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Phage Display Affords Peptides that Modulate β-Amyloid Aggregation

化学 蛋白质聚集 单体 淀粉样蛋白(真菌学) 噬菌体展示 人口 生物物理学 生物化学 生物 社会学 人口学 有机化学 无机化学 聚合物
作者
Brendan P. Orner,Lin Liu,Regina M. Murphy,Laura L. Kiessling
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:128 (36): 11882-11889 被引量:45
标识
DOI:10.1021/ja0619861
摘要

As the population ages, the need to develop methods to understand and intercept the processes responsible for protein aggregation diseases is becoming more urgent. The aggregation of the protein β-amyloid (Aβ) has been implicated in Alzheimer's Disease (AD); however, whether the toxic species is a large, insoluble aggregate or some lower order form is not yet known. Agents that can modulate the aggregation state of Aβ could resolve this controversy by facilitating our understanding of the consequences of aggregation and its underlying mechanism. To date, however, ligands that bind to specific forms of Aβ have not been identified. To address this deficiency, we tested whether phage display could yield such ligands by screening libraries against Aβ in two different states: monomeric or highly aggregated. Intriguingly, the peptides selected had different effects on Aβ aggregation. Peptides selected for binding to monomeric Aβ did not perturb aggregation, but those selected using highly aggregated Aβ increase the rate of aggregation drastically. The latter also alter the morphology of the resulting aggregate. The ability of a peptide to promote aggregation correlated with its affinity for the N-terminal 10 residues of Aβ. This result indicates that the mechanism by which the peptides influence aggregation is related to their affinity for the Aβ N-terminus. Thus, the identification of compounds that bind to this Aβ section can afford agents that affect aggregation. Moreover, the data suggest that endogenous ligands that interact with the N-terminal region can influence the propensity of Aβ to form aggregates and the morphology of those that form. Our data highlight the utility of phage display for identifying ligands that bind to target proteins in different states, and they indicate that such agents can be used to perturb protein aggregation.

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