首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Nonspecific shielding of unfavorable electrostatic intramolecular interactions in the erythropoietin native-state increase conformational stability and limit non-native aggregation
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Nonspecific shielding of unfavorable electrostatic intramolecular interactions in the erythropoietin native-state increase conformational stability and limit non-native aggregation

机译:促红细胞生成素天然状态中不利的静电分子间相互作用的非特异性屏蔽可增加构象稳定性并限制非天然聚集

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摘要

Previous equilibrium and kinetic folding studies of the glycoprotein erythropoietin indicate that sodium chloride increases the conformational stability of this therapeutically important cytokine, ostensibly by stabilizing the native-state [Banks DD, (2011) The Effect of Glycosylation on the Folding Kinetics of Erythropoietin. J Mol Biol 412:536–550]. The focus of the current report is to determine the underlying cause of the salt dependent increase in erythropoietin conformational stability and to understand if it has any impact on aggregation, an instability that remains a challenge to the biotech industry in maintaining the efficacy and shelf-life of protein therapeutics. Isothermal urea denaturation experiments conducted at numerous temperatures in the absence and presence of sodium chloride indicated that salt stabilizes erythropoietin primarily by increasing the difference in enthalpy between the native and unfolded sates. This result, and the finding that the salt induced increases in erythropoietin melting temperatures were independent of the identity of the salt cation and anion, indicates that salt likely increases the conformational stability of erythropoietin at neutral pH by nonspecific shielding of unfavorable electrostatic interaction(s) in the native-state. The addition of salt (even low concentrations of the strong chaotrope salt guanidinium hydrochloride) also exponentially decreased the initial rate of soluble erythropoietin non-native aggregation at 37 °C storage.
机译:糖蛋白促红细胞生成素的先前平衡和动力学折叠研究表明,氯化钠表面上可以通过稳定天然状态来增加这种具有治疗意义的细胞因子的构象稳定性[Banks DD,(2011)糖基化对促红细胞生成素折叠动力学的影响。分子生物学杂志412:536–550]。本报告的重点是确定促红细胞生成素构象稳定性盐依赖性增加的根本原因,并了解其是否对聚集产生任何影响,这种不稳定性仍然是生物技术行业在维持功效和保质期方面所面临的挑战蛋白质疗法。在不存在和存在氯化钠的情况下在多个温度下进行的等温尿素变性实验表明,盐主要通过增加天然和未折叠状态之间的焓差来稳定促红细胞生成素。该结果以及盐诱导的促红细胞生成素熔化温度升高的发现与盐阳离子和阴离子的身份无关,这表明盐可能通过非特异性屏蔽不利的静电相互作用而在中性pH下增加了促红细胞生成素的构象稳定性。在原始状态。添加盐(即使是低浓度的强离液剂盐胍盐盐也是如此)也以指数方式降低了37°C储存条件下可溶性促红细胞生成素非天然聚集的初始速率。

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