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Mapping the protein-binding sites for novel iridium(III) anticancer complexes using electron capture dissociation

机译:使用电子俘获解离作用绘制新型铱(III)抗癌复合物的蛋白质结合位点

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RATIONALE Application of Fourier transform ion cyclotron (FT-ICR) tandem mass spectrometry reveals the binding sites for novel cyclopentadienyl Ir ~(III) anticancer complexes on calmodulin. The conventional fragmentation methods, collisionally activated dissociation (CAD) and infrared multiphoton dissociation (IRMPD), failed to define the Ir modification, but these binding sites were located via electron capture dissociation (ECD). METHODS A combination of top-down and bottom-up methods was used to generate detailed information about the reaction of these compounds with a common signalling protein, calmodulin. RESULTS The research shows that such Ir-based complexes preferentially bind to methionine sites in the protein, and interestingly, the very low efficiency of the Ir modification is different compared to reactions of Pt~(II) complexes, which can lead to protein crosslinking. CONCLUSIONS This is the first report on reactions of novel Ir-based anticancer complexes with proteins, which provides helpful information for studying the protein targets of this category of metallodrug and the transportation mechanisms which allow them to inhibit cancer cell growth.
机译:傅里叶变换离子回旋加速器(FT-ICR)串联质谱的应用原理揭示了新型环戊二烯基Ir〜(III)抗癌复合物在钙调蛋白上的结合位点。常规的裂解方法,碰撞活化解离(CAD)和红外多光子解离(IRMPD),未能定义Ir修饰,但这些结合位点是通过电子捕获解离(ECD)定位的。方法使用自上而下和自下而上的方法的组合来生成有关这些化合物与常见信号蛋白钙调蛋白反应的详细信息。结果研究表明,这种基于Ir的复合物优先结合蛋白质中的蛋氨酸位点,有趣的是,与Pt〜(II)配合物的反应相比,Ir修饰的效率非常低,这可能导致蛋白质交联。结论这是关于新型基于Ir的抗癌复合物与蛋白质反应的第一份报告,这为研究这类金属药物的蛋白质靶标以及使它们抑制癌细胞生长的转运机制提供了有用的信息。

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