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The N-Methylated Peptide SEN304 Powerfully Inhibits Aβ(1—42) Toxicity by Perturbing Oligomer Formation.

Authors :
Amijee, Hozefa
Bate, Clive
Williams, Alun
Virdee, Jasmeet
Jeggo, Ross
Spanswick, David
Scopes, David L. C.
Treheme, J. Mark
Mazzitelli, Sonia
Chawner, Ross
Eyers, Claire E.
Doig, Andrew J.
Source :
Biochemistry. 10/23/2012, Vol. 51 Issue 42, p8338-8352. 15p.
Publication Year :
2012

Abstract

Oligomenc forms of β-amyloid (Aβ) have potent neurotoxic activity and are the primary cause of neuronal injury and cell death in Alzheimer's disease (AD). Compounds that perturb oligomer formation or structure may therefore be therapeutic for AD. We previously reported that D.[(chGly)-(Tyr)-(chGly)- (chGly)-(mLeu)]-NH2 (SEN304) is able to inhibit Aβ aggregation and toxicity, shown primarily by thioflavin T fluorescence and MTT (Kokkoni, N. et al. (2006) N-Methylated peptide inhibitors of β-amyloid aggregation and toxicity. Optinlisation of inhibitor structure. Biochemistry 45, 9906-9918). Here we extensively characterize how SEN304 affects Aβ(1-42) aggregation and toxicity, using biophysical assays (thioflavin T, circular dichroism, SDS-PAGE, size exdusion chromatography, surface plasmon resonance, traveling wave ion mobility mass toxicity assays in cell culture (MTT and lactate dehydrogenase in human SH-SHYSY cells, mouse neuronal cell death and synaptophysin) and long-term potentiation in a rat hippocampal brain slice. These data, with dose response curves, show that SEN304 is a powerful inhibitor of Afl( 1-42) toxicity, particularly effective at preventing Al) inhibition of long-term potentiation. It can bind directly to Aβ(1-42), delay β-sheet formation and promote aggregation of toxic oligomers into a nontoxic form, with a different morphology that cannot bind thioflavin T. SEN304 appears to work by inducing aggregation, and hence removal, of Aβ oligomers. It is therefore a promising lead compound for Alzheimer's disease. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00062960
Volume :
51
Issue :
42
Database :
Academic Search Index
Journal :
Biochemistry
Publication Type :
Academic Journal
Accession number :
86160055
Full Text :
https://doi.org/10.1021/bi300415v