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胰岛素类似物聚集体的大小表征及组成蛋白分子的构象:动态光散射与拉曼光谱同步研究

Characterization of Sizes of Aggregates of Insulin Analogs and the Conformations of the Constituent Protein Molecules: A Concomitant Dynamic Light Scattering and Raman Spectroscopy Study.

作者信息

Zhou Chen, Qi Wei, Lewis E Neil, Carpenter John F

机构信息

Department of Pharmaceutical Sciences, University of Colorado, Anschutz Medical Campus, Aurora, Colorado 80045.

Malvern Instruments, Inc., Columbia, Maryland 21046.

出版信息

J Pharm Sci. 2016 Feb;105(2):551-558. doi: 10.1016/j.xphs.2015.10.023. Epub 2016 Jan 9.

DOI:10.1016/j.xphs.2015.10.023
PMID:26869418
Abstract

To generate aggregates, 3 insulin analogs, lispro, aspart, and glulisine, were incubated without phenolic preservatives for 30 days at 37 °C. As a function of incubation time, aggregation was quantified with size exclusion chromatography, and the sizes of aggregates and the conformations of the constituent molecules were characterized with concomitant dynamic light scattering and Raman spectroscopy. During incubation, lispro was progressively converted into soluble aggregates with hydrodynamic diameters of circa 15 nm, and 95% of the native protein had aggregated at day 30. Raman spectroscopy documented that aggregation resulted in conversion of a large fraction of native alpha helix into nonnative beta sheet structure and a distortion of disulfide bonds. In contrast, for aspart and glulisine only 20% of the native proteins aggregated after 30 days, and minimal structural perturbations were detected. In addition, consistent with the relative aggregation rates during isothermal incubation, Raman spectroscopy showed that during heating the onset temperature for secondary structural perturbations of lispro occurred 7 °C-10 °C lower than those for aspart or glulisine. Overall the results of this study demonstrated that-as in the case during formation of amyloid fibrils from insulin-formation of soluble aggregates of lispro resulted in a high level of conversion of alpha helix into beta sheet.

摘要

为了生成聚集体,将3种胰岛素类似物,即赖脯胰岛素、门冬胰岛素和谷赖胰岛素,在不含酚类防腐剂的情况下于37℃孵育30天。作为孵育时间的函数,用尺寸排阻色谱法对聚集进行定量,并用动态光散射和拉曼光谱法对聚集体的大小和组成分子的构象进行表征。在孵育过程中,赖脯胰岛素逐渐转化为流体动力学直径约为15nm的可溶性聚集体,在第30天时95%的天然蛋白质已经聚集。拉曼光谱记录表明,聚集导致大部分天然α螺旋转化为非天然β折叠结构,并使二硫键发生扭曲。相比之下,门冬胰岛素和谷赖胰岛素在30天后只有20%的天然蛋白质发生聚集,并且检测到的结构扰动最小。此外,与等温孵育期间的相对聚集速率一致,拉曼光谱显示,在加热过程中,赖脯胰岛素二级结构扰动的起始温度比门冬胰岛素或谷赖胰岛素低7℃-10℃。总体而言,本研究结果表明——如同从胰岛素形成淀粉样纤维的情况一样——赖脯胰岛素可溶性聚集体的形成导致α螺旋向β折叠的高水平转化。

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