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首页> 外文期刊>Experimental and therapeutic medicine >Cloning and sequence analysis demonstrate the chromate reduction ability of a novel chromate reductase gene from Serratia sp.
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Cloning and sequence analysis demonstrate the chromate reduction ability of a novel chromate reductase gene from Serratia sp.

机译:克隆和序列分析证明了来自沙雷氏菌的新的铬酸盐还原酶基因的铬酸盐还原能力。

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摘要

The ChrT gene encodes a chromate reductase enzyme which catalyzes the reduction of Cr(VI). The chromate reductase is also known as flavin mononucleotide (FMN) reductase (FMN_red). The aim of the present study was to clone the full-length ChrT DNA from Serratia sp. CQMUS2 and analyze the deduced amino acid sequence and three-dimensional structure. The putative ChrT gene fragment of Serratia sp. CQMUS2 was isolated by polymerase chain reaction (PCR), according to the known FMN_red gene sequence from Serratia sp. AS13. The flanking sequences of the ChrT gene were obtained by high efficiency TAIL-PCR, while the full-length gene of ChrT was cloned in Escherichia coli for subsequent sequencing. The nucleotide sequence of ChrT was submitted onto GenBank under the accession number, KF211434. Sequence analysis of the gene and amino acids was conducted using the Basic Local Alignment Search Tool, and open reading frame (ORF) analysis was performed using ORF Finder software. The ChrT gene was found to be an ORF of 567 bp that encodes a 188-amino acid enzyme with a calculated molecular weight of 20.4 kDa. In addition, the ChrT protein was hypothesized to be an NADPH-dependent FMN_red and a member of the flavodoxin-2 superfamily. The amino acid sequence of ChrT showed high sequence similarity to the FMN reductase genes of Klebsiella pneumonia and Raoultella ornithinolytica, which belong to the flavodoxin-2 superfamily. Furthermore, ChrT was shown to have a 85.6% similarity to the three-dimensional structure of Escherichia coli ChrR, sharing four common enzyme active sites for chromate reduction. Therefore, ChrT gene cloning and protein structure determination demonstrated the ability of the gene for chromate reduction. The results of the present study provide a basis for further studies on ChrT gene expression and protein function.
机译:ChrT基因编码一种铬酸盐还原酶,可催化Cr(VI)的还原。铬酸盐还原酶也称为黄素单核苷酸(FMN)还原酶(FMN_red)。本研究的目的是从沙雷氏菌中克隆全长ChrT DNA。并分析了CQMUS2的推导氨基酸序列和三维结构。沙雷氏菌的推定ChrT基因片段。根据Serratia sp。的已知FMN_red基因序列,通过聚合酶链反应(PCR)分离CQMUS2。 AS13。通过高效TAIL-PCR获得了ChrT基因的侧翼序列,同时在大肠杆菌中克隆了ChrT的全长基因用于后续测序。 ChrT的核苷酸序列以登录号KF211434提交给GenBank。使用基本局部比对搜索工具进行基因和氨基酸的序列分析,并使用ORF Finder软件进行开放阅读框(ORF)分析。发现ChrT基因是一个567 bp的ORF,它编码一个188个氨基酸的酶,计算的分子量为20.4 kDa。此外,假设ChrT蛋白是NADPH依赖的FMN_red,是flavodoxin-2超家族的成员。 ChrT的氨基酸序列与肺炎克雷伯氏菌和解毒劳尔氏菌的FMN还原酶基因高度相似,属于Flavodoxin-2超家族。此外,显示ChrT与大肠杆菌ChrR的三维结构有85.6%的相似性,共有四个用于减少铬酸盐的常见酶活性位点。因此,ChrT基因克隆和蛋白质结构测定证明了该基因具有减少铬酸盐的能力。本研究结果为进一步研究ChrT基因表达和蛋白功能提供了基础。

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