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利用色氨酸荧光猝灭法测量 Cu-淀粉样β 复合物与小肽基序之间的肽间 Cu 交换速率常数。

Measurement of Interpeptidic Cu Exchange Rate Constants of Cu-Amyloid-β Complexes to Small Peptide Motifs by Tryptophan Fluorescence Quenching.

机构信息

Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523, United States.

LCC-CNRS, Université de Toulouse, 31400 Toulouse, France.

出版信息

Inorg Chem. 2021 Jun 7;60(11):7650-7659. doi: 10.1021/acs.inorgchem.0c03555. Epub 2021 May 13.

DOI:10.1021/acs.inorgchem.0c03555
PMID:33983723
Abstract

The interpeptidic Cu exchange rate constants were measured for two Cu amyloid-β complexes, Cu(Aβ) and Cu(Aβ), to fluorescent peptides GHW and DAHW using a quantitative tryptophan fluorescence quenching methodology. The second-order rate constants were determined at three pH values (6.8, 7.4, and 8.7) important to the two Cu(Aβ) coordination complexes, components Cu(Aβ) and Cu(Aβ). The interpeptidic Cu exchange rate constant is approximately 10 M s but varies in magnitude depending on many variables. These include pH, length of the Aβ peptide, location of the anchoring histidine ligand in the fluorescent peptide, number of amide deprotonations required in the tryptophan peptide to coordinate Cu, and interconversion between Cu(Aβ) and Cu(Aβ). We also present EPR data probing the Cu exchange between peptides and the formation of ternary species between Cu(Aβ) and GHW. As the nonfluorescent GHK and DAHK peptides are important motifs found in the blood and serum, their ability to sequester Cu ions from Cu(Aβ) complexes may be relevant for the metal homeostasis and its implication in Alzheimer's disease. Thus, their kinetic Cu interpeptidic exchange rate constants are important chemical rate constants that can help elucidate the complex Cu trafficking puzzle in the synaptic cleft.

摘要

使用定量色氨酸荧光猝灭法测量了两种 Cu 淀粉样β 复合物(Cu(Aβ)和 Cu(Aβ))与荧光肽 GHW 和 DAHW 之间的肽间 Cu 交换速率常数。在对两个 Cu(Aβ)配位配合物(Cu(Aβ)和 Cu(Aβ))重要的三个 pH 值(6.8、7.4 和 8.7)下,确定了二级速率常数。肽间 Cu 交换速率常数约为 10 M s,但会因许多变量而变化。这些变量包括 pH、Aβ 肽的长度、荧光肽中锚定组氨酸配体的位置、与 Cu 配位所需的色氨酸肽中酰胺去质子化的数量以及 Cu(Aβ)和 Cu(Aβ)之间的互变。我们还提供了 EPR 数据,以探测肽之间的 Cu 交换以及 Cu(Aβ)和 GHW 之间形成三元物种。由于非荧光 GHK 和 DAHK 肽是血液和血清中发现的重要基序,它们从 Cu(Aβ)复合物中螯合 Cu 离子的能力可能与金属内稳态及其在阿尔茨海默病中的影响有关。因此,它们的动力学 Cu 肽间交换速率常数是重要的化学速率常数,可以帮助阐明突触小裂隙中复杂的 Cu 转运难题。

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