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Association of miR-499 Polymorphism and Its Regulatory Networks with Hashimoto Thyroiditis Susceptibility: A Population-Based Case-Control Study

Hashimoto thyroiditis (HT) is a common autoimmune disorder with a strong genetic background. Several genetic factors have been suggested, yet numerous genetic contributors remain to be fully understood in HT pathogenesis. MicroRNAs (miRs) are gene expression regulators critically involved in biologi...

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Autores principales: Tabasi, Farhad, Hasanpour, Vahed, Sarhadi, Shamim, Kaykhaei, Mahmoud Ali, Pourzand, Pouria, Heravi, Mehrdad, Langari, Ahmad Alinaghi, Bahari, Gholamreza, Taheri, Mohsen, Hashemi, Mohammad, Ghavami, Saeid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8470033/
https://www.ncbi.nlm.nih.gov/pubmed/34576267
http://dx.doi.org/10.3390/ijms221810094
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author Tabasi, Farhad
Hasanpour, Vahed
Sarhadi, Shamim
Kaykhaei, Mahmoud Ali
Pourzand, Pouria
Heravi, Mehrdad
Langari, Ahmad Alinaghi
Bahari, Gholamreza
Taheri, Mohsen
Hashemi, Mohammad
Ghavami, Saeid
author_facet Tabasi, Farhad
Hasanpour, Vahed
Sarhadi, Shamim
Kaykhaei, Mahmoud Ali
Pourzand, Pouria
Heravi, Mehrdad
Langari, Ahmad Alinaghi
Bahari, Gholamreza
Taheri, Mohsen
Hashemi, Mohammad
Ghavami, Saeid
author_sort Tabasi, Farhad
collection PubMed
description Hashimoto thyroiditis (HT) is a common autoimmune disorder with a strong genetic background. Several genetic factors have been suggested, yet numerous genetic contributors remain to be fully understood in HT pathogenesis. MicroRNAs (miRs) are gene expression regulators critically involved in biological processes, of which polymorphisms can alter their function, leading to pathologic conditions, including autoimmune diseases. We examined whether miR-499 rs3746444 polymorphism is associated with susceptibility to HT in an Iranian subpopulation. Furthermore, we investigated the potential interacting regulatory network of the miR-499. This case-control study included 150 HT patients and 152 healthy subjects. Genotyping of rs3746444 was performed by the PCR-RFLP method. Also, target genomic sites of the polymorphism were predicted using bioinformatics. Our results showed that miR-499 rs3746444 was positively associated with HT risk in heterozygous (OR = 3.32, 95%CI = 2.00–5.53, p < 0.001, CT vs. TT), homozygous (OR = 2.81, 95%CI = 1.30–6.10, p = 0.014, CC vs. TT), dominant (OR = 3.22, 95%CI = 1.97–5.25, p < 0.001, CT + CC vs. TT), overdominant (OR = 2.57, 95%CI = 1.62–4.09, p < 0.001, CC + TT vs. CT), and allelic (OR = 1.92, 95%CI = 1.37–2.69, p < 0.001, C vs. T) models. Mapping predicted target genes of miR-499 on tissue-specific-, co-expression-, and miR-TF networks indicated that main hub-driver nodes are implicated in regulating immune system functions, including immunorecognition and complement activity. We demonstrated that miR-499 rs3746444 is linked to HT susceptibility in our population. However, predicted regulatory networks revealed that this polymorphism is contributing to the regulation of immune system pathways.
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spelling pubmed-84700332021-09-27 Association of miR-499 Polymorphism and Its Regulatory Networks with Hashimoto Thyroiditis Susceptibility: A Population-Based Case-Control Study Tabasi, Farhad Hasanpour, Vahed Sarhadi, Shamim Kaykhaei, Mahmoud Ali Pourzand, Pouria Heravi, Mehrdad Langari, Ahmad Alinaghi Bahari, Gholamreza Taheri, Mohsen Hashemi, Mohammad Ghavami, Saeid Int J Mol Sci Article Hashimoto thyroiditis (HT) is a common autoimmune disorder with a strong genetic background. Several genetic factors have been suggested, yet numerous genetic contributors remain to be fully understood in HT pathogenesis. MicroRNAs (miRs) are gene expression regulators critically involved in biological processes, of which polymorphisms can alter their function, leading to pathologic conditions, including autoimmune diseases. We examined whether miR-499 rs3746444 polymorphism is associated with susceptibility to HT in an Iranian subpopulation. Furthermore, we investigated the potential interacting regulatory network of the miR-499. This case-control study included 150 HT patients and 152 healthy subjects. Genotyping of rs3746444 was performed by the PCR-RFLP method. Also, target genomic sites of the polymorphism were predicted using bioinformatics. Our results showed that miR-499 rs3746444 was positively associated with HT risk in heterozygous (OR = 3.32, 95%CI = 2.00–5.53, p < 0.001, CT vs. TT), homozygous (OR = 2.81, 95%CI = 1.30–6.10, p = 0.014, CC vs. TT), dominant (OR = 3.22, 95%CI = 1.97–5.25, p < 0.001, CT + CC vs. TT), overdominant (OR = 2.57, 95%CI = 1.62–4.09, p < 0.001, CC + TT vs. CT), and allelic (OR = 1.92, 95%CI = 1.37–2.69, p < 0.001, C vs. T) models. Mapping predicted target genes of miR-499 on tissue-specific-, co-expression-, and miR-TF networks indicated that main hub-driver nodes are implicated in regulating immune system functions, including immunorecognition and complement activity. We demonstrated that miR-499 rs3746444 is linked to HT susceptibility in our population. However, predicted regulatory networks revealed that this polymorphism is contributing to the regulation of immune system pathways. MDPI 2021-09-18 /pmc/articles/PMC8470033/ /pubmed/34576267 http://dx.doi.org/10.3390/ijms221810094 Text en © 2021 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 Article
Tabasi, Farhad
Hasanpour, Vahed
Sarhadi, Shamim
Kaykhaei, Mahmoud Ali
Pourzand, Pouria
Heravi, Mehrdad
Langari, Ahmad Alinaghi
Bahari, Gholamreza
Taheri, Mohsen
Hashemi, Mohammad
Ghavami, Saeid
Association of miR-499 Polymorphism and Its Regulatory Networks with Hashimoto Thyroiditis Susceptibility: A Population-Based Case-Control Study
title Association of miR-499 Polymorphism and Its Regulatory Networks with Hashimoto Thyroiditis Susceptibility: A Population-Based Case-Control Study
title_full Association of miR-499 Polymorphism and Its Regulatory Networks with Hashimoto Thyroiditis Susceptibility: A Population-Based Case-Control Study
title_fullStr Association of miR-499 Polymorphism and Its Regulatory Networks with Hashimoto Thyroiditis Susceptibility: A Population-Based Case-Control Study
title_full_unstemmed Association of miR-499 Polymorphism and Its Regulatory Networks with Hashimoto Thyroiditis Susceptibility: A Population-Based Case-Control Study
title_short Association of miR-499 Polymorphism and Its Regulatory Networks with Hashimoto Thyroiditis Susceptibility: A Population-Based Case-Control Study
title_sort association of mir-499 polymorphism and its regulatory networks with hashimoto thyroiditis susceptibility: a population-based case-control study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8470033/
https://www.ncbi.nlm.nih.gov/pubmed/34576267
http://dx.doi.org/10.3390/ijms221810094
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