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AUF-1 knockdown in mice undermines gut microbial butyrate-driven hypocholesterolemia through AUF-1–Dicer-1–mir-122 hierarchy

INTRODUCTION AND OBJECTIVE: Cholesterol homeostasis is a culmination of cellular synthesis, efflux, and catabolism to important physiological entities where short chain fatty acid, butyrate embodied as a key player. This discourse probes the mechanistic molecular details of butyrate action in mainta...

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Autores principales: Das, Oishika, Kundu, Jayanta, Ghosh, Atanu, Gautam, Anupam, Ghosh, Souradeepa, Chakraborty, Mainak, Masid, Aaheli, Gauri, Samiran Sona, Mitra, Debmalya, Dutta, Moumita, Mukherjee, Budhaditya, Sinha, Surajit, Bhaumik, Moumita
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9806232/
https://www.ncbi.nlm.nih.gov/pubmed/36601302
http://dx.doi.org/10.3389/fcimb.2022.1011386
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author Das, Oishika
Kundu, Jayanta
Ghosh, Atanu
Gautam, Anupam
Ghosh, Souradeepa
Chakraborty, Mainak
Masid, Aaheli
Gauri, Samiran Sona
Mitra, Debmalya
Dutta, Moumita
Mukherjee, Budhaditya
Sinha, Surajit
Bhaumik, Moumita
author_facet Das, Oishika
Kundu, Jayanta
Ghosh, Atanu
Gautam, Anupam
Ghosh, Souradeepa
Chakraborty, Mainak
Masid, Aaheli
Gauri, Samiran Sona
Mitra, Debmalya
Dutta, Moumita
Mukherjee, Budhaditya
Sinha, Surajit
Bhaumik, Moumita
author_sort Das, Oishika
collection PubMed
description INTRODUCTION AND OBJECTIVE: Cholesterol homeostasis is a culmination of cellular synthesis, efflux, and catabolism to important physiological entities where short chain fatty acid, butyrate embodied as a key player. This discourse probes the mechanistic molecular details of butyrate action in maintaining host-cholesterol balance. METHODS: Hepatic mir-122 being the most indispensable regulator of cholesterol metabolic enzymes, we studied upstream players of mir-122 biogenesis in the presence and absence of butyrate in Huh7 cells and mice model. We synthesized unique self-transfecting GMO (guanidinium-morpholino-oligo) linked PMO (Phosphorodiamidate-Morpholino Oligo)-based antisense cell-penetrating reagent to selectively knock down the key player in butyrate mediated cholesterol regulation. RESULTS: We showed that butyrate treatment caused upregulation of RNA-binding protein, AUF1 resulting in RNase-III nuclease, Dicer1 instability, and significant diminution of mir-122. We proved the importance of AUF1 and sequential downstream players in AUF1-knock-down mice. Injection of GMO-PMO of AUF1 in mouse caused near absence of AUF1 coupled with increased Dicer1 and mir-122, and reduced serum cholesterol regardless of butyrate treatment indicating that butyrate acts through AUF1. CONCLUSION: The roster of intracellular players was as follows: AUF1-Dicer1-mir-122 for triggering butyrate driven hypocholesterolemia. To our knowledge this is the first report linking AUF-1 with cholesterol biogenesis.
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spelling pubmed-98062322023-01-03 AUF-1 knockdown in mice undermines gut microbial butyrate-driven hypocholesterolemia through AUF-1–Dicer-1–mir-122 hierarchy Das, Oishika Kundu, Jayanta Ghosh, Atanu Gautam, Anupam Ghosh, Souradeepa Chakraborty, Mainak Masid, Aaheli Gauri, Samiran Sona Mitra, Debmalya Dutta, Moumita Mukherjee, Budhaditya Sinha, Surajit Bhaumik, Moumita Front Cell Infect Microbiol Cellular and Infection Microbiology INTRODUCTION AND OBJECTIVE: Cholesterol homeostasis is a culmination of cellular synthesis, efflux, and catabolism to important physiological entities where short chain fatty acid, butyrate embodied as a key player. This discourse probes the mechanistic molecular details of butyrate action in maintaining host-cholesterol balance. METHODS: Hepatic mir-122 being the most indispensable regulator of cholesterol metabolic enzymes, we studied upstream players of mir-122 biogenesis in the presence and absence of butyrate in Huh7 cells and mice model. We synthesized unique self-transfecting GMO (guanidinium-morpholino-oligo) linked PMO (Phosphorodiamidate-Morpholino Oligo)-based antisense cell-penetrating reagent to selectively knock down the key player in butyrate mediated cholesterol regulation. RESULTS: We showed that butyrate treatment caused upregulation of RNA-binding protein, AUF1 resulting in RNase-III nuclease, Dicer1 instability, and significant diminution of mir-122. We proved the importance of AUF1 and sequential downstream players in AUF1-knock-down mice. Injection of GMO-PMO of AUF1 in mouse caused near absence of AUF1 coupled with increased Dicer1 and mir-122, and reduced serum cholesterol regardless of butyrate treatment indicating that butyrate acts through AUF1. CONCLUSION: The roster of intracellular players was as follows: AUF1-Dicer1-mir-122 for triggering butyrate driven hypocholesterolemia. To our knowledge this is the first report linking AUF-1 with cholesterol biogenesis. Frontiers Media S.A. 2022-12-19 /pmc/articles/PMC9806232/ /pubmed/36601302 http://dx.doi.org/10.3389/fcimb.2022.1011386 Text en Copyright © 2022 Das, Kundu, Ghosh, Gautam, Ghosh, Chakraborty, Masid, Gauri, Mitra, Dutta, Mukherjee, Sinha and Bhaumik https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Cellular and Infection Microbiology
Das, Oishika
Kundu, Jayanta
Ghosh, Atanu
Gautam, Anupam
Ghosh, Souradeepa
Chakraborty, Mainak
Masid, Aaheli
Gauri, Samiran Sona
Mitra, Debmalya
Dutta, Moumita
Mukherjee, Budhaditya
Sinha, Surajit
Bhaumik, Moumita
AUF-1 knockdown in mice undermines gut microbial butyrate-driven hypocholesterolemia through AUF-1–Dicer-1–mir-122 hierarchy
title AUF-1 knockdown in mice undermines gut microbial butyrate-driven hypocholesterolemia through AUF-1–Dicer-1–mir-122 hierarchy
title_full AUF-1 knockdown in mice undermines gut microbial butyrate-driven hypocholesterolemia through AUF-1–Dicer-1–mir-122 hierarchy
title_fullStr AUF-1 knockdown in mice undermines gut microbial butyrate-driven hypocholesterolemia through AUF-1–Dicer-1–mir-122 hierarchy
title_full_unstemmed AUF-1 knockdown in mice undermines gut microbial butyrate-driven hypocholesterolemia through AUF-1–Dicer-1–mir-122 hierarchy
title_short AUF-1 knockdown in mice undermines gut microbial butyrate-driven hypocholesterolemia through AUF-1–Dicer-1–mir-122 hierarchy
title_sort auf-1 knockdown in mice undermines gut microbial butyrate-driven hypocholesterolemia through auf-1–dicer-1–mir-122 hierarchy
topic Cellular and Infection Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9806232/
https://www.ncbi.nlm.nih.gov/pubmed/36601302
http://dx.doi.org/10.3389/fcimb.2022.1011386
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