Cargando…

Transcriptome Network Analysis Reveals Aging-Related Mitochondrial and Proteasomal Dysfunction and Immune Activation in Human Thyroid

Background: Elucidating aging-related transcriptomic changes in human organs is necessary to understand the aging physiology and mechanisms, but little is known regarding the thyroid gland. We investigated aging-related transcriptomic alterations in the human thyroid gland and characterized the rela...

Descripción completa

Detalles Bibliográficos
Autores principales: Cho, Byuri Angela, Yoo, Seong-Keun, Song, Young Shin, Kim, Su-jin, Lee, Kyu Eun, Shong, Minho, Park, Young Joo, Seo, Jeong-Sun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Mary Ann Liebert, Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5952342/
https://www.ncbi.nlm.nih.gov/pubmed/29652618
http://dx.doi.org/10.1089/thy.2017.0359
_version_ 1783323167932022784
author Cho, Byuri Angela
Yoo, Seong-Keun
Song, Young Shin
Kim, Su-jin
Lee, Kyu Eun
Shong, Minho
Park, Young Joo
Seo, Jeong-Sun
author_facet Cho, Byuri Angela
Yoo, Seong-Keun
Song, Young Shin
Kim, Su-jin
Lee, Kyu Eun
Shong, Minho
Park, Young Joo
Seo, Jeong-Sun
author_sort Cho, Byuri Angela
collection PubMed
description Background: Elucidating aging-related transcriptomic changes in human organs is necessary to understand the aging physiology and mechanisms, but little is known regarding the thyroid gland. We investigated aging-related transcriptomic alterations in the human thyroid gland and characterized the related molecular functions. Methods: Publicly available RNA sequencing data of 322 thyroid tissue samples from the Genotype-Tissue Expression project were analyzed. In addition, our own 64 RNA sequencing data of normal thyroid tissue samples were used as a validation set. To comprehensively evaluate the associations between aging and transcriptomic changes, we performed a weighted gene coexpression network analysis and pathway enrichment analysis. The thyroid differentiation score was then used for further analysis, defining the correlations between thyroid differentiation and aging. Results: The most significant aging-related transcriptomic change in thyroid was the downregulation of genes related to the mitochondrial and proteasomal functions (p = 3 × 10(−6)). Moreover, genes that are associated with immune processes were significantly upregulated with age (p = 3 × 10(−4)), and all of them overlapped with the upregulated genes in the thyroid glands affected by lymphocytic thyroiditis. Furthermore, these aging-related changes were not significantly different according to sex, but in terms of the thyroid differentiation, females were more susceptible to aging-related changes (p for trend = 0.03). Conclusions: Aging-related transcriptomic changes in the thyroid gland were associated with mitochondrial and proteasomal dysfunction, loss of differentiation, and activation of autoimmune processes. Our results provide clues to better understanding the age-related decline in thyroid function and higher susceptibility to autoimmune thyroid disease.
format Online
Article
Text
id pubmed-5952342
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Mary Ann Liebert, Inc.
record_format MEDLINE/PubMed
spelling pubmed-59523422018-05-16 Transcriptome Network Analysis Reveals Aging-Related Mitochondrial and Proteasomal Dysfunction and Immune Activation in Human Thyroid Cho, Byuri Angela Yoo, Seong-Keun Song, Young Shin Kim, Su-jin Lee, Kyu Eun Shong, Minho Park, Young Joo Seo, Jeong-Sun Thyroid Thyroid Economy: Regulation, Cell Biology, and Thyroid Hormone Metabolism and Action Background: Elucidating aging-related transcriptomic changes in human organs is necessary to understand the aging physiology and mechanisms, but little is known regarding the thyroid gland. We investigated aging-related transcriptomic alterations in the human thyroid gland and characterized the related molecular functions. Methods: Publicly available RNA sequencing data of 322 thyroid tissue samples from the Genotype-Tissue Expression project were analyzed. In addition, our own 64 RNA sequencing data of normal thyroid tissue samples were used as a validation set. To comprehensively evaluate the associations between aging and