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NADH 的呼吸再氧化是限制供氧条件下聚多曲霉高需氧量的关键因素。

Respiratory reoxidation of NADH is a key contributor to high oxygen requirements of oxygen-limited cultures of Ogataea parapolymorpha.

机构信息

Department of Biotechnology, Delft University of Technology, van der Maasweg 9, 2629 HZ Delft, The Netherlands.

出版信息

FEMS Yeast Res. 2022 Feb 22;22(1). doi: 10.1093/femsyr/foac007.

Abstract

While thermotolerance is an attractive trait for yeasts used in industrial ethanol production, oxygen requirements of known thermotolerant species are incompatible with process requirements. Analysis of oxygen-sufficient and oxygen-limited chemostat cultures of the facultatively fermentative, thermotolerant species Ogataea parapolymorpha showed its minimum oxygen requirements to be an order of magnitude larger than those reported for the thermotolerant yeast Kluyveromyces marxianus. High oxygen requirements of O. parapolymorpha coincided with a near absence of glycerol, a key NADH/NAD+ redox-cofactor-balancing product in many other yeasts, in oxygen-limited cultures. Genome analysis indicated absence of orthologs of the Saccharomyces cerevisiae glycerol-3-phosphate-phosphatase genes GPP1 and GPP2. Co-feeding of acetoin, whose conversion to 2,3-butanediol enables reoxidation of cytosolic NADH, supported a 2.5-fold increase of the biomass concentration in oxygen-limited cultures. An O. parapolymorpha strain in which key genes involved in mitochondrial reoxidation of NADH were inactivated did produce glycerol, but transcriptome analysis did not reveal a clear candidate for a responsible phosphatase. Expression of S. cerevisiae GPD2, which encodes NAD+-dependent glycerol-3-phosphate dehydrogenase, and GPP1 supported increased glycerol production by oxygen-limited chemostat cultures of O. parapolymorpha. These results identify dependence on respiration for NADH reoxidation as a key contributor to unexpectedly high oxygen requirements of O. parapolymorpha.

摘要

虽然耐热性是工业乙醇生产中使用的酵母的一个有吸引力的特性,但已知耐热物种的氧气需求与工艺要求不兼容。对兼性发酵、耐热物种 Ogataea parapolymorpha 的富氧和限氧恒化器培养物进行分析表明,其最低需氧量比耐热酵母 Kluyveromyces marxianus 报道的需氧量高出一个数量级。O. parapolymorpha 的高需氧量与在限氧培养物中几乎不存在甘油的情况相一致,甘油是许多其他酵母中 NADH/NAD+ 氧化还原辅酶平衡的关键产物。基因组分析表明,O. parapolymorpha 缺乏酿酒酵母甘油-3-磷酸磷酸酶基因 GPP1 和 GPP2 的直系同源物。共喂食乙酰醇,其转化为 2,3-丁二醇可使胞质 NADH 重新氧化,可使限氧培养物中的生物量浓度增加 2.5 倍。一株关键基因参与线粒体 NADH 再氧化的 O. parapolymorpha 菌株确实产生了甘油,但转录组分析并未发现负责磷酸酶的明确候选基因。表达编码 NAD+-依赖性甘油-3-磷酸脱氢酶的 S. cerevisiae GPD2 和 GPP1,可支持限氧恒化器培养物中 O. parapolymorpha 产生更多的甘油。这些结果表明,依赖呼吸作用将 NADH 再氧化作为 O. parapolymorpha 异常高需氧量的关键因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac78/8862043/a612c0ee271c/foac007fig1.jpg

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