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Insights into the molecular mechanisms of protein platination from a case study: The reaction of anticancer Platinum(II) iminoethers with horse heart cytochrome c

机译:案例研究揭示了蛋白质平台化的分子机制:抗癌亚氨基铂(II)亚氨基醚与马心脏细胞色素c的反应

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The interactions of anticancer metallodrugs with proteins are attracting a growing interest in the current literature because of their relevant pharmacological and toxicological consequences. To understand in more depth the nature of those interactions, we have investigated the reactions of four anticancer platinum(II) iminoether complexes, namely, trans- and cis-EE (trans- and CiS-[PtCl2{(E)-HN= C(OCH3)CH3}(2)], respectively) and trans- and cis-Z (trans- and cis-[PtCl2(NH3){(Z)-HN=C(OCH3)CH3}], respectively), with horse heart cytochrome c (cyt c). Our investigation was performed using mainly electrospray ionization mass spectrometry (ESI MS) but was also supported by NMR, inductively coupled plasma optical emission spectroscopy (ICP OES), and absorption electronic spectroscopy. ESI MS spectra clearly revealed the formation of a variety of platinum-protein adducts predominantly corresponding to monoplatinated cyt c species. From a careful analysis of the major ESI MS peaks, specific information on the nature of the protein-bound metallic fragments and on the underlying metallodrug-cyt c reactions was gained for the various cases. We found that trans-EE produces a major cyt c adduct (12 667 Da) that is different from that produced by either cis-EE or by trans-Z and cis-Z (12 626 Da). In particular, occurrence of extensive hydrolysis/aminolysis (the latter fostered by ammonium carbonate buffer) of the iminoether ligands and formation of the corresponding amides/amidines has been unambiguously documented. The reactivity of the iminoether ligands is greatly enhanced by the presence of cyt c as inferred from comparative NMR solution studies. Additional ESI MS measurements recorded on enzymatically cleaved samples of platinated cyt c adducts, together with NMR investigation of the cyt c/trans-EE adduct, strongly suggest that protein platination primarily occurs at Met 65. The biological and pharmacological implications of the described protein platination processes are discussed.
机译:抗癌金属药物与蛋白质的相互作用因其相关的药理和毒理学后果而引起了越来越多的关注。为了更深入地了解这些相互作用的性质,我们研究了四种抗癌铂(II)亚氨基醚配合物的反应,即反式和顺式EE(反式和CiS- [PtCl2 {(E)-HN = C (OCH3)CH3}(2)])和反-和顺-Z(分别为反-和顺-[PtCl2(NH3){(Z)-HN = C(OCH3)CH3}]])心脏细胞色素c(cyt c)。我们的研究主要使用电喷雾电离质谱(ESI MS)进行,但也得到NMR,电感耦合等离子体发射光谱(ICP OES)和吸收电子光谱的支持。 ESI MS光谱清楚地揭示了主要对应于单铂化Cyt c物种的各种铂蛋白加合物的形成。通过仔细分析主要的ESI MS峰,可以得到各种情况下有关蛋白质结合的金属片段的性质以及潜在的金属药物细胞c反应的特定信息。我们发现,反式EE产生的主要细胞加合物(12 667 Da)与顺式EE或反式Z和顺式Z产生的主要细胞加合物(12 626 Da)不同。特别地,已经明确地证明了亚氨基醚配体发生了广泛的水解/氨解(后者由碳酸铵缓冲液促进)和相应的酰胺/ am的形成。根据比较NMR溶液研究推断,cyt c的存在大大提高了亚氨基醚配体的反应性。酶法裂解的铂化胞嘧啶c加合物样品上记录的其他ESI MS测量结果,以及对胞嘧啶c / trans-EE加合物的NMR研究,强烈表明蛋白质平台化主要发生在Met65。所述蛋白质平台化的生物学和药理学意义讨论过程。

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