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首页> 外文期刊>Applied and Environmental Microbiology >Identification of an NADH-Cytochrome b5Reductase Gene from an Arachidonic Acid-Producing Fungus,Mortierella alpina 1S-4, by Sequencing of the Encoding cDNA and Heterologous Expression in a Fungus,Aspergillus oryzae
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Identification of an NADH-Cytochrome b5Reductase Gene from an Arachidonic Acid-Producing Fungus,Mortierella alpina 1S-4, by Sequencing of the Encoding cDNA and Heterologous Expression in a Fungus,Aspergillus oryzae

机译:通过编码真菌cDNA和异源表达在曲霉米曲霉中识别花生四烯酸生产真菌高山孢子1S-4中的NADH细胞色素b5还原酶基因。

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Based on the sequence information for bovine and yeast NADH-cytochrome b 5 reductases (CbRs), a DNA fragment was cloned from Mortierella alpina 1S-4 after PCR amplification. This fragment was used as a probe to isolate a cDNA clone with an open reading frame encoding 298 amino acid residues which show marked sequence similarity to CbRs from other sources, such as yeast (Saccharomyces cerevisiae), bovine, human, and rat CbRs. These results suggested that this cDNA is a CbR gene. The results of a structural comparison of the flavin-binding β-barrel domains of CbRs from various species and that of the M. alpina enzyme suggested that the overall barrel-folding patterns are similar to each other and that a specific arrangement of three highly conserved amino acid residues (i.e., arginine, tyrosine, and serine) plays a role in binding with the flavin (another prosthetic group) through hydrogen bonds. The corresponding genomic gene, which was also cloned fromM. alpina 1S-4 by means of a hybridization method with the above probe, had four introns of different sizes. These introns had GT at the 5′ end and AG at the 3′ end, according to a general GT-AG rule. The expression of the full-length cDNA in a filamentous fungus,Aspergillus oryzae, resulted in an increase (4.7 times) in ferricyanide reduction activity involving the use of NADH as an electron donor in the microsomes. The M. alpina CbR was purified by solubilization of microsomes with cholic acid sodium salt, followed by DEAE-Sephacel, Mono-Q HR 5/5, and AMP-Sepharose 4B affinity column chromatographies; there was a 645-fold increase in the NADH-ferricyanide reductase specific activity. The purified CbR preferred NADH over NADPH as an electron donor. This is the first report of an analysis of this enzyme in filamentous fungi.
机译:根据牛和酵母NADH-细胞色素b 5还原酶(CbRs)的序列信息,PCR扩增后从高山被孢霉1S-4克隆了一个DNA片段。该片段用作探针来分离具有编码298个氨基酸残基的开放阅读框的cDNA克隆,该残基与其他来源的CbR表现出明显的序列相似性,例如酵母(Saccharomyces cerevisiae),牛,人和大鼠CbR。这些结果表明该cDNA是CbR基因。对各种物种的CbRs的黄素结合β-桶结构域和高山分枝杆菌的结构进行结构比较的结果表明,整体的桶折叠模式彼此相似,并且三个高度保守的特定排列氨基酸残基(即精氨酸,酪氨酸和丝氨酸)通过氢键与黄素(另一个辅基)结合。相应的基因组基因,也从M克隆。通过与上述探针的杂交方法,alpina 1S-4具有四个不同大小的内含子。根据一般的GT-AG规则,这些内含子在5'端具有GT,在3'端具有AG。全长cDNA在丝状真菌米曲霉中的表达导致铁氰化物还原活性增加(4.7倍),涉及在微粒体中使用NADH作为电子供体。通过用胆酸钠溶液溶解微粒体,然后用DEAE-Sephacel,Mono-Q HR 5/5和AMP-Sepharose 4B亲和柱色谱对微粒体进行纯化,从而纯化了高山被孢霉CbR。 NADH-铁氰化物还原酶比活性增加了645倍。纯化的CbR比NADPH更优选NADH作为电子供体。这是分析丝状真菌中这种酶的第一份报告。

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