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Cloning and expression of a single-chain catalytic antibody that acts as a glutathione peroxidase mimic with high catalytic efficiency.

机译:谷胱甘肽过氧化物酶模拟物的单链催化抗体的克隆和表达具有很高的催化效率。

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摘要

Glutathione peroxidase (GPX) has a powerful role in scavenging reactive oxygen species. In previous papers we have developed a new strategy for generating abzymes: the monoclonal antibody with a substrate-binding site is first prepared, then a catalytic group is incorporated into the monoclonal antibody's binding site by using chemical mutation [Luo, Zhu, Ding, Gao, Sun, Liu, Yang and Shen (1994) Biochem. Biophys. Res. Commun. 198, 1240-1247; Ding, Liu, Zhu, Luo, Zhao and Ni (1998) Biochem. J. 332, 251-255]. Since then we have established a series of catalytic antibodies capable of catalysing the decomposition of hydroperoxides by GSH. The monoclonal antibody 2F3 was raised against GSH-S-2,4-dinitrophenyl t-butyl ester and exhibited high catalytic efficiency, exceeding that of rabbit liver GPX, after chemical mutation. To produce pharmaceutical proteins and to study the reason why it exhibits high catalytic efficiency, we sequenced, cloned and expressed the variable regions of 2F3 antibody as a single-chain Fv fragment (2F3-scFv) in different bacterial strains. The amounts of 2F3-scFv proteins expressed from JM109 (DE3), BL21 (DE3), and BL21 (coden plus) were 5-10%, 15-20% and 25-30% of total bacterial proteins respectively. The 2F3-scFv was expressed as inclusion bodies, purified in the presence of 8 M urea by Co(2+)-immobilized metal-affinity chromatography (IMAC) and renatured to the active form in vitro by gel filtration. The binding constants of the active 2F3-scFv for GSH and GSSG were 2.46 x 10(5) M(-1) and 1.03 x 10(5) M(-1) respectively, which were less by one order of magnitude than that of the intact 2F3 antibody. The active 2F3-scFv was converted into selenium-containing 2F3-scFv (Se-2F3-scFv) by chemical modification of the reactive serine; the GPX activity of the Se-2F3-scFv was 3394 units/micromol, which approaches the activity of rabbit liver GPX.
机译:谷胱甘肽过氧化物酶(GPX)在清除活性氧方面具有强大的作用。在以前的论文中,我们已经开发了一种新的产生抗体酶的策略:首先制备具有底物结合位点的单克隆抗体,然后通过化学突变将催化基团掺入单克隆抗体的结合位点[罗,朱,丁,高,Sun,Liu,Yang和Shen(1994)Biochem。生物物理学。 Res。公社198,1240-1247;丁,刘,朱,罗,赵和倪(1998)生物化学。 J. 332,251-255]。从那时起,我们已经建立了一系列催化抗体,能够催化GSH分解氢过氧化物。经过化学突变,单克隆抗体2F3产生抗GSH-S-2,4-二硝基苯基叔丁酯的催化作用,具有超过兔肝GPX的高催化效率。为了生产药物蛋白并研究其表现出高催化效率的原因,我们对2F3抗体的可变区进行了测序,克隆和表达,并将其作为单链Fv片段(2F3-scFv)在不同细菌菌株中表达。从JM109(DE3),BL21(DE3)和BL21(coden plus)表达的2F3-scFv蛋白的量分别占细菌总蛋白的5-10%,15-20%和25-30%。 2F3-scFv表示为包涵体,在8 M尿素存在下通过Co(2+)固定的金属亲和色谱(IMAC)纯化,并通过凝胶过滤在体外复性为活性形式。活性2F3-scFv对GSH和GSSG的结合常数分别为2.46 x 10(5)M(-1)和1.03 x 10(5)M(-1),比两者的结合常数小一个数量级。完整的2F3抗体。通过对反应性丝氨酸进行化学修饰,将活性2F3-scFv转化为含硒的2F3-scFv(Se-2F3-scFv); Se-2F3-scFv的GPX活性为3394单位/微摩尔,接近兔肝GPX的活性。

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