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Targeting the cytoplasmic polyadenylation element-binding protein CPEB4 protects against diet-induced obesity and microbiome dysbiosis

OBJECTIVE: Obesity represents a growing health problem that is reaching pandemic dimensions and lacks effective cures, thus highlighting an urgent need for better mechanistic understanding and new therapeutic strategies. Unlike transcription, the function of translation in obesity has hardly been in...

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Autores principales: Pell, Nuria, Garcia-Pras, Ester, Gallego, Javier, Naranjo-Suarez, Salvador, Balvey, Alexandra, Suñer, Clara, Fernandez-Alfara, Marcos, Chanes, Veronica, Carbo, Julia, Ramirez-Pedraza, Marta, Reina, Oscar, Thingholm, Louise, Bang, Corinna, Rühlemann, Malte, Franke, Andre, Schierwagen, Robert, Rheinwalt, Karl P., Trebicka, Jonel, Mendez, Raul, Fernandez, Mercedes
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8711066/
https://www.ncbi.nlm.nih.gov/pubmed/34774811
http://dx.doi.org/10.1016/j.molmet.2021.101388
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author Pell, Nuria
Garcia-Pras, Ester
Gallego, Javier
Naranjo-Suarez, Salvador
Balvey, Alexandra
Suñer, Clara
Fernandez-Alfara, Marcos
Chanes, Veronica
Carbo, Julia
Ramirez-Pedraza, Marta
Reina, Oscar
Thingholm, Louise
Bang, Corinna
Rühlemann, Malte
Franke, Andre
Schierwagen, Robert
Rheinwalt, Karl P.
Trebicka, Jonel
Mendez, Raul
Fernandez, Mercedes
author_facet Pell, Nuria
Garcia-Pras, Ester
Gallego, Javier
Naranjo-Suarez, Salvador
Balvey, Alexandra
Suñer, Clara
Fernandez-Alfara, Marcos
Chanes, Veronica
Carbo, Julia
Ramirez-Pedraza, Marta
Reina, Oscar
Thingholm, Louise
Bang, Corinna
Rühlemann, Malte
Franke, Andre
Schierwagen, Robert
Rheinwalt, Karl P.
Trebicka, Jonel
Mendez, Raul
Fernandez, Mercedes
author_sort Pell, Nuria
collection PubMed
description OBJECTIVE: Obesity represents a growing health problem that is reaching pandemic dimensions and lacks effective cures, thus highlighting an urgent need for better mechanistic understanding and new therapeutic strategies. Unlike transcription, the function of translation in obesity has hardly been investigated. Here, we fill this knowledge gap by pinpointing a crucial function for gene regulation at the step of translation in diet-induced obesity. METHODS: We performed studies with human adipose tissue, high-fat-diet-induced obese mice and rats, CPEB4-knockout mice, and adipocyte lines. Cells were transfected with small-interfering RNAs that knockdown CPEB4. Transcriptome-wide identification and validation of CPEB4 targets in adipocytes were obtained by RNA-protein coimmunoprecipitation and high-throughput sequencing. The effect of CPEB4 depletion on high-fat-diet-induced dysbiosis was determined by 16S ribosomal-RNA gene sequencing and microbiome bioinformatics. RESULTS: We show that cytoplasmic polyadenylation element-binding protein 4 (CPEB4), which controls the translation of specific mRNAs by modulating their poly(A) tails, is highly expressed in visceral fat of obese but not lean humans and rodents (mice and rats), where it orchestrates an essential post-transcriptional reprogramming for aggravation of high-fat-diet-induced obesity. Mechanistically, CPEB4 overexpression in obese adipocytes activates the translation of factors essential for adipose tissue expansion (Cebpb, Stat5a) and adipocyte-intrinsic immune-like potential (Ccl2, Tlr4), as demonstrated by RNA-immunoprecipitation and high-throughput sequencing and experimentally validated in vivo. Consistently blocking CPEB4 production in knockout mice protects against diet-induced body weight gain and reduces adipose tissue enlargement and inflammation. In addition, the depletion of CPEB4 specifically in obese adipocytes using short hairpin RNAs decreases cell differentiation, lipid accumulation, and the proinflammatory and migratory capacity of macrophages. The absence of CPEB4 also attenuates high-fat diet-induced dysbiosis, shaping the microbiome composition toward a more beneficial profile, as shown by microbiome bioinformatics analysis. CONCLUSION: Our study identifies CPEB4 as a driver and therapeutic target to combat obesity.
