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Evaluation of global conformational changes in peptides and proteins following purification by supercritical fluid chromatography

机译:超临界流体色谱法纯化后肽和蛋白质的全局构象变化的评价

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Supercritical fluid chromatography (SFC) has become the fastest growing analytical tool for chiral and achiral small-molecule pharmaceutical separations.The benefits from savings in cost (as a result of lower solvent and energy consumption), and time have made SFC a proven effective tool for solving many analytical problems for small-molecules over the years.There is, however, a gap in the application of SFC for larger biomolecules, proteins and peptides.There has been a notable increase of protein-and peptide-based drug therapies that contain a higher-order structure important to their efficacy.These studies leverage the use of size exclusion chromatography coupled with hydrogen–deuterium exchange (SEC-HDX) methodology and circular dichroism (CD) spectroscopy to probe global conformational structures of model peptides and proteins following purification by preparative SFC.It was demonstrated that bradykinin and insulin can be used in SFC purification, and moreover, insulin was able to recover its original higher-order structure when compared to pre-purification insulin by three orthogonal techniques: 1) calculated percent alpha-helicity based on CD spectra, 2) alpha-helix-temperature hysteresis analysis by CD and 3) SEC-HDX-MS at different temperatures.However, it was shown that the higher order structures of the other three model proteins used in the study (ubiquitin, cytochrome C, and apomyoglobin) were significantly modified during SFC purification and were unable to re-fold to their original conformations.The present workflow was applied successfully to several peptide therapeutic programs at our comp any and in addition can be applied for small proteins.
机译:超临界流体色谱(SFC)已成为手性和成立的小分子药物分离的增长分析工具。从成本节省的好处(由于较低的溶剂和能耗)和时间已经使SFC成为了证明的有效工具多年来解决小分子的许多分析问题。然而,在较大的生物分子,蛋白质和肽的应用中施加差距。含有蛋白质和肽的药物治疗的显着增加对其疗效的高阶结构很重要。这些研究利用尺寸排阻色谱法与氢 - 氘交换(SEC-HDX)方法和圆形二色性(CD)光谱相结合,以探测纯化后的模型肽和蛋白质的全局构象结构通过制备SFC.Sit证明Bradykinin和胰岛素可用于SFC纯化,而且,胰岛素能够与预纯化胰岛素的三个正交技术相比,恢复其原始高阶结构:1)基于CD光谱计算的α-螺旋百分比,2)CD和3)SEC-HDX-MS在不同的温度下。无论何种,都显示出在SFC净化期间显着修饰了研究中使用的其他三种模型蛋白质的较高阶蛋白质(遍在蛋白,细胞色素C和Apomyoglobin),并且无法重新折叠其原始构象。目前的工作流程成功应用于我们Comp的几种肽治疗程序,并且可以应用于小蛋白质。

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