首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Engineered non-fluorescent Affibody molecules facilitate studies of the amyloid-beta (Aβ) peptide in monomeric form: Low pH was found to reduce Aβ/Cu(II) binding affinity
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Engineered non-fluorescent Affibody molecules facilitate studies of the amyloid-beta (Aβ) peptide in monomeric form: Low pH was found to reduce Aβ/Cu(II) binding affinity

机译:工程化的非荧光Affibody分子有助于以单体形式研究淀粉样β(Aβ)肽:发现低pH值会降低Aβ/ Cu(II)的结合亲和力

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Aggregation of amyloid-beta (Aβ) peptides into oligomers and amyloid plaques in the human brain is considered a causative factor in Alzheimer's disease (AD). As metal ions are over-represented in AD patient brains, and as distinct Aβ aggregation pathways in presence of Cu(II) have been demonstrated, metal binding to Aβ likely affects AD progression. Aβ aggregation is moreover pH-dependent, and AD appears to involve inflammatory conditions leading to physiological acidosis. Although metal binding specificity to Aβ varies at different pH's, metal binding affinity to Aβ has so far not been quantitatively investigated at sub-neutral pH levels. This may be explained by the difficulties involved in studying monomeric peptide properties under aggregation-promoting conditions. We have recently devised a modified Affibody molecule, Z_(Aβ3)(12-58), that binds Aβ with sub-nanomolar affinity, thereby locking the peptide in monomeric form without affecting the N-terminal region where metal ions bind. Here, we introduce non-fluorescent Aβ-binding Affibody variants that keep Aβ monomeric while only slightly affecting the Aβ peptide's metal binding properties. Using fluorescence spectroscopy, we demonstrate that Cu(II)/Aβ(1-40) binding is almost two orders of magnitude weaker at pH 5.0 (apparent K _D = 51 μM) than at pH 7.3 (apparent K_D = 0.86 μM). This effect is arguably caused by protonation of the histidines involved in the metal ligandation. Our results indicate that engineered variants of Affibody molecules are useful for studying metal-binding and other properties of monomeric Aβ under various physiological conditions, which will improve our understanding of the molecular mechanisms involved in AD.
机译:淀粉样蛋白-β(Aβ)肽在人脑中聚集为寡聚物和淀粉样蛋白斑块被认为是阿尔茨海默氏病(AD)的致病因素。由于金属离子在AD患者大脑中的含量过高,并且已证明存在Cu(II)时存在独特的Aβ聚集途径,因此金属与Aβ的结合可能会影响AD进展。此外,Aβ聚集是pH依赖性的,AD似乎涉及导致生理性酸中毒的炎症。尽管金属对Aβ的结合特异性在不同的pH值上有所不同,但迄今为止,尚未在亚中性pH值下定量研究金属对Aβ的结合亲和力。这可能是由于在促进聚集的条件下研究单体肽特性所涉及的困难所致。我们最近设计了一种修饰的Affibody分子Z_(Aβ3)(12-58),该分子以亚纳摩尔亲和力结合Aβ,从而将肽锁定为单体形式,而不会影响金属离子结合的N端区域。在这里,我们介绍了非荧光性的Aβ结合Affibody变体,这些变体使Aβ保持单体状态,而仅对Aβ肽的金属结合特性产生轻微影响。使用荧光光谱,我们证明了在pH 5.0(表观K_D = 51μM)下,Cu(II)/Aβ(1-40)的结合几乎比在pH 7.3下(表观K_D = 0.86μM)弱了两个数量级。这种作用可以说是由参与金属配体作用的组氨酸的质子化引起的。我们的结果表明,Affibody分子的工程变体可用于研究在各种生理条件下单体Aβ的金属结合和其他性质,这将增进我们对AD涉及的分子机制的了解。

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