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spelling pubmed-87110662022-01-04 Targeting the cytoplasmic polyadenylation element-binding protein CPEB4 protects against diet-induced obesity and microbiome dysbiosis Pell, Nuria Garcia-Pras, Ester Gallego, Javier Naranjo-Suarez, Salvador Balvey, Alexandra Suñer, Clara Fernandez-Alfara, Marcos Chanes, Veronica Carbo, Julia Ramirez-Pedraza, Marta Reina, Oscar Thingholm, Louise Bang, Corinna Rühlemann, Malte Franke, Andre Schierwagen, Robert Rheinwalt, Karl P. Trebicka, Jonel Mendez, Raul Fernandez, Mercedes Mol Metab Original Article OBJECTIVE: Obesity represents a growing health problem that is reaching pandemic dimensions and lacks effective cures, thus highlighting an urgent need for better mechanistic understanding and new therapeutic strategies. Unlike transcription, the function of translation in obesity has hardly been investigated. Here, we fill this knowledge gap by pinpointing a crucial function for gene regulation at the step of translation in diet-induced obesity. METHODS: We performed studies with human adipose tissue, high-fat-diet-induced obese mice and rats, CPEB4-knockout mice, and adipocyte lines. Cells were transfected with small-interfering RNAs that knockdown CPEB4. Transcriptome-wide identification and validation of CPEB4 targets in adipocytes were obtained by RNA-protein coimmunoprecipitation and high-throughput sequencing. The effect of CPEB4 depletion on high-fat-diet-induced dysbiosis was determined by 16S ribosomal-RNA gene sequencing and microbiome bioinformatics. RESULTS: We show that cytoplasmic polyadenylation element-binding protein 4 (CPEB4), which controls the translation of specific mRNAs by modulating their poly(A) tails, is highly expressed in visceral fat of obese but not lean humans and rodents (mice and rats), where it orchestrates an essential post-transcriptional reprogramming for aggravation of high-fat-diet-induced obesity. Mechanistically, CPEB4 overexpression in obese adipocytes activates the translation of factors essential for adipose tissue expansion (Cebpb, Stat5a) and adipocyte-intrinsic immune-like potential (Ccl2, Tlr4), as demonstrated by RNA-immunoprecipitation and high-throughput sequencing and experimentally validated in vivo. Consistently blocking CPEB4 production in knockout mice protects against diet-induced body weight gain and reduces adipose tissue enlargement and inflammation. In addition, the depletion of CPEB4 specifically in obese adipocytes using short hairpin RNAs decreases cell differentiation, lipid accumulation, and the proinflammatory and migratory capacity of macrophages. The absence of CPEB4 also attenuates high-fat diet-induced dysbiosis, shaping the microbiome composition toward a more beneficial profile, as shown by microbiome bioinformatics analysis. CONCLUSION: Our study identifies CPEB4 as a driver and therapeutic target to combat obesity. Elsevier 2021-11-10 /pmc/articles/PMC8711066/ /pubmed/34774811 http://dx.doi.org/10.1016/j.molmet.2021.101388 Text en © 2021 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Pell, Nuria
Garcia-Pras, Ester
Gallego, Javier
Naranjo-Suarez, Salvador
Balvey, Alexandra
Suñer, Clara
Fernandez-Alfara, Marcos
Chanes, Veronica
Carbo, Julia
Ramirez-Pedraza, Marta
Reina, Oscar
Thingholm, Louise
Bang, Corinna
Rühlemann, Malte
Franke, Andre
Schierwagen, Robert
Rheinwalt, Karl P.
Trebicka, Jonel
Mendez, Raul
Fernandez, Mercedes
Targeting the cytoplasmic polyadenylation element-binding protein CPEB4 protects against diet-induced obesity and microbiome dysbiosis
title Targeting the cytoplasmic polyadenylation element-binding protein CPEB4 protects against diet-induced obesity and microbiome dysbiosis
title_full Targeting the cytoplasmic polyadenylation element-binding protein CPEB4 protects against diet-induced obesity and microbiome dysbiosis
title_fullStr Targeting the cytoplasmic polyadenylation element-binding protein CPEB4 protects against diet-induced obesity and microbiome dysbiosis
title_full_unstemmed Targeting the cytoplasmic polyadenylation element-binding protein CPEB4 protects against diet-induced obesity and microbiome dysbiosis
title_short Targeting the cytoplasmic polyadenylation element-binding protein CPEB4 protects against diet-induced obesity and microbiome dysbiosis
title_sort targeting the cytoplasmic polyadenylation element-binding protein cpeb4 protects against diet-induced obesity and microbiome dysbiosis
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8711066/
https://www.ncbi.nlm.nih.gov/pubmed/34774811
http://dx.doi.org/10.1016/j.molmet.2021.101388
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