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Marine-Derived Natural Product HDYL-GQQ-495 Targets P62 to Inhibit Autophagy

Autophagy is widely implicated in pathophysiological processes such as tumors and metabolic and neurodegenerative disorders, making it an attractive target for drug discovery. Several chemical screening approaches have been developed to uncover autophagy-modulating compounds. However, the modulation...

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Autores principales: Li, Quanfu, Fan, Jianjun, Chen, Yinghan, Liu, Yiyang, Liu, Hang, Jiang, Wei, Li, Dehai, Dang, Yongjun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9965018/
https://www.ncbi.nlm.nih.gov/pubmed/36827109
http://dx.doi.org/10.3390/md21020068
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author Li, Quanfu
Fan, Jianjun
Chen, Yinghan
Liu, Yiyang
Liu, Hang
Jiang, Wei
Li, Dehai
Dang, Yongjun
author_facet Li, Quanfu
Fan, Jianjun
Chen, Yinghan
Liu, Yiyang
Liu, Hang
Jiang, Wei
Li, Dehai
Dang, Yongjun
author_sort Li, Quanfu
collection PubMed
description Autophagy is widely implicated in pathophysiological processes such as tumors and metabolic and neurodegenerative disorders, making it an attractive target for drug discovery. Several chemical screening approaches have been developed to uncover autophagy-modulating compounds. However, the modulation capacity of marine compounds with significant pharmacological activities is largely unknown. We constructed an EGFP(KI)-LC3B cell line using the CRISPR/Cas9 knock-in strategy in which green fluorescence indicated endogenous autophagy regulation. Using this cell line, we screened a compound library of approximately 500 marine natural products and analogues to investigate molecules that altered the EGFP fluorescence. We identified eight potential candidates that enhanced EGFP fluorescence, and HDYL-GQQ-495 was the leading one. Further validation with immunoblotting demonstrated that cleaved LC3 was increased in dose- and time-dependent manners, and the autophagy adaptor P62 showed oligomerization after HDYL-GQQ-495 treatment. We also demonstrated that HDYL-GQQ-495 treatment caused autophagy substrate aggregation, which indicated that HDYL-GQQ-495 serves as an autophagy inhibitor. Furthermore, HDYL-GQQ-495 induced Gasdermin E (GSDME) cleavage and promoted pyroptosis. Moreover, HDYL-GQQ-495 directly combined with P62 to induce P62 polymerization. In P62 knockout cells, the cleavage of LC3 or GSDME was blocked after HDYL-GQQ-495 treatment. The EGFP(KI)-LC3B cell line was an effective tool for autophagy modulator screening. Using this tool, we found a novel marine-derived compound, HDYL-GQQ-495, targeting P62 to inhibit autophagy and promote pyroptosis.
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spelling pubmed-99650182023-02-26 Marine-Derived Natural Product HDYL-GQQ-495 Targets P62 to Inhibit Autophagy Li, Quanfu Fan, Jianjun Chen, Yinghan Liu, Yiyang Liu, Hang Jiang, Wei Li, Dehai Dang, Yongjun Mar Drugs Article Autophagy is widely implicated in pathophysiological processes such as tumors and metabolic and neurodegenerative disorders, making it an attractive target for drug discovery. Several chemical screening approaches have been developed to uncover autophagy-modulating compounds. However, the modulation capacity of marine compounds with significant pharmacological activities is largely unknown. We constructed an EGFP(KI)-LC3B cell line using the CRISPR/Cas9 knock-in strategy in which green fluorescence indicated endogenous autophagy regulation. Using this cell line, we screened a compound library of approximately 500 marine natural products and analogues to investigate molecules that altered the EGFP fluorescence. We identified eight potential candidates that enhanced EGFP fluorescence, and HDYL-GQQ-495 was the leading one. Further validation with immunoblotting demonstrated that cleaved LC3 was increased in dose- and time-dependent manners, and the autophagy adaptor P62 showed oligomerization after HDYL-GQQ-495 treatment. We also demonstrated that HDYL-GQQ-495 treatment caused autophagy substrate aggregation, which indicated that HDYL-GQQ-495 serves as an autophagy inhibitor. Furthermore, HDYL-GQQ-495 induced Gasdermin E (GSDME) cleavage and promoted pyroptosis. Moreover, HDYL-GQQ-495 directly combined with P62 to induce P62 polymerization. In P62 knockout cells, the cleavage of LC3 or GSDME was blocked after HDYL-GQQ-495 treatment. The EGFP(KI)-LC3B cell line was an effective tool for autophagy modulator screening. Using this tool, we found a novel marine-derived compound, HDYL-GQQ-495, targeting P62 to inhibit autophagy and promote pyroptosis. MDPI 2023-01-20 /pmc/articles/PMC9965018/ /pubmed/36827109 http://dx.doi.org/10.3390/md21020068 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Quanfu
Fan, Jianjun
Chen, Yinghan
Liu, Yiyang
Liu, Hang
Jiang, Wei
Li, Dehai
Dang, Yongjun
Marine-Derived Natural Product HDYL-GQQ-495 Targets P62 to Inhibit Autophagy
title Marine-Derived Natural Product HDYL-GQQ-495 Targets P62 to Inhibit Autophagy
title_full Marine-Derived Natural Product HDYL-GQQ-495 Targets P62 to Inhibit Autophagy
title_fullStr Marine-Derived Natural Product HDYL-GQQ-495 Targets P62 to Inhibit Autophagy
title_full_unstemmed Marine-Derived Natural Product HDYL-GQQ-495 Targets P62 to Inhibit Autophagy
title_short Marine-Derived Natural Product HDYL-GQQ-495 Targets P62 to Inhibit Autophagy
title_sort marine-derived natural product hdyl-gqq-495 targets p62 to inhibit autophagy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9965018/
https://www.ncbi.nlm.nih.gov/pubmed/36827109
http://dx.doi.org/10.3390/md21020068
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