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An electrospray ionization study on complexes of amylin with Cu(II) and Cu(I)

机译:用Cu(II)和Cu(I)淀粉蛋白复合物的电喷雾电离研究

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摘要

Human amylin (hIAPP) is one of a number of different peptides known to be responsible for the formation of amyloid fibrils in the pancreas of subjects with Type 2 diabetes mellitus. It was recognized that metal ions such as Cu(II) are implicated in the aggregation process of amyloidogenic peptides. However, the role of Cu(II) ions in the aggregation and dyshomeostasis of amylin has been controversial. Considering that most of the research reported in the literature pertain to the interactions between Cu(II) and amylin, we thought of interest to compare the interactions of Cu(II) and Cu(I) ions with amylin by electrospray ionization (ESI) mass spectrometry and collisional experiments, to elucidate possible differences in structural aspects of the complexes so formed. The ESI mass spectra of solutions containing hIAPP and Cu(I) or Cu(II) ions show the formation of hIAPP-Cu complexes. In both cases, M + Cu ions with three and four positive charges are detected. However, a series of fragment ions, absent in the ESI spectrum of untreated hIAPP, become detectable. Some of them are common for both Cu(I) and Cu(II) complexes, whereas others are specific for the complexes containing Cu in different oxidation states. Some fragments imply the involvement of residues His18, Ser19, Ser20, Asn21, and Asn22 in the complex formation, but the detection of the fragment b(22)(3+) indicates the presence of copper ions in a different position. This suggests different interaction sites between Cu(II) and Cu(I) and hIAPP. In contrast to Cu(II) complex, in the Cu(I) complex, some peculiar structures are present, corresponding to the cleavage of Asn-Asn peptidic bond and to [b(30) + Cu(I)](4+) and [b(28) + Cu(I)](4+) species. These results are in agreement with the coordination vacancy in [Cu(I)-(peptide)] species, which promotes Cu(I) interaction with additional neighboring donors (mainly N-histidine, and also S-methionine or other groups depending on the peptide conformation) through formation of trigonal T-shaped intermediates.
机译:人类胰淀素(hIAPP)是已知的许多不同肽之一,它们与2型糖尿病患者胰腺中淀粉样纤维的形成有关。人们认识到,铜(II)等金属离子参与淀粉样肽的聚集过程。然而,铜离子在胰淀素聚集和稳态失调中的作用一直存在争议。考虑到文献中报道的大多数研究都与Cu(II)和胰淀素之间的相互作用有关,我们认为有兴趣通过电喷雾电离(ESI)质谱和碰撞实验比较Cu(II)和Cu(I)离子与胰淀素之间的相互作用,以阐明由此形成的复合物在结构方面可能存在的差异。含有hIAPP和Cu(I)或Cu(II)离子的溶液的ESI质谱显示了hIAPP-Cu络合物的形成。在这两种情况下,检测到带有三个和四个正电荷的M+Cu离子。然而,在未经处理的hIAPP的ESI光谱中,一系列缺失的碎片离子被检测到。其中一些对铜(I)和铜(II)配合物都是常见的,而另一些对含铜的配合物在不同氧化状态下是特定的。一些片段暗示残基His18、Ser19、Ser20、Asn21和Asn22参与了复合物的形成,但检测到片段b(22)(3+)表明铜离子存在于不同的位置。这表明Cu(II)和Cu(I)与hIAPP之间存在不同的相互作用位点。与铜(II)配合物相比,在铜(I)配合物中存在一些特殊的结构,对应于Asn-Asn肽键的断裂和[b(30)+Cu(I)](4+)和[b(28)+Cu(I)](4+)物种。这些结果与[Cu(I)-(肽)]物种中的配位空位一致,该空位通过形成三角T形中间体促进Cu(I)与其他邻近供体(主要是N-组氨酸,以及S-蛋氨酸或其他基团,取决于肽构象)的相互作用。

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