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首页> 外文期刊>Journal of mass spectrometry: JMS >Tandem mass spectrometry study of p38α kinase inhibitors and related substances
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Tandem mass spectrometry study of p38α kinase inhibitors and related substances

机译:p38α激酶抑制剂及相关物质的串联质谱研究

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The p38 mitogen-activated protein kinase α (p38α) is an important drug target widely investigated for therapy of chronic inflammatory diseases. Its inhibitors are rather lipophilic and as such not very favourable lead compounds in drug discovery. Therefore, we explored various approaches to access new chemical space, create diversity, and generate lead libraries with improved solubility and reduced lipophilicity, based on known p38α inhibitors, e.g., BIRB796 and TAK-715. Compound modification strategies include incubation with human liver microsomes and bacterial cytochrome P450 mutants from Bacillus megaterium and treatment by electrochemical oxidation, H_2O_2, and intense light irradiation. The MS/MS fragmentation pathways of p38α inhibitors and their conversion products have been studied in an ion-trap-timeof-flight MS~n instrument. Interpretation of accurate mass MS~n data for four sets of related compounds revealed unexpected and peculiar fragmentation pathways that are discussed in detail. Emphasis is put on the usefulness of HRMS~n-based structure elucidation in a screening setting and on peculiarities of the fragmentation with regard to the analytes and the MS instrument. In one example, an intramolecular rearrangement reaction accompanied by the loss of a bulky group is observed. For BIRB796, the double-charge precursor ion is used in MS~2, providing a wider range of fragment ions in our instrument. For TAK-715, a number of related compounds could be produced in a large-scale incubation with a Bacillus megaterium mutant, thus enabling comparison of the structure elucidation by ~1H NMR and MS~n. A surprisingly large number of homolytic cleavages are observed. Competition between two fragmentation pathways involving either the loss of CH_3~? or OH~? radicals was observed for SB203580 and its conversion products.
机译:p38丝裂原活化蛋白激酶α(p38α)是一种重要的药物靶标,被广泛研究用于治疗慢性炎性疾病。它的抑制剂具有亲脂性,因此在药物开发中不是非常有利的先导化合物。因此,我们基于已知的p38α抑制剂(例如BIRB796和TAK-715),探索了各种途径来访问新的化学空间,创造多样性并生成具有改善的溶解度和降低的亲脂性的铅库。复合修饰策略包括与人肝微粒体和巨大芽孢杆菌的细菌细胞色素P450突变体一起孵育,并通过电化学氧化,H_2O_2和强光照射进行处理。在离子阱飞行时间质谱仪中研究了p38α抑制剂及其转化产物的MS / MS断裂途径。对四组相关化合物的准确质量数MS〜n数据的解释揭示了意料之外的特殊断裂途径,对此进行了详细讨论。重点放在基于HRMS_n的结构解析在筛选环境中的有用性,以及片段化对分析物和MS仪器的特殊性。在一个实例中,观察到伴随着庞大基团丢失的分子内重排反应。对于BIRB796,在MS〜2中使用了双电荷前体离子,在我们的仪器中提供了更大范围的碎片离子。对于TAK-715,可以在与巨大芽孢杆菌突变体的大规模温育中生产许多相关化合物,从而能够通过〜1 H NMR和MS〜n比较结构阐明。观察到惊人的大量均质裂解。涉及CH_3〜?丢失的两个裂解途径之间的竞争。还是哦〜 SB203580及其转化产物中观察到自由基。

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