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Human catalytic antibodies with glutathione peroxidase activity

机译:具有谷胱甘肽过氧化物酶活性的人催化抗体

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In order to generate catalytic antibodies with glutathione peroxidase (GPx) activity, we prepared GSH-S-DNP butyl ester and GSH-S-DNP benzyl ester as the haptens. Two ScFvs that bound specifically to the haptens were selected from the human phage-displayed antibody library. The two ScFv genes were highly homologous, consisting of 786 bps and belonging to the same VH family-DP25. In the premise of maintaining the amino acid sequence, mutated plasmids were constructed by use of the mutated primers in PCR, and they were over-expressed in E. coli. After the active site serine was converted into selenocysteine with the chemical modifying method, we obtained two human catalytic antibodies with GPx activity of 72.2U/mu mol and 28.8U/mu mol, respectively. With the aid of computer mimicking, it can be assumed that the antibodies can form dimers and the mutated selenocysteine residue is located in the binding site. Furthermore, the same Ping-Pong mechanism as the natural GPx was observed when the kinetic behavior of the antibody with the higher activity was studied.
机译:为了产生具有谷胱甘肽过氧化物酶(GPx)活性的催化抗体,我们制备了GSH-S-DNP丁酯和GSH-S-DNP苄基酯作为半抗原。从人噬菌体展示的抗体文库中选择了两个特异性结合半抗原的ScFv。这两个ScFv基因高度同源,由786 bps组成,属于同一VH家族-DP25。在维持氨基酸序列的前提下,通过使用PCR中的突变引物来构建突变的质粒,并且它们在大肠杆菌中过表达。用化学修饰方法将活性位点丝氨酸转化为硒代半胱氨酸后,我们获得了两种人的GPx活性分别为72.2U /μmol和28.8U /μmol的人催化抗体。借助于计算机模拟,可以假定抗体可以形成二聚体并且突变的硒代半胱氨酸残基位于结合位点。此外,当研究具有较高活性的抗体的动力学行为时,观察到与天然GPx相同的乒乓机制。

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