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猪带绦虫线粒体硫氧还蛋白(TsTrx2)、细胞质硫氧还蛋白(TsTrx1)和谷胱甘肽还原酶(TsGrx1)的克隆、表达、纯化和动力学特征。

Cloning, expression, purification, and kinetic characterization of mitochondrial thioredoxin (TsTrx2), cytosolic thioredoxin (TsTrx1), and glutaredoxin (TsGrx1) from Taenia solium.

机构信息

Departamento de Microbiología y Parasitología, Facultad de Medicina, Universidad Nacional Autónoma de Mexico, UNAM, Edificio "A" de Investigación, 6° piso, 04510, Ciudad de México, Mexico.

出版信息

Parasitol Res. 2019 Jun;118(6):1785-1797. doi: 10.1007/s00436-019-06336-4. Epub 2019 May 6.

Abstract

We report the complete coding sequences of mitochondrial thioredoxin (TsTrx2) and glutaredoxin (TsGrx1) from the cysticerci of T. solium. The full-length DNA of the TsTrx2 gene shows two introns of 88 and 77 bp and three exons. The TsTrx2 gene contains a single ORF of 423 bp, encoding 140 amino acid residues with an estimated molecular weight of 15,560 Da. A conserved C64NPC67 active site and a 30-amino acid extension at its N-terminus were identified. An insulin reduction reaction was used to determine whether it was a functional recombinant protein. The full-length DNA of the TsGrx1 gene shows one intron of 39 bp and a single ORF of 315 bp, encoding 105 amino acid residues with an estimated molecular weight of 12,582 Da. Sequence analysis revealed a conserved dithiol C34PYC37 active site, GSH-binding motifs (CXXC, Lys and Gln/Arg, TVP, and CXD), and a conserved Gly-Gly motif. The r-TsGrx1 kinetic constants for glutathione (GSH) and 2-hydroxyethyl disulfide (HED) were determined. In addition, cytosolic thioredoxin (TsTrx1), as reported by (Jiménez et al., Biomed Res Int 2015:453469, 2015), was cloned and expressed, and its catalytic constants were obtained along with those of the other two reductases. Rabbit-specific antibodies showed immune cross-reactions between TsTrx1 and TsTrx2 but not with TsGrx1. Both TsTGRs as reported by (Plancarte and Nava, Exp Parasitol 149:65-73, 2015) were biochemically purified to obtain and compare the catalytic constants for their natural substrates, r-TsTrx1, and r-TsTrx2, compared to those for Trx-SE. coli. In addition, we determined the catalytic differences between the glutaredoxin activity of the TsTGRs compared with r-TsGrx1. These data increase the knowledge of the thioredoxin and GSH systems in T. solium, which is relevant for detoxification and immune evasion.

摘要

我们报道了猪带绦虫囊尾蚴中线粒体硫氧还蛋白(TsTrx2)和谷氧还蛋白(TsGrx1)的完整编码序列。TsTrx2 基因全长 DNA 显示两个 88 和 77 bp 的内含子和三个外显子。TsTrx2 基因包含一个单一的 ORF,长度为 423 bp,编码 140 个氨基酸残基,估计分子量为 15560 Da。鉴定出保守的 C64NPC67 活性位点和其 N 末端的 30 个氨基酸延伸。使用胰岛素还原反应来确定它是否是一种功能性重组蛋白。TsGrx1 基因全长 DNA 显示一个 39 bp 的内含子和一个 315 bp 的单一 ORF,编码 105 个氨基酸残基,估计分子量为 12582 Da。序列分析显示保守的二硫键 C34PYC37 活性位点、GSH 结合基序(CXXC、Lys 和 Gln/Arg、TVP 和 CXD)和保守的 Gly-Gly 基序。确定了 r-TsGrx1 对谷胱甘肽(GSH)和 2-羟乙基二硫(HED)的动力学常数。此外,正如(Jiménez 等人,Biomed Res Int 2015:453469, 2015)所报道的细胞质硫氧还蛋白(TsTrx1)被克隆和表达,并获得了与其他两种还原酶的催化常数。兔特异性抗体显示 TsTrx1 和 TsTrx2 之间存在免疫交叉反应,但 TsGrx1 则没有。正如(Plancarte 和 Nava,Exp Parasitol 149:65-73, 2015)所报道的两个 TsTGRs 被生物化学纯化以获得并比较其天然底物 r-TsTrx1 和 r-TsTrx2 的催化常数,与 Trx-SE.coli 相比。此外,我们还确定了 TsTGRs 的谷氧还蛋白活性与 r-TsGrx1 相比的催化差异。这些数据增加了对猪带绦虫硫氧还蛋白和 GSH 系统的了解,这与解毒和免疫逃避有关。

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