首页> 外文OA文献 >Regulation of the formate dehydrogenase gene, FDH1, in the methylotrophic yeast Candida boidinii and growth characteristics of an FDH1-disrupted strain on methanol, methylamine, and choline.
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Regulation of the formate dehydrogenase gene, FDH1, in the methylotrophic yeast Candida boidinii and growth characteristics of an FDH1-disrupted strain on methanol, methylamine, and choline.

机译:甲基营养酵母博伊丁氏假丝酵母中甲酸脱氢酶基因FDH1的调节以及FDH1破坏菌株在甲醇,甲胺和胆碱上的生长特性。

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摘要

The structural gene (FDH1) coding for NAD(+)-dependent formate dehydrogenase (FDH) was cloned from a genomic library of Candida boidinii, and the FDH1 gene was disrupted in the C. boidinii genome (fdh1 delta) by one-step gene disruption. In a batch culture experiment, although the fdh1 delta strain was still able to grow on methanol, its growth was greatly inhibited and a toxic level of formate was detected in the medium. In a methanol-limited chemostat culture at a low dilution rate (0.03 to 0.05 h[-1]), formate was not detected in the culture medium of the fdh1 delta strain; however, the fdh1 delta strain showed only one-fourth of the growth yield of the wild-type strain. Expression of FDH1 was found to be induced by choline or methylamine (used as a nitrogen source), as well as by methanol (used as a carbon source). Induction of FDH1 was not repressed in the presence of glucose when cells were grown on methylamine, choline, or formate, and expression of FDH1 was shown to be regulated at the mRNA level. Growth on methylamine or choline as a nitrogen source in a batch culture was compared between the wild type and the fdh1 delta mutant. Although the growth of the fdh1 delta mutant was impaired and the level of formate was higher in the fdh1 delta mutant than in the wild-type strain, the growth defect caused by FDH1 gene disruption was small and less severe than that caused by growth on methanol. As judged from these results, the main physiological role of FDH with all of the FDH1-inducing growth substrates seems to be detoxification of formate, and during growth on methanol, FDH seems to contribute significantly to the energy yield.
机译:从Bodinii念珠菌的基因组文库中克隆了编码NAD(+)依赖的甲酸脱氢酶(FDH)的结构基因(FDH1),并通过一步法破坏了Boidinii的CDH基因组(fdh1 delta)中的FDH1基因。破坏。在分批培养实验中,尽管fdh1 delta菌株仍能够在甲醇上生长,但其生长受到极大抑制,并且在培养基中检测到甲酸的毒性水平。在低稀释度(0.03至0.05 h [-1])的甲醇有限的恒化器培养物中,在fdh1 delta菌株的培养基中未检测到甲酸。然而,fdh1 delta菌株仅显示出野生型菌株生长产量的四分之一。发现FDH1的表达是由胆碱或甲胺(用作氮源)以及甲醇(用作碳源)诱导的。当细胞在甲胺,胆碱或甲酸盐上生长时,在葡萄糖存在下不抑制FDH1的诱导,显示FDH1的表达在mRNA水平受到调节。比较了野生型和fdh1 delta突变体在分批培养中甲胺或胆碱作为氮源的生长。尽管fdh1 delta突变体的生长受到了损害,并且fdh1 delta突变体中甲酸盐的水平高于野生型菌株,但由FDH1基因破坏引起的生长缺陷比在甲醇中生长引起的生长缺陷小且不那么严重。 。从这些结果可以判断,FDH与所有诱导FDH1的生长底物的主要生理作用似乎是甲酸的解毒作用,并且在甲醇上生长期间,FDH似乎对能量产量有重要贡献。

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