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九肽 LVFFARKHH 的设计:一种针对 Cu 介导的淀粉样 β 蛋白聚集和细胞毒性的双功能试剂。

Design of nonapeptide LVFFARKHH: A bifunctional agent against Cu -mediated amyloid β-protein aggregation and cytotoxicity.

机构信息

Department of Biochemical Engineering and Key Laboratory of Systems Bioengineering of the Ministry of Education, School of Chemical Engineering and Technology, Tianjin University, Tianjin, 300072, China.

Department of Chemical and Biomolecular Engineering, The University of Akron, Akron, OH, 44325, USA.

出版信息

J Mol Recognit. 2018 Jun;31(6):e2697. doi: 10.1002/jmr.2697. Epub 2018 Jan 10.

Abstract

Dysfunctional accumulation of amyloid β-protein (Aβ) mediated by Cu exhibits higher neurotoxicity and accelerates the progress of Alzheimer's disease, so inhibition of Cu -mediated Aβ aggregation and cytotoxicity has been considered as a therapeutic strategy for the disease. Herein, a nonapeptide was designed by linking HH to the C-terminus of a peptide inhibitor of Aβ aggregation, LVFFARK (LK7). We found that the nonapeptide, LK7-HH, possessed dual functionality, including enhanced inhibition capability on Aβ aggregation as compared to LK7, and chelating Cu with a dissociation constant of 5.50 μM. This enabled LK7-HH to arrest the generation of reactive oxygen species catalyzed by Cu or Cu -Aβ complex, and to inhibit Cu -induced Aβ aggregation. Moreover, in contrast with the cytotoxicity of LK7 aggregates, LK7-HH was biocompatible because HH conjugation made its aggregation behavior different from LK7. Thus, LK7-HH efficiently suppressed Cu -mediated Aβ aggregation and cytotoxicity. An equimolar concentration of LK7-HH increased cell viability from 50% to 90% when treating Aβ -Cu complexes. The results provided insights into the roles of HH in enhancing the inhibition of Aβ and Cu -induced Aβ aggregations, in eliminating Cu -induced cytotoxicities by arresting generation of reactive oxygen species, and in making the peptide biocompatible. Therefore, this work would contribute to the design of potent peptide-based inhibitors of Cu -mediated Aβ aggregation and cytotoxicity.

摘要

功能失调的淀粉样β蛋白(Aβ)与 Cu 的积累介导表现出更高的神经毒性,并加速阿尔茨海默病的进展,因此抑制 Cu 介导的 Aβ聚集和细胞毒性已被认为是该疾病的一种治疗策略。在此,通过将 HH 连接到 Aβ聚集抑制剂肽 LVFFARK(LK7)的 C 末端设计了一个九肽。我们发现,与 LK7 相比,九肽 LK7-HH 具有双重功能,包括增强对 Aβ聚集的抑制能力,以及与 Cu 的离解常数为 5.50 μM 的螯合作用。这使得 LK7-HH 能够阻止 Cu 或 Cu-Aβ 复合物催化的活性氧的产生,并抑制 Cu 诱导的 Aβ聚集。此外,与 LK7 聚集物的细胞毒性相反,由于 HH 缀合使其聚集行为不同于 LK7,因此 LK7-HH 具有生物相容性。因此,LK7-HH 有效地抑制了 Cu 介导的 Aβ聚集和细胞毒性。当处理 Aβ-Cu 复合物时,等摩尔浓度的 LK7-HH 将细胞活力从 50%提高到 90%。该结果深入了解了 HH 在增强对 Aβ 和 Cu 诱导的 Aβ 聚集的抑制作用、通过阻止活性氧的产生消除 Cu 诱导的细胞毒性以及使肽具有生物相容性方面的作用。因此,这项工作将有助于设计有效的基于肽的 Cu 介导的 Aβ 聚集和细胞毒性抑制剂。

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