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首页> 外文期刊>Biophysical Chemistry: An International Journal Devoted to the Physical Chemistry of Biological Phenomena >Interaction of beta-amyloid(1-40) peptide with pairs of metal ions: An electrospray ion trap mass spectrometric model study.
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Interaction of beta-amyloid(1-40) peptide with pairs of metal ions: An electrospray ion trap mass spectrometric model study.

机译:β-淀粉样蛋白(1-40)肽与成对金属离子的相互作用:电喷雾离子阱质谱模型研究。

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摘要

The stoichiometries and the affinity toward simple and paired metal ions of synthetic amyloid-beta(1-40) peptide (Abeta1-40) were investigated by electrospray ion trap mass spectrometry (ESI-MS), circular dichroism (CD), and atomic force microscopy (AFM). The results lead to the working hypothesis that pH-dependent metal binding to Abeta1-40 may induce conformational changes, which affect the affinity toward other metals. A significant copper and zinc binding to Abeta1-40 peptide at pH 5.5 was found, whereas nickel ions commonly bind to each molecule of beta-amyloid peptide. Some complexes of Abeta1-40 with more than one nickel ion were identified by ESI-MS. In addition, nickel ions proved to enhance Abeta oligomerization. On increasing pH, up to 12 ions of zinc may bind to a single Abeta molecule. Under the same pH and concentration conditions, the binding pattern of the independent copper and silver ions to Abeta1-40 was different from that of the equimolecular mixture of the two metal ions. One might assume that some conformational changes due to water loss altered the capacity of Abeta peptide to bind certain heavy metal ions. As a consequence, copper-silver interaction with the binding process to Abeta1-40 became highly complex. A competition between silver and nickel ions for Abeta1-40 binding sites at high pH was also observed. New strategies were proposed to identify the characteristic signals for some important metal ion-peptide complexes in the spectra recorded at high pH or high concentrations of metal ions. To explain the formation of such a large number of high metal ion-Abeta complexes, we took into consideration the participation of both histidine residues and free amino groups as well as carboxylate ones in the binding process. Finally, CD and AFM studies supported the mass spectrometric data.
机译:通过电喷雾离子阱质谱(ESI-MS),圆二色性(CD)和原子力研究了合成淀粉样β-(1-40)肽(Abeta1-40)对简单和成对金属离子的化学计量和亲和力显微镜(AFM)。结果导致一个可行的假设,即pH依赖性金属与Abeta1-40的结合可能诱导构象变化,从而影响对其他金属的亲和力。发现在pH 5.5时,铜和锌与Abeta1-40肽有显着结合,而镍离子通常与β-淀粉样肽的每个分子结合。通过ESI-MS鉴定了Abeta1-40与多个镍离子的一些配合物。此外,镍离子被证明可以增强Abeta低聚。随着pH值的增加,多达12个锌离子可与一个Abeta分子结合。在相同的pH和浓度条件下,独立的铜和银离子与Abeta1-40的结合模式与两种金属离子的等分子混合物的结合模式不同。一个人可能会认为由于水分流失而引起的某些构象变化会改变Abeta肽结合某些重金属离子的能力。结果,铜-银相互作用以及与Abeta1-40的结合过程变得非常复杂。还观察到银和镍离子之间在高pH下竞争Abeta1-40结合位点。提出了新的策略来识别在高pH或高浓度金属离子下记录的光谱中一些重要的金属离子-肽配合物的特征信号。为了解释如此大量的高金属离子-Abeta配合物的形成,我们考虑了组氨酸残基和游离氨基以及羧酸盐在结合过程中的参与。最后,CD和AFM研究支持了质谱数据。

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