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首页> 外文期刊>The biochemical journal >Thiol-protein disulphide oxidoreductases. Differences between protein disulphide-isomerase and glutathione-insulin transhydrogenase activities in ox liver
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Thiol-protein disulphide oxidoreductases. Differences between protein disulphide-isomerase and glutathione-insulin transhydrogenase activities in ox liver

机译:硫醇蛋白二硫化物氧化还原酶。牛肝蛋白二硫键异构酶和谷胱甘肽胰岛素转氢酶活性的差异

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摘要

p1. Protein disulphide-isomerase and glutathione-insulin transhydrogenase activities were assayed in parallel through a conventional purification of protein disulphide-isomerase from ox liver. 2. Throughout a series of purification steps (differential centrifugation, acetone extraction, (NH4)2SO4 precipitation and ion-exchange chromatography), the two activities appeared in the same fractions but were purified to different extents. 3. The final sample was 143-fold purified in protein disulphide-isomerase but only 10-fold purified in glutathione-insulin transhydrogenase; nevertheless the two activities in this preparation were not resolved by high-resolution isoelectric focusing and both showed pI4.65. 4. In a partially purified preparation containing both activities, glutathione-insulin transhydrogenase was far more sensitive to heat denaturation than was protein disulphide-isomerase; conversely protein disulphide-isomerase was more sensitive to inactivation by deoxycholate. 5. The data are inconsistent with a single enzyme being responsible for all the protein disulphide-isomerase and glutathione-insulin transhydrogenase activity of ox liver. It is suggested that several similiar thiol-protein disulphide oxidoreductases of overlapping specificities may better account for the data./p
机译:> 1。通过从牛肝中常规纯化蛋白质二硫键异构酶,平行测定了蛋白质二硫键异构酶和谷胱甘肽-胰岛素转氢酶的活性。 2.在一系列纯化步骤(差速离心,丙酮萃取,(NH4)2SO4沉淀和离子交换色谱)中,这两种活性以相同的级分出现,但纯化程度不同。 3.最终样品在蛋白质二硫键异构酶中纯化了143倍,而在谷胱甘肽-胰岛素转氢酶中纯化的只有10倍。然而,该制备中的两种活性没有通过高分辨率等电聚焦解决,并且均显示为pI4.65。 4.在同时具有两种活性的部分纯化的制剂中,谷胱甘肽-胰岛素转氢酶对热变性的敏感性远高于蛋白质二硫键异构酶。相反,蛋白质二硫键异构酶对脱氧胆酸盐的失活更为敏感。 5.数据与牛肝中所有蛋白质二硫键异构酶和谷胱甘肽-胰岛素转氢酶活性的单一酶不一致。建议几种相似的相似硫醇蛋白二硫化物氧化还原酶可以更好地解释这些数据。

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