Document detail
ID

doi:10.1038/s44318-024-00057-w...

Author
Strooper, Bart Karran, Eric
Langue
en
Editor

Nature

Category

Life Sciences

Year

2024

listing date

2/28/2024

Keywords
presenilin gamma-secretase-modulator γ-secretase allosteric stabilizer alzheimer cancer prevention mutations ad γ-secretase presenilin alzheimer’s disease
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Abstract

This review explains how allosteric stabilizers of γ-secretase may prevent Alzheimer’s disease by specifically exerting opposite effects as pathogenic presenilin mutations.

Two phase-III clinical trials with anti-amyloid peptide antibodies have met their primary goal, i.e. slowing of Alzheimer’s disease (AD) progression.

However, antibody therapy may not be the optimal therapeutic modality for AD prevention, as we will discuss in the context of the earlier small molecules described as “γ-secretase modulators” (GSM).

We review here the structure, function, and pathobiology of γ-secretases, with a focus on how mutations in presenilin genes result in early-onset AD.

Significant progress has been made in generating compounds that act in a manner opposite to pathogenic presenilin mutations: they stabilize the proteinase-substrate complex, thereby increasing the processivity of substrate cleavage and altering the size spectrum of Aβ peptides produced.

We propose the term “γ-secretase allosteric stabilizers” (GSAS) to distinguish these compounds from the rather heterogenous class of GSM.

The GSAS represent, in theory, a precision medicine approach to the prevention of amyloid deposition, as they specifically target a discrete aspect in a complex cell biological signalling mechanism that initiates the pathological processes leading to Alzheimer’s disease.

Strooper, Bart,Karran, Eric, 2024, New precision medicine avenues to the prevention of Alzheimer’s disease from insights into the structure and function of γ-secretases, Nature

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