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首页> 外文期刊>The FEBS journal >Variants of beta-microglobulin cleaved at lysine-58 retain the main conformational features of the native protein but are more conformationally heterogeneous and unstable at physiological temperature
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Variants of beta-microglobulin cleaved at lysine-58 retain the main conformational features of the native protein but are more conformationally heterogeneous and unstable at physiological temperature

机译:在赖氨酸58处裂解的β-微球蛋白变体保留了天然蛋白质的主要构象特征,但在生理温度下构象异质且不稳定

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摘要

Cleavage of the small amyloidogenic protein beta2-microglobulin after lysine-58 renders it more prone to unfolding and aggregation. This is important for dialysis-related beta2-microglobulin amyloidosis, since elevated levels of cleaved beta2-microglobulin may be found in the circulation of dialysis patients. However, the solution structures of these cleaved beta2-microglobulin variants have not yet been assessed using single-residue techniques. We here use such methods to examine beta2-microglobulin cleaved after lysine-58 and the further processed variant (found in vivo) from which lysine-58 is removed. We find that the solution stability of both variants, especially of beta2-microglobulin from which lysine-58 is removed, is much reduced compared to wild-type beta2-microglobulin and is strongly dependent on temperature and protein concentration. 1H-NMR spectroscopy and amide hydrogen (1H/2H) exchange monitored by MS show that the overall three-dimensional structure of the variants is similar to that of wild-type beta2-microglobulin at subphysiological temperatures. However, deviations do occur, especially in the arrangement of the B, D and E beta-strands close to the D-E loop cleavage site at lysine-58, and the experiments suggest conformational heterogeneity of the two variants. Two-dimensional NMR spectroscopy indicates that this heterogeneity involves an equilibrium between the native-like fold and at least one conformational intermediate resembling intermediates found in other structurally altered beta2-microglobulin molecules. This is the first single-residue resolution study of a specific beta2-microglobulin variant that has been found circulating in dialysis patients. The instability and conformational heterogeneity of this variant suggest its involvement in beta2-microglobulin amyloidogenicity in vivo.
机译:赖氨酸58后,小淀粉样蛋白β2-微球蛋白的裂解使它更易于解折叠和聚集。这对于与透析有关的β2-微球蛋白淀粉样变性很重要,因为在透析患者的血液中可能会发现裂解的β2-微球蛋白水平升高。但是,尚未使用单残基技术评估这些裂解的β2-微球蛋白变体的溶液结构。我们在这里使用这种方法来检查赖氨酸58后裂解的beta2微球蛋白和赖氨酸58从中删除的进一步加工的变体(体内发现)。我们发现,与野生型β2-微球蛋白相比,两个变体,尤其是去除了赖氨酸58的β2-微球蛋白的溶液稳定性大大降低,并且强烈依赖于温度和蛋白质浓度。 MS监测的1H-NMR光谱和酰胺氢(1H / 2H)交换表明,在亚生理温度下,变体的整体三维结构与野生型β2-微球蛋白相似。但是,确实会发生偏差,特别是在赖氨酸58的D-E环裂解位点附近的B,D和Eβ链排列中,实验表明这两个变异体的构象异质性。二维NMR光谱表明,这种异质性涉及天然样折叠与至少一个类似中间体之间的平衡,该中间体类似于在其他结构改变的β2-微球蛋白分子中发现的中间体。这是首次发现在透析患者中​​循环的特定β2-微球蛋白变异体的单残基拆分研究。此变体的不稳定性和构象异质性表明其参与体内的β2-微球蛋白淀粉样变性。

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