitors derived from lignocellulosic biomass conversion.

摘要

醛类抑制剂,如糠醛和 5-羟甲基糠醛(HMF),是由生物质预处理产生的。酿酒酵母能够将糠醛和 HMF 还原为毒性较低的糠醇和糠-2,5-二甲醇;然而,参与还原反应的酶仍然未知。在这项研究中,分析了酿酒酵母中两个已知和五个假定的醇脱氢酶基因在糠醛和 HMF 胁迫条件下的转录反应。还克隆并过表达了这 7 个醇脱氢酶基因,以分析其活性。我们的结果表明,SsADH4 和 SsADH6 的转录在糠醛和 HMF 胁迫条件下被高度诱导,它们编码的蛋白质分别表现出对糠醛和 HMF 还原的 NADH-和/或 NADPH 依赖性活性。对于糠醛还原,在 SsAdh1p 中也观察到 NADH 依赖性活性,而在 SsAdh5p 和 SsAdh7p 中也观察到 NAD(P)H 依赖性活性。对于 HMF 还原,在 SsAdh5p 和 SsAdh7p 中也观察到 NADPH 依赖性活性。SsAdh4p 在 7 种醇脱氢酶中表现出对糠醛和 HMF 还原的最高 NADPH 依赖性比活性和催化效率。在酸性条件下,所有 SsADH 蛋白的酶活性更稳定。对于大多数 SsADH 蛋白,酶活性的最适温度为 30°C,超过 50%的酶活性在 60°C 下仍能保留。在一些 SsADH 蛋白中还观察到甲醛、乙醛、异戊醛、苯甲醛和苯乙醛的还原活性。我们的结果表明,酿酒酵母中的多种醇脱氢酶参与了木质纤维素生物质转化产生的醛类抑制剂的解毒。

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