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Amyloid ?-protein assembly: The effect of molecular tweezers CLR01 and CLR03.


ABSTRACT: The early oligomerization of amyloid ?-protein (A?) has been shown to be an important event in the pathology of Alzheimer's disease (AD). Designing small molecule inhibitors targeting A? oligomerization is one attractive and promising strategy for AD treatment. Here we used ion mobility spectrometry coupled to mass spectrometry (IMS-MS) to study the different effects of the molecular tweezers CLR01 and CLR03 on A? self-assembly. CLR01 was found to bind to A? directly and disrupt its early oligomerization. Moreover, CLR01 remodeled the early oligomerization of A?42 by compacting the structures of dimers and tetramers and as a consequence eliminated higher-order oligomers. Unexpectedly, the negative-control derivative, CLR03, which lacks the hydrophobic arms of the tweezer structure, was found to facilitate early A? oligomerization. Our study provides an example of IMS as a powerful tool to study and better understand the interaction between small molecule modulators and A? oligomerization, which is not attainable by other methods, and provides important insights into therapeutic development of molecular tweezers for AD treatment.

SUBMITTER: Zheng X 

PROVIDER: S-EPMC4415044 | biostudies-literature | 2015 Apr

REPOSITORIES: biostudies-literature

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Amyloid β-protein assembly: The effect of molecular tweezers CLR01 and CLR03.

Zheng Xueyun X   Liu Deyu D   Klärner Frank-Gerrit FG   Schrader Thomas T   Bitan Gal G   Bowers Michael T MT  

The journal of physical chemistry. B 20150316 14


The early oligomerization of amyloid β-protein (Aβ) has been shown to be an important event in the pathology of Alzheimer's disease (AD). Designing small molecule inhibitors targeting Aβ oligomerization is one attractive and promising strategy for AD treatment. Here we used ion mobility spectrometry coupled to mass spectrometry (IMS-MS) to study the different effects of the molecular tweezers CLR01 and CLR03 on Aβ self-assembly. CLR01 was found to bind to Aβ directly and disrupt its early oligom  ...[more]

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