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Publication : Rational design of a conformation-specific antibody for the quantification of Aβ oligomers.

First Author  Aprile FA Year  2020
Journal  Proc Natl Acad Sci U S A Volume  117
Issue  24 Pages  13509-13518
PubMed ID  32493749 Mgi Jnum  J:348627
Mgi Id  MGI:6436808 Doi  10.1073/pnas.1919464117
Citation  Aprile FA, et al. (2020) Rational design of a conformation-specific antibody for the quantification of Abeta oligomers. Proc Natl Acad Sci U S A 117(24):13509-13518
abstractText  Protein misfolding and aggregation is the hallmark of numerous human disorders, including Alzheimer''s disease. This process involves the formation of transient and heterogeneous soluble oligomers, some of which are highly cytotoxic. A major challenge for the development of effective diagnostic and therapeutic tools is thus the detection and quantification of these elusive oligomers. Here, to address this problem, we develop a two-step rational design method for the discovery of oligomer-specific antibodies. The first step consists of an "antigen scanning" phase in which an initial panel of antibodies is designed to bind different epitopes covering the entire sequence of a target protein. This procedure enables the determination through in vitro assays of the regions exposed in the oligomers but not in the fibrillar deposits. The second step involves an "epitope mining" phase, in which a second panel of antibodies is designed to specifically target the regions identified during the scanning step. We illustrate this method in the case of the amyloid beta (Abeta) peptide, whose oligomers are associated with Alzheimer''s disease. Our results show that this approach enables the accurate detection and quantification of Abeta oligomers in vitro, and in Caenorhabditis elegans and mouse hippocampal tissues.
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