A neuronal GPCR modifies neuropeptide signaling to suppress proteostasis in distal tissues

The proteostasis network (PN) safeguards the integrity of proteins by promoting various cellular activities. However, with aging, the PN’s competence declines and aggregated proteins accrue within cells. This process underlies the development of neurodegenerative disorders such as Alzheimer’s and Huntington’s diseases. While the PN functions within cells, proteostasis is regulated across the organism by intertissue communication, which is partially governed by neurons. We previously found that reducing the expression of gtr-1 , which encodes a neuronal heterotrimeric guanine nucleotide–binding protein–coupled receptor, mitigates the toxicity of the Alzheimer’s disease cause, Aβ peptide. Here, we investigated the mechanism that is acted upon the knockdown of gtr-1 and found that it differentially modulates gene expression profiles, including of neuropeptide-coding genes, and dissimilarly modifies protein aggregation in worms that express distinct proteotoxic proteins. The knockdown of gtr-1 also enhances protein degradation. These findings highlight the roles of neuropeptides as organismal coordinators of proteostasis in the face of distinct proteotoxic challenges.

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Publication Details

Journal
Science Advances
Published
2026-10-09
DOI
https://doi.org/10.1126/sciadv.ady6048
Primary Topic
Genetics, Aging, and Longevity in Model Organisms
Type
article
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article

A neuronal GPCR modifies neuropeptide signaling to suppress proteostasis in distal tissues

Adam Zaretsky, Galia Blum, Joud Hirbawi, Gourab Dey et al.
Science Advances
Genetics, Aging, and Longevity in Model Organisms
article

A neuronal GPCR modifies neuropeptide signaling to suppress proteostasis in distal tissues

Adam Zaretsky, Galia Blum, Joud Hirbawi, Gourab Dey, Emmanuelle Merquiol, Atif Ahmed Siddiqui, Ehud Cohen, Uri Goshtchevsky, Irit Cohen, Huadong Zhu
article en

Abstract

The proteostasis network (PN) safeguards the integrity of proteins by promoting various cellular activities. However, with aging, the PN’s competence declines and aggregated proteins accrue within cells. This process underlies the development of neurodegenerative disorders such as Alzheimer’s and Huntington’s diseases. While the PN functions within cells, proteostasis is regulated across the organism by intertissue communication, which is partially governed by neurons. We previously found that reducing the expression of gtr-1 , which encodes a neuronal heterotrimeric guanine nucleotide–binding protein–coupled receptor, mitigates the toxicity of the Alzheimer’s disease cause, Aβ peptide. Here, we investigated the mechanism that is acted upon the knockdown of gtr-1 and found that it differentially modulates gene expression profiles, including of neuropeptide-coding genes, and dissimilarly modifies protein aggregation in worms that express distinct proteotoxic proteins. The knockdown of gtr-1 also enhances protein degradation. These findings highlight the roles of neuropeptides as organismal coordinators of proteostasis in the face of distinct proteotoxic challenges.

Science AdvancesVol. 12(41)
Hebrew University of Jerusalem (IL), Jerusalem Institute for Israel Studies (IL)
Openalex Percentile: Top 22%
Genetics, Aging, and Longevity in Model Organisms
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