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The effect of HOCl-induced modifications on phosphatase and tensin homologue (PTEN) structure and function

机译:Hocl诱导的修饰对磷酸酶和苔藓素同源(PTEN)结构的影响

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Oxidation by reactive species can cause changes in protein function and affect cell signalling pathways. Phosphatase and tensin homologue (PTEN) is a negative regulator of the PI3K/AKT pathway and is known to be inhibited by oxidation, but its oxidation by the myeloperoxidase-derived oxidant hypochlorous acid (HOCl) has not previously been investigated. PTEN-GST was treated with HOCl:protein ratios from 15:1 to 300:1. Decreases in PTEN phosphatase activity were observed at treatment ratios of 60:1 and higher, which correlated with the loss of the intact protein band and appearance of high molecular weight aggregates in SDS-PAGE. LC-MSMS was used to map oxidative modifications (oxPTMs) in PTEN-GST tryptic peptides and label-free quantitative proteomics used to determine their relative abundance. Twenty different oxPTMs of PTEN were identified, of which 14 were significantly elevated upon HOCl treatment in a dose-dependent manner. Methionine and cysteine residues were the most heavily oxidised; the percentage modification depended on their location in the sequence, reflecting differences in susceptibility. Other modifications included tyrosine chlorination and dichlorination, and hydroxylations of tyrosine, tryptophan, and proline. Much higher levels of oxidation occurred in the protein aggregates compared to the monomeric protein for certain methionine and tyrosine residues located in the C2 and C-terminal domains, suggesting that their oxidation promoted protein destabilisation and aggregation; many of the residues modified were classified as buried according to their solvent accessibility. This study provides novel information on the susceptibility of PTEN to the inflammatory oxidant HOCl and its effects on the structure and activity of the protein. ?2018 Informa UK Limited, trading as Taylor & Francis Group.
机译:反应物质的氧化会导致蛋白质功能的变化并影响细胞信号传导途径。磷酸酶和苔藓素同源物(PTEN)是PI3K / AKT途径的负调节剂,已知通过氧化抑制,但先前尚未研究其通过髓过氧化物酶衍生的氧化剂次氯酸(HOCL)的氧化。 PTEN-GST用Hocl:蛋白质比从15:1至300:1进行处理。在60:1和更高的处理比中观察到PTEN磷酸酶活性的降低,其与SDS-PAGE中的完整蛋白质带和高分子量聚集体的外观相关。 LC-MSM用于在Pten-GST胰蛋白酶肽和可无标记的定量蛋白质组中映射氧化修饰(OXPTMS),用于确定它们的相对丰度。鉴定了二十种不同的PTEN的牛皮PTO,其在HOCL处理以剂量依赖性方式显着升高。甲硫氨酸和半胱氨酸残基是最重氧化的;百分比修改依赖于它们在序列中的位置,反映了易感性的差异。其他修饰包括酪氨酸氯化和二氯,酪氨酸,色氨酸和脯氨酸的羟基。与位于C2和C末端结构域中的某些甲硫氨酸和酪氨酸残基的单体蛋白相比,蛋白质聚集体中发生了更高水平的氧化水平,表明其氧化促进了蛋白质不稳定和聚集;根据其溶剂可访问性,改性的许多残留物被分类为埋入。本研究提供了关于PTEN对炎症氧化剂HOCL的易感性的新信息及其对蛋白质的结构和活性的影响。 ?2018年Informa UK Limited,贸易为泰勒和弗朗西斯集团。

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