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Highlighting of the interactions of MYD88 and NFKB1 SNPs in rats resistant to decompression sickness: toward an autoimmune response

Decompression sickness (DCS) with neurological disorders includes an inappropriate inflammatory response which degenerates slowly, even after the disappearance of the bubbles. There is high inter-individual variability in terms of the occurrence of DCS that could have been mastered by the selection...

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Autores principales: Vallée, Nicolas, Dugrenot, Emmanuel, Desruelle, Anne-Virginie, Richard, Simone, Coupé, Stéphane, Ramdani, Céline, Guieu, Régis, Risso, Jean-Jacques, Gaillard, Sandrine, Guerrero, François
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10470123/
https://www.ncbi.nlm.nih.gov/pubmed/37664439
http://dx.doi.org/10.3389/fphys.2023.1253856
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author Vallée, Nicolas
Dugrenot, Emmanuel
Desruelle, Anne-Virginie
Richard, Simone
Coupé, Stéphane
Ramdani, Céline
Guieu, Régis
Risso, Jean-Jacques
Gaillard, Sandrine
Guerrero, François
author_facet Vallée, Nicolas
Dugrenot, Emmanuel
Desruelle, Anne-Virginie
Richard, Simone
Coupé, Stéphane
Ramdani, Céline
Guieu, Régis
Risso, Jean-Jacques
Gaillard, Sandrine
Guerrero, François
author_sort Vallée, Nicolas
collection PubMed
description Decompression sickness (DCS) with neurological disorders includes an inappropriate inflammatory response which degenerates slowly, even after the disappearance of the bubbles. There is high inter-individual variability in terms of the occurrence of DCS that could have been mastered by the selection and then the breeding of DCS-resistant rats. We hypothesized the selection of single-nucleotide polymorphisms (SNPs) linked to autoimmunity operated upon a generation of a DCS-resistant strain of rats. We used the candidate gene approach and targeted SNPs linked to the signaling cascade that directly regulates inflammation of innate immunity transiting by the Toll-like receptors. Twenty candidate SNPs were investigated in 36 standard rats and 33 DCS-resistant rats. For the first time, we identify a diplotype (i.e., with matched haplotypes)—when coinherited—that strengthens protection against DCS, which is not strictly homozygous and suggests that a certain tolerance may be considered. We deduced an ideal haplotype of six variants from it (MyD88_50-T, _49-A, _97-C coupled to NFKB_85-T, _69-T, _45-T) linked to the resistant phenotype. Four among the six identified variants are located in pre- and/or post-transcriptional areas regulating MyD88 or NFKB1 expression. Because of missense mutations, the other two variants induce a structural change in the NFKB1 protein complex including one damage alteration according to the Missense3D algorithm. In addition to the MyD88/NFKB1 haplotype providing rats with a strong resistance to DCS, this also highlights the importance that the immune response, here linked to the genetic heritage, can have in the development of DCS and offer a new perspective for therapeutic strategies.
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spelling pubmed-104701232023-09-01 Highlighting of the interactions of MYD88 and NFKB1 SNPs in rats resistant to decompression sickness: toward an autoimmune response Vallée, Nicolas Dugrenot, Emmanuel Desruelle, Anne-Virginie Richard, Simone Coupé, Stéphane Ramdani, Céline Guieu, Régis Risso, Jean-Jacques Gaillard, Sandrine Guerrero, François Front Physiol Physiology Decompression sickness (DCS) with neurological disorders includes an inappropriate inflammatory response which degenerates slowly, even after the disappearance of the bubbles. There is high inter-individual variability in terms of the occurrence of DCS that could have been mastered by the selection and then the breeding of DCS-resistant rats. We hypothesized the selection of single-nucleotide polymorphisms (SNPs) linked to autoimmunity operated upon a generation of a DCS-resistant strain of rats. We used the candidate gene approach and targeted SNPs linked to the signaling cascade that directly regulates inflammation of innate immunity transiting by the Toll-like receptors. Twenty candidate SNPs were investigated in 36 standard rats and 33 DCS-resistant rats. For the first time, we identify a diplotype (i.e., with matched haplotypes)—when coinherited—that strengthens protection against DCS, which is not strictly homozygous and suggests that a certain tolerance may be considered. We deduced an ideal haplotype of six variants from it (MyD88_50-T, _49-A, _97-C coupled to NFKB_85-T, _69-T, _45-T) linked to the resistant phenotype. Four among the six identified variants are located in pre- and/or post-transcriptional areas regulating MyD88 or NFKB1 expression. Because of missense mutations, the other two variants induce a structural change in the NFKB1 protein complex including one damage alteration according to the Missense3D algorithm. In addition to the MyD88/NFKB1 haplotype providing rats with a strong resistance to DCS, this also highlights the importance that the immune response, here linked to the genetic heritage, can have in the development of DCS and offer a new perspective for therapeutic strategies. Frontiers Media S.A. 2023-08-17 /pmc/articles/PMC10470123/ /pubmed/37664439 http://dx.doi.org/10.3389/fphys.2023.1253856 Text en Copyright © 2023 Vallée, Dugrenot, Desruelle, Richard, Coupé, Ramdani, Guieu, Risso, Gaillard and Guerrero. 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 Physiology
Vallée, Nicolas
Dugrenot, Emmanuel
Desruelle, Anne-Virginie
Richard, Simone
Coupé, Stéphane
Ramdani, Céline
Guieu, Régis
Risso, Jean-Jacques
Gaillard, Sandrine
Guerrero, François
Highlighting of the interactions of MYD88 and NFKB1 SNPs in rats resistant to decompression sickness: toward an autoimmune response
title Highlighting of the interactions of MYD88 and NFKB1 SNPs in rats resistant to decompression sickness: toward an autoimmune response
title_full Highlighting of the interactions of MYD88 and NFKB1 SNPs in rats resistant to decompression sickness: toward an autoimmune response
title_fullStr Highlighting of the interactions of MYD88 and NFKB1 SNPs in rats resistant to decompression sickness: toward an autoimmune response
title_full_unstemmed Highlighting of the interactions of MYD88 and NFKB1 SNPs in rats resistant to decompression sickness: toward an autoimmune response
title_short Highlighting of the interactions of MYD88 and NFKB1 SNPs in rats resistant to decompression sickness: toward an autoimmune response
title_sort highlighting of the interactions of myd88 and nfkb1 snps in rats resistant to decompression sickness: toward an autoimmune response
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10470123/
https://www.ncbi.nlm.nih.gov/pubmed/37664439
http://dx.doi.org/10.3389/fphys.2023.1253856
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