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通过电喷雾电离质谱和互补生物物理方法探索药用金(III)化合物与蛋白质和肽的反应

Reactions of Medicinal Gold(III) Compounds With Proteins and Peptides Explored by Electrospray Ionization Mass Spectrometry and Complementary Biophysical Methods.

作者信息

Massai Lara, Zoppi Carlotta, Cirri Damiano, Pratesi Alessandro, Messori Luigi

机构信息

Department of Chemistry, University of Florence, Florence, Italy.

Department of Chemistry and Industrial Chemistry, University of Pisa, Pisa, Italy.

出版信息

Front Chem. 2020 Oct 21;8:581648. doi: 10.3389/fchem.2020.581648. eCollection 2020.

Abstract

Electrospray ionization mass spectrometry (ESI MS) is a powerful investigative tool to analyze the reactions of metallodrugs with proteins and peptides and characterize the resulting adducts. Here, we have applied this type of approach to four experimental anticancer gold(III) compounds for which extensive biological and mechanistic data had previously been gathered, namely, Auoxo6, Auphen, AuL12, and Aubipyc. These gold(III) compounds were reacted with two representative proteins, i.e., human serum albumin (HSA) and human carbonic anhydrase I (hCA I), and with the C-terminal dodecapeptide of thioredoxin reductase. ESI MS analysis allowed us to elucidate the nature of the resulting metal-protein adducts from which the main features of the occurring metallodrug-protein reactions can be inferred. In selected cases, MS data were integrated and supported by independent HNMR and UV-Vis absorption measurements to gain an overall description of the occurring processes. From data analysis, it emerges that most of the investigated gold(III) complexes, endowed with an appreciable oxidizing character, undergo quite facile reduction to gold(I); the resulting gold(I) species tightly associate with the above proteins/peptides with a remarkable selectivity for free cysteine residues. In contrast, in the case of the less-oxidizing Aubipyc complex, the gold(III) oxidation state is conserved, and a gold(III) fragment still containing the original ligand is found to be associated with the target proteins. It is notable that the C-terminal dodecapeptide of thioredoxin reductase containing the characteristic -Gly-Cys-Sec-Gly metal-binding motif is able in all cases to trigger gold(III)-to-gold(I) reduction. Our investigation allowed us to identify in detail the nature of the gold fragments that ultimately bind the protein targets and determine the exact binding stoichiometry; some insight on the reaction kinetics was also gained. Notably, a few clear correlations could be established between the structure of the metal complexes and the nature of the resulting protein adducts. The mechanistic implications of these findings are analyzed and thoroughly discussed. Overall, the present results set the stage to better understand the real target biomolecules of these gold compounds and elucidate at the atomic level their interaction modes with proteins and peptides.

摘要

电喷雾电离质谱(ESI MS)是一种强大的研究工具,可用于分析金属药物与蛋白质和肽的反应,并表征所形成的加合物。在此,我们将这种方法应用于四种实验性抗癌金(III)化合物,此前已收集了关于它们广泛的生物学和作用机制数据,即Auoxo6、Auphen、AuL12和Aubipyc。这些金(III)化合物与两种代表性蛋白质,即人血清白蛋白(HSA)和人碳酸酐酶I(hCA I),以及硫氧还蛋白还原酶的C末端十二肽发生反应。ESI MS分析使我们能够阐明所形成的金属 - 蛋白质加合物的性质,由此可以推断出发生的金属药物 - 蛋白质反应的主要特征。在某些选定的情况下,质谱数据通过独立的核磁共振氢谱(HNMR)和紫外 - 可见吸收测量进行整合和支持,以全面描述所发生的过程。通过数据分析发现,大多数被研究的具有明显氧化特性的金(III)配合物很容易还原为金(I);所形成的金(I)物种与上述蛋白质/肽紧密结合,对游离半胱氨酸残基具有显著的选择性。相比之下,对于氧化性较弱的Aubipyc配合物,金(III)的氧化态得以保留,并且发现仍含有原始配体的金(III)片段与靶蛋白相关联。值得注意的是,含有特征性 -Gly-Cys-Sec-Gly金属结合基序的硫氧还蛋白还原酶的C末端十二肽在所有情况下都能够引发金(III)到金(I)的还原。我们的研究使我们能够详细确定最终与蛋白质靶标结合的金片段的性质,并确定确切的结合化学计量;还获得了一些关于反应动力学的见解。值得注意的是,金属配合物的结构与所形成的蛋白质加合物的性质之间可以建立一些明确的相关性。对这些发现的作用机制进行了分析和深入讨论。总体而言,目前的结果为更好地理解这些金化合物的实际靶标生物分子,并在原子水平上阐明它们与蛋白质和肽的相互作用模式奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ff9f/7609534/671a6e9bc5b9/fchem-08-581648-g0001.jpg

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