首页> 外文期刊>Applied and Environmental Microbiology >Cloning, Overexpression, and Mutagenesis of theSporobolomyces salmonicolor AKU4429 Gene Encoding a New Aldehyde Reductase, Which Catalyzes the Stereoselective Reduction of Ethyl 4-Chloro-3-Oxobutanoate to Ethyl (S)-4-Chloro-3-Hydroxybutanoate
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Cloning, Overexpression, and Mutagenesis of theSporobolomyces salmonicolor AKU4429 Gene Encoding a New Aldehyde Reductase, Which Catalyzes the Stereoselective Reduction of Ethyl 4-Chloro-3-Oxobutanoate to Ethyl (S)-4-Chloro-3-Hydroxybutanoate

机译:编码新醛还原酶的鲑鱼孢霉菌AKU4429基因的克隆,过表达和诱变,该酶催化将4-氯-3-氧代丁酸乙酯立体选择性还原为(S)-4-氯-3-羟丁酸乙酯

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We cloned and sequenced the gene encoding an NADPH-dependent aldehyde reductase (ARII) in Sporobolomyces salmonicolorAKU4429, which reduces ethyl 4-chloro-3-oxobutanoate (4-COBE) to ethyl (S)-4-chloro-3-hydroxybutanoate. The ARII gene is 1,032 bp long, is interrupted by four introns, and encodes a 37,315-Da polypeptide. The deduced amino acid sequence exhibited significant levels of similarity to the amino acid sequences of members of the mammalian 3β-hydroxysteroid dehydrogenase–plant dihydroflavonol 4-reductase superfamily but not to the amino acid sequences of members of the aldo-keto reductase superfamily or to the amino acid sequence of an aldehyde reductase previously isolated from the same organism (K. Kita, K. Matsuzaki, T. Hashimoto, H. Yanase, N. Kato, M. C.-M. Chung, M. Kataoka, and S. Shimizu, Appl. Environ. Microbiol. 62:2303–2310, 1996). The ARII protein was overproduced inEscherichia coli about 2,000-fold compared to the production in the original yeast cells. The enzyme expressed inE. coli was purified to homogeneity and had the same catalytic properties as ARII purified from S. salmonicolor. To examine the contribution of the dinucleotide-binding motif G19-X-X-G22-X-X-A25, which is located in the N-terminal region, during ARII catalysis, we replaced three amino acid residues in the motif and purified the resulting mutant enzymes. Substrate inhibition of the G19→A and G22→A mutant enzymes by 4-COBE did not occur. The A25→G mutant enzyme could reduce 4-COBE when NADPH was replaced by an equimolar concentration of NADH.
机译:我们克隆并测序了编码鲑鱼孢菌AKU4429中NADPH依赖性醛还原酶(ARII)的基因,该基因将4-氯-3-氧代丁酸乙酯(4-COBE)还原为(S)-4-氯-3-羟基丁酸乙酯。 ARII基因长1,032 bp,被四个内含子打断,并编码37,315-Da多肽。推导的氨基酸序列与哺乳动物3β-羟类固醇脱氢酶-植物二氢黄酮醇4-还原酶超家族成员的氨基酸序列具有显着水平的相似性,但与醛糖-酮还原酶超家族成员的氨基酸序列或与先前从同一生物体中分离的醛还原酶的氨基酸序列(K. Kita,K。Matsuzaki,T。Hashimoto,H。Yanase,N。Kato,MC-M。Chung,M。Kataoka和S. Shimizu,Appl (Environ.Microbiol.62:2303-2310,1996)。与原始酵母细胞中的产量相比,ARII蛋白在大肠杆菌中的产量过高,约为2000倍。酶在E中表达。大肠埃希氏菌被纯化至均质,并具有与从鲑鱼沙门氏菌纯化的ARII相同的催化特性。为了在ARII催化过程中检查位于N端区域的二核苷酸结合基序G19-X-X-G22-X-X-A25的贡献,我们替换了基序中的三个氨基酸残基,并纯化了所得的突变酶。没有发生4-COBE对G19→A和G22→A突变酶的底物抑制。当NADPH被等摩尔浓度的NADH替代时,A25→G突变酶可以还原4-COBE。

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