transcriptomic changes, we performed a weighted gene coexpression network analysis and pathway enrichment analysis. The thyroid differentiation score was then used for further analysis, defining the correlations between thyroid differentiation and aging. Results: The most significant aging-related transcriptomic change in thyroid was the downregulation of genes related to the mitochondrial and proteasomal functions (p = 3 × 10(−6)). Moreover, genes that are associated with immune processes were significantly upregulated with age (p = 3 × 10(−4)), and all of them overlapped with the upregulated genes in the thyroid glands affected by lymphocytic thyroiditis. Furthermore, these aging-related changes were not significantly different according to sex, but in terms of the thyroid differentiation, females were more susceptible to aging-related changes (p for trend = 0.03). Conclusions: Aging-related transcriptomic changes in the thyroid gland were associated with mitochondrial and proteasomal dysfunction, loss of differentiation, and activation of autoimmune processes. Our results provide clues to better understanding the age-related decline in thyroid function and higher susceptibility to autoimmune thyroid disease. Mary Ann Liebert, Inc. 2018-05-01 2018-05-01 /pmc/articles/PMC5952342/ /pubmed/29652618 http://dx.doi.org/10.1089/thy.2017.0359 Text en © Byuri Angela Cho et al. 2018; Published by Mary Ann Liebert, Inc. This Open Access article is distributed under the terms of the Creative Commons Attribution Noncommercial License (http://creativecommons.org/licenses/by-nc/4.0/) which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and the source are cited.
spellingShingle Thyroid Economy: Regulation, Cell Biology, and Thyroid Hormone Metabolism and Action
Cho, Byuri Angela
Yoo, Seong-Keun
Song, Young Shin
Kim, Su-jin
Lee, Kyu Eun
Shong, Minho
Park, Young Joo
Seo, Jeong-Sun
Transcriptome Network Analysis Reveals Aging-Related Mitochondrial and Proteasomal Dysfunction and Immune Activation in Human Thyroid
title Transcriptome Network Analysis Reveals Aging-Related Mitochondrial and Proteasomal Dysfunction and Immune Activation in Human Thyroid
title_full Transcriptome Network Analysis Reveals Aging-Related Mitochondrial and Proteasomal Dysfunction and Immune Activation in Human Thyroid
title_fullStr Transcriptome Network Analysis Reveals Aging-Related Mitochondrial and Proteasomal Dysfunction and Immune Activation in Human Thyroid
title_full_unstemmed Transcriptome Network Analysis Reveals Aging-Related Mitochondrial and Proteasomal Dysfunction and Immune Activation in Human Thyroid
title_short Transcriptome Network Analysis Reveals Aging-Related Mitochondrial and Proteasomal Dysfunction and Immune Activation in Human Thyroid
title_sort transcriptome network analysis reveals aging-related mitochondrial and proteasomal dysfunction and immune activation in human thyroid
topic Thyroid Economy: Regulation, Cell Biology, and Thyroid Hormone Metabolism and Action
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5952342/
https://www.ncbi.nlm.nih.gov/pubmed/29652618
http://dx.doi.org/10.1089/thy.2017.0359
work_keys_str_mv AT chobyuriangela transcriptomenetworkanalysisrevealsagingrelatedmitochondrialandproteasomaldysfunctionandimmuneactivationinhumanthyroid
AT yooseongkeun transcriptomenetworkanalysisrevealsagingrelatedmitochondrialandproteasomaldysfunctionandimmuneactivationinhumanthyroid
AT songyoungshin transcriptomenetworkanalysisrevealsagingrelatedmitochondrialandproteasomaldysfunctionandimmuneactivationinhumanthyroid
AT kimsujin transcriptomenetworkanalysisrevealsagingrelatedmitochondrialandproteasomaldysfunctionandimmuneactivationinhumanthyroid
AT leekyueun transcriptomenetworkanalysisrevealsagingrelatedmitochondrialandproteasomaldysfunctionandimmuneactivationinhumanthyroid
AT shongminho transcriptomenetworkanalysisrevealsagingrelatedmitochondrialandproteasomaldysfunctionandimmuneactivationinhumanthyroid
AT parkyoungjoo transcriptomenetworkanalysisrevealsagingrelatedmitochondrialandproteasomaldysfunctionandimmuneactivationinhumanthyroid
AT seojeongsun transcriptomenetworkanalysisrevealsagingrelatedmitochondrialandproteasomaldysfunctionandimmuneactivationinhumanthyroid