首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Trifluoroethanol-assisted protein folding: fragment 53-103 of bovine α-lactalbumin
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Trifluoroethanol-assisted protein folding: fragment 53-103 of bovine α-lactalbumin

机译:三氟乙醇辅助的蛋白质折叠:牛α-乳白蛋白的片段53-103

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摘要

Fragment 53-103 of bovine α-lactalbumin, prepared by limited peptic digestion of the protein at low pH, is a 51-residue polypeptide chain crosslinked by two disulfide bonds encompassing helix C (residues 86-98) of the native protein. Refolding of the fully reduced fragment (four - SH groups) is expected to lead to three fully oxidized isomers, the native (61-77, 73-91) and the two misfolded species named ribbon (61-91, 73-77) and beads (61-73, 77-91) isomers. The fragment with correct disulfide bonds was formed in approx. 30% yield when refolding was conducted in aqueous solution at neutral pH in the presence of the redox system constituted by reduced and oxidized glutathione. On the other hand, when the reaction was conducted in 30% (v/v) trifluoroethanol (TFE), the oxidative refolding to the native isomer was almost quantitative. To provide an explanation of the beneficial effect of TFE in promoting the correct oxidative folding, the conformational features of the various fragment species were analyzed by far-UV circular dichroism measurements. The fully reduced fragment is largely unfolded in water, but it becomes helical in aqueous TFE. Correctly refolded fragment is produced most when the helical contents of the reduced and oxidized fragment in aqueous TFE are roughly equal. It is proposed that 30% TFE promotes a native-like format of the fragment and thus an efficient and correct pairing of disulfides. Higher concentrations of TFE, instead, promote some non-native helical secondary structure in the fragment species, thus hampering correct folding.
机译:牛α-乳清蛋白的片段53-103是在低pH下通过有限的消化性消化而制备的,它是一个51残基的多肽链,被两个二硫键交联,这些二硫键包含天然蛋白的螺旋C(残基86-98)。重新折叠完全还原的片段(四个-SH基团)预计会导致三个完全氧化的异构体,即天然(61-77,73-91)和两个错误折叠的物种,称为带(61-91,73-77)和珠(61-73、77-91)异构体。具有正确的二硫键的片段大约在大约5分钟内形成。当在由还原和氧化的谷胱甘肽构成的氧化还原体系存在下,在中性pH下于水溶液中进行重折叠时,收率为30%。另一方面,当反应在30%(v / v)三氟乙醇(TFE)中进行时,氧化成天然异构体的折叠几乎是定量的。为了解释TFE促进正确的氧化折叠的有益作用,通过远紫外圆二色性测量分析了各种片段物种的构象特征。完全还原的片段在水中大部分展开,但在水性TFE中变成螺旋形。当水性TFE中还原和氧化后的片段的螺旋含量大致相等时,最能正确折叠的片段会产生。提出30%的TFE促进片段的天然形式,从而促进二硫键的有效和正确配对。相反,较高浓度的TFE会促进碎片物种中的某些非天然螺旋二级结构,从而妨碍正确折叠。

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