A PIKfyve modulator combined with an integrated stress response inhibitor to treat lysosomal storage diseases

Author:

Hou William C.1,Massey Lynée A.1,Rhoades Derek1ORCID,Wu Yin2,Ren Wen1,Frank Chiara1,Overkleeft Herman S.3ORCID,Kelly Jeffrey W.1

Affiliation:

1. Department of Chemistry, The Scripps Research Institute, La Jolla, CA 92122

2. Department of Molecular Medicine, The Scripps Research Institute, La Jolla, CA 92122

3. Department of Bio-organic Synthesis, Leiden Institute of Chemistry, Leiden University, Leiden 2333 CC, The Netherlands

Abstract

Lysosomal degradation pathways coordinate the clearance of superfluous and damaged cellular components. Compromised lysosomal degradation is a hallmark of many degenerative diseases, including lysosomal storage diseases (LSDs), which are caused by loss-of-function mutations within both alleles of a lysosomal hydrolase, leading to lysosomal substrate accumulation. Gaucher’s disease, characterized by <15% of normal glucocerebrosidase function, is the most common LSD and is a prominent risk factor for developing Parkinson’s disease. Here, we show that either of two structurally distinct small molecules that modulate PIKfyve activity, identified in a high-throughput cellular lipid droplet clearance screen, can improve glucocerebrosidase function in Gaucher patient–derived fibroblasts through an MiT/TFE transcription factor that promotes lysosomal gene translation. An integrated stress response (ISR) antagonist used in combination with a PIKfyve modulator further improves cellular glucocerebrosidase activity, likely because ISR signaling appears to also be slightly activated by treatment by either small molecule at the higher doses employed. This strategy of combining a PIKfyve modulator with an ISR inhibitor improves mutant lysosomal hydrolase function in cellular models of additional LSD.

Funder

HHS | NIH | National Institute on Aging

Rainwater Charitable Foundation

JBP Foundation

Publisher

Proceedings of the National Academy of Sciences

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