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Repeat Element Activation-Driven Inflammation: Role of NFκB and Implications in Normal Development and Cancer?

The human genome is composed of unique DNA sequences that encode proteins and unique sequence noncoding RNAs that are essential for normal development and cellular differentiation. The human genome also contains over 50% of genome sequences that are repeat in nature (tandem and interspersed repeats)...

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Autores principales: Dumetier, Baptiste, Sauter, Camille, Hajmirza, Azadeh, Pernon, Baptiste, Aucagne, Romain, Fournier, Cyril, Row, Céline, Guidez, Fabien, Rossi, Cédric, Lepage, Côme, Delva, Laurent, Callanan, Mary B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9775655/
https://www.ncbi.nlm.nih.gov/pubmed/36551854
http://dx.doi.org/10.3390/biomedicines10123101
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author Dumetier, Baptiste
Sauter, Camille
Hajmirza, Azadeh
Pernon, Baptiste
Aucagne, Romain
Fournier, Cyril
Row, Céline
Guidez, Fabien
Rossi, Cédric
Lepage, Côme
Delva, Laurent
Callanan, Mary B.
author_facet Dumetier, Baptiste
Sauter, Camille
Hajmirza, Azadeh
Pernon, Baptiste
Aucagne, Romain
Fournier, Cyril
Row, Céline
Guidez, Fabien
Rossi, Cédric
Lepage, Côme
Delva, Laurent
Callanan, Mary B.
author_sort Dumetier, Baptiste
collection PubMed
description The human genome is composed of unique DNA sequences that encode proteins and unique sequence noncoding RNAs that are essential for normal development and cellular differentiation. The human genome also contains over 50% of genome sequences that are repeat in nature (tandem and interspersed repeats) that are now known to contribute dynamically to genetic diversity in populations, to be transcriptionally active under certain physiological conditions, and to be aberrantly active in disease states including cancer, where consequences are pleiotropic with impact on cancer cell phenotypes and on the tumor immune microenvironment. Repeat element-derived RNAs play unique roles in exogenous and endogenous cell signaling under normal and disease conditions. A key component of repeat element-derived transcript-dependent signaling occurs via triggering of innate immune receptor signaling that then feeds forward to inflammatory responses through interferon and NFκB signaling. It has recently been shown that cancer cells display abnormal transcriptional activity of repeat elements and that this is linked to either aggressive disease and treatment failure or to improved prognosis/treatment response, depending on cell context and the amplitude of the so-called ‘viral mimicry’ response that is engaged. ‘Viral mimicry’ refers to a cellular state of active antiviral response triggered by endogenous nucleic acids often derived from aberrantly transcribed endogenous retrotransposons and other repeat elements. In this paper, the literature regarding transcriptional activation of repeat elements and engagement of inflammatory signaling in normal (focusing on hematopoiesis) and cancer is reviewed with an emphasis on the role of innate immune receptor signaling, in particular by dsRNA receptors of the RIG-1 like receptor family and interferons/NFκB. How repeat element-derived RNA reprograms cell identity through RNA-guided chromatin state modulation is also discussed.
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spelling pubmed-97756552022-12-23 Repeat Element Activation-Driven Inflammation: Role of NFκB and Implications in Normal Development and Cancer? Dumetier, Baptiste Sauter, Camille Hajmirza, Azadeh Pernon, Baptiste Aucagne, Romain Fournier, Cyril Row, Céline Guidez, Fabien Rossi, Cédric Lepage, Côme Delva, Laurent Callanan, Mary B. Biomedicines Review The human genome is composed of unique DNA sequences that encode proteins and unique sequence noncoding RNAs that are essential for normal development and cellular differentiation. The human genome also contains over 50% of genome sequences that are repeat in nature (tandem and interspersed repeats) that are now known to contribute dynamically to genetic diversity in populations, to be transcriptionally active under certain physiological conditions, and to be aberrantly active in disease states including cancer, where consequences are pleiotropic with impact on cancer cell phenotypes and on the tumor immune microenvironment. Repeat element-derived RNAs play unique roles in exogenous and endogenous cell signaling under normal and disease conditions. A key component of repeat element-derived transcript-dependent signaling occurs via triggering of innate immune receptor signaling that then feeds forward to inflammatory responses through interferon and NFκB signaling. It has recently been shown that cancer cells display abnormal transcriptional activity of repeat elements and that this is linked to either aggressive disease and treatment failure or to improved prognosis/treatment response, depending on cell context and the amplitude of the so-called ‘viral mimicry’ response that is engaged. ‘Viral mimicry’ refers to a cellular state of active antiviral response triggered by endogenous nucleic acids often derived from aberrantly transcribed endogenous retrotransposons and other repeat elements. In this paper, the literature regarding transcriptional activation of repeat elements and engagement of inflammatory signaling in normal (focusing on hematopoiesis) and cancer is reviewed with an emphasis on the role of innate immune receptor signaling, in particular by dsRNA receptors of the RIG-1 like receptor family and interferons/NFκB. How repeat element-derived RNA reprograms cell identity through RNA-guided chromatin state modulation is also discussed. MDPI 2022-12-01 /pmc/articles/PMC9775655/ /pubmed/36551854 http://dx.doi.org/10.3390/biomedicines10123101 Text en © 2022 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 Review
Dumetier, Baptiste
Sauter, Camille
Hajmirza, Azadeh
Pernon, Baptiste
Aucagne, Romain
Fournier, Cyril
Row, Céline
Guidez, Fabien
Rossi, Cédric
Lepage, Côme
Delva, Laurent
Callanan, Mary B.
Repeat Element Activation-Driven Inflammation: Role of NFκB and Implications in Normal Development and Cancer?
title Repeat Element Activation-Driven Inflammation: Role of NFκB and Implications in Normal Development and Cancer?
title_full Repeat Element Activation-Driven Inflammation: Role of NFκB and Implications in Normal Development and Cancer?
title_fullStr Repeat Element Activation-Driven Inflammation: Role of NFκB and Implications in Normal Development and Cancer?
title_full_unstemmed Repeat Element Activation-Driven Inflammation: Role of NFκB and Implications in Normal Development and Cancer?
title_short Repeat Element Activation-Driven Inflammation: Role of NFκB and Implications in Normal Development and Cancer?
title_sort repeat element activation-driven inflammation: role of nfκb and implications in normal development and cancer?
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9775655/
https://www.ncbi.nlm.nih.gov/pubmed/36551854
http://dx.doi.org/10.3390/biomedicines10123101
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