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利用高效微阵列技术发现全长淀粉样β肽配体的策略。

Strategy to discover full-length amyloid-beta peptide ligands using high-efficiency microarray technology.

作者信息

Galati Clelia, Spinella Natalia, Renna Lucio, Milardi Danilo, Attanasio Francesco, Sciacca Michele Francesco Maria, Bongiorno Corrado

机构信息

STMicroelectronics, Stradale Primosole, 95121, Catania, Italy.

CNR-Istituto di Biostrutture e Bioimmagini, Catania, Italy.

出版信息

Beilstein J Nanotechnol. 2017 Nov 20;8:2446-2453. doi: 10.3762/bjnano.8.243. eCollection 2017.

DOI:10.3762/bjnano.8.243
PMID:29234579
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5704750/
Abstract

Although the formation of β-amyloid (Aβ) fibrils in neuronal tissues is a hallmark of Alzheimer disease (AD), small-sized Aβ oligomers rather than mature fibrils have been identified as the most neurotoxic species. Therefore, the design of new inhibitors, able to prevent the aggregation of Aβ, is believed to be a promising therapeutic approach to AD. Unfortunately, the short-lived intermediate structures that occur in a solution along the Aβ aggregation pathway escape conventional experimental investigations and there is urgent need of new tools aimed at the discovery of agents targeting monomeric Aβ and blocking the early steps of amyloid aggregation. Here, we show the combination of high-efficiency slides (HESs) with peptide microarrays as a promising tool for identifying small peptides that bind Aβ monomers. To this aim, HESs with two immobilized reference peptides, (i.e., KLVFF and Semax) with opposite behavior, were investigated for binding to fluorescently labeled Aβ peptide. Transmission electron microscopy was used to demonstrate Aβ fibrillar aggregates missing. The use of HESs was critical to ensure convenient output of the fluorescent microarrays. The resulting sensitivity, as well as the low sample consumption and the high potential for miniaturization, suggests that the proposed combination of peptide microarrays and highly efficient slides would be a very effective technology for molecule profiling in AD drug discovery.

摘要

尽管神经元组织中β-淀粉样蛋白(Aβ)纤维的形成是阿尔茨海默病(AD)的一个标志,但已确定小尺寸的Aβ寡聚体而非成熟纤维是最具神经毒性的种类。因此,设计能够阻止Aβ聚集的新型抑制剂被认为是一种有前景的AD治疗方法。不幸的是,在Aβ聚集途径中溶液里出现的短暂存在的中间结构避开了传统的实验研究,并且迫切需要新工具来发现靶向单体Aβ并阻断淀粉样蛋白聚集早期步骤的药物。在此,我们展示了高效载玻片(HESs)与肽微阵列的结合,作为识别与Aβ单体结合的小肽的一种有前景的工具。为了实现这一目标,研究了带有两种行为相反的固定化参考肽(即KLVFF和Semax)的HESs与荧光标记的Aβ肽的结合情况。透射电子显微镜用于证明Aβ纤维状聚集体的缺失。HESs的使用对于确保荧光微阵列的便捷输出至关重要。由此产生的灵敏度,以及低样品消耗和高微型化潜力,表明所提出的肽微阵列和高效载玻片的组合将是AD药物发现中分子谱分析的一种非常有效的技术。

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Strategy to discover full-length amyloid-beta peptide ligands using high-efficiency microarray technology.利用高效微阵列技术发现全长淀粉样β肽配体的策略。
Beilstein J Nanotechnol. 2017 Nov 20;8:2446-2453. doi: 10.3762/bjnano.8.243. eCollection 2017.
2
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本文引用的文献

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Inhibition of Aβ Amyloid Growth and Toxicity by Silybins: The Crucial Role of Stereochemistry.水飞蓟宾抑制 Aβ 淀粉样肽的生长和毒性:立体化学的关键作用。
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Highly Sensitive FRET-FCS Detects Amyloid β-Peptide Oligomers in Solution at Physiological Concentrations.高灵敏度 FRET-FCS 可在生理浓度下检测溶液中的淀粉样β肽寡聚物。
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用于定量化合物清除有毒Aβ寡聚体功效的QIAD检测法。
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Semax, an ACTH4-10 peptide analog with high affinity for copper(II) ion and protective ability against metal induced cell toxicity.赛美克斯,一种对铜(II)离子具有高亲和力且对金属诱导的细胞毒性具有保护能力的促肾上腺皮质激素4-10肽类似物。
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α-helical structures drive early stages of self-assembly of amyloidogenic amyloid polypeptide aggregate formation in membranes.α-螺旋结构驱动膜中淀粉样多肽聚集体形成的早期自组装阶段。
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Analytical model and multiscale simulations of Aβ peptide aggregation in lipid membranes: towards a unifying description of conformational transitions, oligomerization and membrane damage.在脂膜中 Aβ 肽聚集的分析模型和多尺度模拟:走向构象转变、寡聚化和膜损伤的统一描述。
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Carnosine inhibits Aβ(42) aggregation by perturbing the H-bond network in and around the central hydrophobic cluster.肌肽通过扰乱中央疏水区周围和内部的氢键网络来抑制 Aβ(42)聚集。
Chembiochem. 2013 Mar 18;14(5):583-92. doi: 10.1002/cbic.201200704. Epub 2013 Feb 25.
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