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Transcriptional activation of Jun and Fos members of the AP‐1 complex is a conserved signature of immune aging that contributes to inflammaging

Diverse mouse strains have different health and life spans, mimicking the diversity among humans. To capture conserved aging signatures, we studied long‐lived C57BL/6J and short‐lived NZO/HILtJ mouse strains by profiling transcriptomes and epigenomes of immune cells from peripheral blood and the spl...

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Autores principales: Karakaslar, Emin Onur, Katiyar, Neerja, Hasham, Muneer, Youn, Ahrim, Sharma, Siddhartha, Chung, Cheng‐han, Marches, Radu, Korstanje, Ron, Banchereau, Jacques, Ucar, Duygu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10086525/
https://www.ncbi.nlm.nih.gov/pubmed/36840360
http://dx.doi.org/10.1111/acel.13792
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author Karakaslar, Emin Onur
Katiyar, Neerja
Hasham, Muneer
Youn, Ahrim
Sharma, Siddhartha
Chung, Cheng‐han
Marches, Radu
Korstanje, Ron
Banchereau, Jacques
Ucar, Duygu
author_facet Karakaslar, Emin Onur
Katiyar, Neerja
Hasham, Muneer
Youn, Ahrim
Sharma, Siddhartha
Chung, Cheng‐han
Marches, Radu
Korstanje, Ron
Banchereau, Jacques
Ucar, Duygu
author_sort Karakaslar, Emin Onur
collection PubMed
description Diverse mouse strains have different health and life spans, mimicking the diversity among humans. To capture conserved aging signatures, we studied long‐lived C57BL/6J and short‐lived NZO/HILtJ mouse strains by profiling transcriptomes and epigenomes of immune cells from peripheral blood and the spleen from young and old mice. Transcriptional activation of the AP‐1 transcription factor complex, particularly Fos, Junb, and Jun genes, was the most significant and conserved aging signature across tissues and strains. ATAC‐seq data analyses showed that the chromatin around these genes was more accessible with age and there were significantly more binding sites for these TFs with age across all studied tissues, targeting pro‐inflammatory molecules including Il6. Age‐related increases in binding sites of JUN and FOS factors were also conserved in human peripheral blood ATAC‐seq data. Single‐cell RNA‐seq data from the mouse aging cell atlas Tabula Muris Senis showed that the expression of these genes increased with age in B, T, NK cells, and macrophages, with macrophages from old mice expressing these molecules more abundantly than other cells. Functional data showed that upon myeloid cell activation via poly(I:C), the levels of JUN protein and its binding activity increased more significantly in spleen cells from old compared to young mice. In addition, upon activation, old cells produced more IL6 compared to young cells. In sum, we showed that the aging‐related transcriptional activation of Jun and Fos family members in AP‐1 complex is conserved across immune tissues and long‐ and short‐living mouse strains, possibly contributing to increased inflammation with age.
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spelling pubmed-100865252023-04-12 Transcriptional activation of Jun and Fos members of the AP‐1 complex is a conserved signature of immune aging that contributes to inflammaging Karakaslar, Emin Onur Katiyar, Neerja Hasham, Muneer Youn, Ahrim Sharma, Siddhartha Chung, Cheng‐han Marches, Radu Korstanje, Ron Banchereau, Jacques Ucar, Duygu Aging Cell Research Articles Diverse mouse strains have different health and life spans, mimicking the diversity among humans. To capture conserved aging signatures, we studied long‐lived C57BL/6J and short‐lived NZO/HILtJ mouse strains by profiling transcriptomes and epigenomes of immune cells from peripheral blood and the spleen from young and old mice. Transcriptional activation of the AP‐1 transcription factor complex, particularly Fos, Junb, and Jun genes, was the most significant and conserved aging signature across tissues and strains. ATAC‐seq data analyses showed that the chromatin around these genes was more accessible with age and there were significantly more binding sites for these TFs with age across all studied tissues, targeting pro‐inflammatory molecules including Il6. Age‐related increases in binding sites of JUN and FOS factors were also conserved in human peripheral blood ATAC‐seq data. Single‐cell RNA‐seq data from the mouse aging cell atlas Tabula Muris Senis showed that the expression of these genes increased with age in B, T, NK cells, and macrophages, with macrophages from old mice expressing these molecules more abundantly than other cells. Functional data showed that upon myeloid cell activation via poly(I:C), the levels of JUN protein and its binding activity increased more significantly in spleen cells from old compared to young mice. In addition, upon activation, old cells produced more IL6 compared to young cells. In sum, we showed that the aging‐related transcriptional activation of Jun and Fos family members in AP‐1 complex is conserved across immune tissues and long‐ and short‐living mouse strains, possibly contributing to increased inflammation with age. John Wiley and Sons Inc. 2023-02-24 /pmc/articles/PMC10086525/ /pubmed/36840360 http://dx.doi.org/10.1111/acel.13792 Text en © 2023 The Authors. Aging Cell published by Anatomical Society and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Karakaslar, Emin Onur
Katiyar, Neerja
Hasham, Muneer
Youn, Ahrim
Sharma, Siddhartha
Chung, Cheng‐han
Marches, Radu
Korstanje, Ron
Banchereau, Jacques
Ucar, Duygu
Transcriptional activation of Jun and Fos members of the AP‐1 complex is a conserved signature of immune aging that contributes to inflammaging
title Transcriptional activation of Jun and Fos members of the AP‐1 complex is a conserved signature of immune aging that contributes to inflammaging
title_full Transcriptional activation of Jun and Fos members of the AP‐1 complex is a conserved signature of immune aging that contributes to inflammaging
title_fullStr Transcriptional activation of Jun and Fos members of the AP‐1 complex is a conserved signature of immune aging that contributes to inflammaging
title_full_unstemmed Transcriptional activation of Jun and Fos members of the AP‐1 complex is a conserved signature of immune aging that contributes to inflammaging
title_short Transcriptional activation of Jun and Fos members of the AP‐1 complex is a conserved signature of immune aging that contributes to inflammaging
title_sort transcriptional activation of jun and fos members of the ap‐1 complex is a conserved signature of immune aging that contributes to inflammaging
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10086525/
https://www.ncbi.nlm.nih.gov/pubmed/36840360
http://dx.doi.org/10.1111/acel.13792
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