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Effect of Chemical Oxidation on the Higher Order Structure, Stability, Aggregation, and Biological Function of Interferon Alpha-2a: Role of Local Structural Changes Detected by 2D NMR

机译:化学氧化对干扰素α-2A的高阶结构,稳定性,聚集和生物学功能的影响:2D NMR检测到局部结构变化的作用

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PurposeOxidized interferons have been shown to aggregate and cause immunogenicity. In this study, the structural mechanisms underlying oxidation-induced interferon alpha-2a (IFNA2a) aggregation and loss of function were examined.MethodsIFNA2a was oxidized using 0.037% vol/vol hydrogen peroxide. Oxidized protein was probed using biophysical methods that include denaturant melts, particle counting, proteolysis-coupled mass spectrometry, and 2D NMR.ResultsOxidized IFNA2a did not show major changes in its secondary structure, but showed minor changes in tertiary structure when compared to the unoxidized protein. In addition, a significant loss of conformational stability was observed upon oxidation. Correspondingly, increased protein aggregation was observed resulting in the formation of sub-visible particles. Oxidized protein showed decreased biological function in terms of its anti-viral potency and cytopathic inhibition efficacy. Proteolysis-coupled mass spectrometry identified five methionine residues that were oxidized with no correlation between the extent of oxidation and their accessible surface area. 2D N-15-H-1 HSQC NMR identified residue-level local structural changes in the protein upon oxidation, which were not detectable by global probes such as far-UV circular dichroism and fluorescence.ConclusionsIncreased protein aggregation and decreased function of IFNA2a upon oxidation correlated with the site of modification identified by proteolysis-coupled mass spectrometry and local structural changes in the protein detected by 2D NMR.
机译:已显示旨在氧化干扰素来聚集并引起免疫原性。在该研究中,研究了氧化诱导的干扰素α-2a(IFNA2a)聚集和功能丧失的结构机制。方法使用0.037%Vol /体积氧化氢氧化。使用包括变性熔体的生物物理方法探测氧化蛋白,颗粒计数,蛋白水解偶联质谱法和2D NMR.ReSultSuxidized的IFNA2a未显示其二级结构的主要变化,但与未氧化蛋白相比,三级结构的微小变化。此外,在氧化时观察到综合稳定性的显着损失。相应地,观察到增加的蛋白质聚集导致亚可见颗粒的形成。氧化蛋白在其抗病毒效力和细胞病变抑制作用方面表现出降低的生物学功能。蛋白水解偶联质谱法鉴定了氧化的五个蛋氨酸残基,在氧化程度与可接近的表面积之间没有相关性。 2D N-15-H-1 HSQC NMR在氧化时确定了蛋白质中的残留水平局部结构变化,其通过全局探针如FAR-UV圆形二色性和荧光未检测到.Cluclionsincreasion蛋白质聚集和IFNA2a在氧化时的函数降低与通过蛋白水解偶联质谱法鉴定的修饰位点和由2D NMR检测到的蛋白质中的局部结构变化相关。

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