Inhibition of amyloid beta oligomer accumulation by NU-9: A unifying mechanism for the treatment of neurodegenerative diseases

E Elizabeth A. Johnson (Department of Chemistry, Northwestern University) R Raghad Nowar (Department of Neurobiology, Northwestern University) K Kirsten L. Viola (Department of Neurobiology, Northwestern University) W Weijian Huang (The Master of Biotechnology Program, McCormick School of Engineering, Northwestern University) S Sihang Zhou (The Master of Biotechnology Program, McCormick School of Engineering, Northwestern University) M Maíra A. Bicca (Department of Neurobiology, Northwestern University) W Wei Zhu D Daniel L. Kranz (Chemistry of Life Processes Institute, Northwestern University) W William L. Klein (Chemistry of Life Processes Institute, Northwestern University) R Richard B. Silverman (Department of Chemistry)

Abstract

Protein aggregation is a hallmark of neurodegenerative diseases, which connects these neuropathologies by a common phenotype. Various proteins and peptides form aggregates that are poorly degraded, and their ensuing pathological accumulation underlies these neurodegenerative diseases. Similarities may exist in the mechanisms responsible for the buildup of these aggregates. Therefore, therapeutics designed to treat one neurodegenerative disease may be beneficial to others. In ALS models, the compound NU-9 was previously shown to block neurodegeneration produced by aggregation-inducing mutations of SOD-1 and TDP-43 [B. Genç et al., Clin. Transl. Med. 11 , e336 (2021)]. Here, we report that NU-9 also prevents the accumulation of amyloid beta oligomers (AβOs), small peptide aggregates that are instigators of Alzheimer’s disease neurodegeneration [M. Tolar et al., Int. J. Mol. Sci. 22 , 6355 (2021)]. AβO buildup was measured by immunofluorescence imaging of cultured hippocampal neurons exposed to exogenous monomeric Aβ. In this model, AβO buildup occurs via cathepsin L- and dynamin-dependent trafficking. This is prevented by NU-9 through a cellular mechanism that is cathepsin B- and lysosome-dependent, suggesting that NU-9 enhances the ability of endolysosomal trafficking to protect against AβO buildup. This possibility is strongly supported by a quantitative assay for autophagosomes that shows robust stimulation by NU-9. These results contribute additional understanding to the mechanisms of protein aggregation and suggest that multiple neurodegenerative diseases might be treatable by targeting common pathogenic mechanisms responsible for protein aggregation.

Article Details

Volume / Issue Vol. 122, Issue 10
Published March 11, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (10)

E

Elizabeth A. Johnson

Department of Chemistry, Northwestern University

R

Raghad Nowar

Department of Neurobiology, Northwestern University

K

Kirsten L. Viola

Department of Neurobiology, Northwestern University

W

Weijian Huang

The Master of Biotechnology Program, McCormick School of Engineering, Northwestern University

S

Sihang Zhou

The Master of Biotechnology Program, McCormick School of Engineering, Northwestern University

M

Maíra A. Bicca

Department of Neurobiology, Northwestern University

W

Wei Zhu

D

Daniel L. Kranz

Chemistry of Life Processes Institute, Northwestern University

W

William L. Klein

Chemistry of Life Processes Institute, Northwestern University

R

Richard B. Silverman

Department of Chemistry