141
Views
4
CrossRef citations to date
0
Altmetric
ORIGINAL RESEARCH

Association Between Genetic Polymorphisms of lncRNA NEAT1 and Pulmonary Tuberculosis Risk, Clinical Manifestations in a Chinese Population

, , , ORCID Icon &
Pages 2481-2489 | Published online: 12 May 2022

References

  • Kaufmann SHE. New vaccines against tuberculosis. Bundesgesundheitsblatt Gesundheitsforschung Gesundheitsschutz. 2020;63:56–64. doi:10.1007/s00103-019-03065-y
  • World Health Organization. Global tuberculosis report 2021; 2021. Available from: https://www.who.int/tb/publications/global_report/en/. Accessed April 26, 2022.
  • Donovan ML, Schultz TE, Duke TJ, Blumenthal A. Type I interferons in the pathogenesis of tuberculosis: molecular drivers and immunological consequences. Front Immunol. 2017;8:1633. doi:10.3389/fimmu.2017.01633
  • Zhang TP, Chen SS, Zhang GY, Shi SJ, Wei L, Li HM. Association of vitamin D pathway genes polymorphisms with pulmonary tuberculosis susceptibility in a Chinese population. Genes Nutr. 2021;16:6. doi:10.1186/s12263-021-00687-3
  • Zhang M, Wang X, Zhu Y, Chen S, Chen B, Liu Z. Associations of genetic variants at TAP1 and TAP2 with pulmonary tuberculosis risk among the Chinese population. Epidemiol Infect. 2021;149:e79. doi:10.1017/S0950268821000613
  • Harishankar M, Selvaraj P, Bethunaickan R. Influence of genetic polymorphism towards pulmonary tuberculosis susceptibility. Front Med. 2018;5:213. doi:10.3389/fmed.2018.00213
  • Tang NL, Wang X, Chang KC, et al. Genetic susceptibility to Tuberculosis: interaction between HLA-DQA1 and age of onset. Infect Genet Evol. 2019;68:98–104. doi:10.1016/j.meegid.2018.12.014
  • Xun X, Shen MH. Associations between vitamin D receptor genetic variants and tuberculosis: a meta-analysis. Innate Immun. 2019;25:305–313. doi:10.1177/1753425919842643
  • Ortega E, Hernández-Bazán S, Sánchez-Hernández B, Licona-Limón I, Fuentes-Dominguez J. TLR4 single nucleotide polymorphisms in affect susceptibility to tuberculosis in Mexican population from the State of Veracruz. J Immunol Res. 2020;2020:2965697. doi:10.1155/2020/2965697
  • Wu H, Yang L, Chen L. The diversity of long noncoding RNAs and their generation. Trends Genet. 2017;33:540–552. doi:10.1016/j.tig.2017.05.004
  • Kazemzadeh M, Safaralizadeh R, Orang AV. LncRNAs: emerging players in gene regulation and disease pathogenesis. J Genet. 2015;94(4):771–784. doi:10.1007/s12041-015-0561-6
  • Fu Y, Gao K, Tao E, Li R, Yi Z. Aberrantly expressed long non-coding RNAs in CD8(+) T cells response to active tuberculosis. J Cell Biochem. 2017;118(12):4275–4284. doi:10.1002/jcb.26078
  • Fang Y, Zhao J, Wang X, et al. Identification of differentially expressed lncRNAs as potential plasma biomarkers for active tuberculosis. Tuberculosis. 2021;128:102065. doi:10.1016/j.tube.2021.102065
  • Zhao Z, Peng W, Wu L, Ying B. Correlation between lncRNA AC079767.4 variants and liver injury from antituberculosis treatment in West China. J Infect Chemother. 2020;26:63–68. doi:10.1016/j.jiac.2019.07.003
  • Song J, Liu T, Zhao Z, et al. Genetic polymorphisms of long noncoding RNA RP11-37B2.1 associate with susceptibility of tuberculosis and adverse events of antituberculosis drugs in west China. J Clin Lab Anal. 2019;33:e22880. doi:10.1002/jcla.22880
  • Wu Q, Zhong H, Bai H, et al. Clinical relevance of the lnc-HNF1B-3:1 genetic polymorphisms in Western Chinese tuberculosis patients. J Clin Lab Anal. 2020;34:e23076. doi:10.1002/jcla.23076
  • Zhang P, Cao L, Zhou R, Yang X, Wu M. The lncRNA Neat1 promotes activation of inflammasomes in macrophages. Nat Commun. 2019;10:1495. doi:10.1038/s41467-019-09482-6
  • Li Y, Guo W, Cai Y. NEAT1 promotes LPS-induced inflammatory injury in macrophages by regulating miR-17-5p/TLR4. Open Med. 2020;15:38–49. doi:10.1515/med-2020-0007
  • Huang S, Huang Z, Luo Q, Qing C. The expression of lncRNA NEAT1 in human tuberculosis and its antituberculosis effect. BioMed Res Int. 2018;2018:9529072. doi:10.1155/2018/9529072
  • Li HM, Chen SS, Bao XD, et al. Expression of long non-coding RNA MALAT1, NEAT1 and NEAT2 in peripheral blood of tuberculosis patients. Chin J Dis Control Prev. 2020;24(2):155–159.
  • Hu Z, Chen J, Meng P, Li M. Association between NEAT1 polymorphism and the risk of lung cancer: a protocol for systematic review and meta-analysis. Medicine. 2021;100:e25478.
  • Wang S, Cui Z, Li H, et al. LncRNA NEAT1 polymorphisms and lung cancer susceptibility in a Chinese Northeast Han Population: a case control study. Pathol Res Pract. 2019;215:152723. doi:10.1016/j.prp.2019.152723
  • Zhu L, He Y, Feng G, et al. Genetic variants in long non-coding RNAs UCA1 and NEAT1 were associated with the prognosis of oral squamous cell carcinoma. Int J Oral Maxillofac Surg. 2020;50(9):1131–1137. doi:10.1016/j.ijom.2020.11.024
  • Ji X, Yan Y, Ma N, et al. Variant of SNPs at lncRNA NEAT1 contributes to gastric cancer susceptibility in Chinese Han population. Int J Clin Oncol. 2021;26:694–700. doi:10.1007/s10147-020-01852-1
  • Zhang T, Li R, Li H, et al. The contribution of genetic variation and aberrant methylation of aryl hydrocarbon receptor signaling pathway genes to rheumatoid arthritis. Front Immunol. 2022. doi:10.3389/fimmu.2022.823863
  • Li Z, Zhang Z, He Z, Tang W, Li T, Zeng Z. A partition-ligation-combination-subdivision EM algorithm for haplotype inference with multiallelic markers: update of the SHEsis (http://analysis.bio-x.cn). Cell Res. 2009;19:519–523. doi:10.1038/cr.2009.33
  • Kim SH, Lim KH, Yang S, Joo JY. Long non-coding RNAs in brain tumors: roles and potential as therapeutic targets. J Hematol Oncol. 2021;14:77. doi:10.1186/s13045-021-01088-0
  • Zhang TP, Zhu BQ, Tao SS, et al. Long non-coding RNAs genes polymorphisms and their expression levels in patients with rheumatoid arthritis. Front Immunol. 2019;10:2529. doi:10.3389/fimmu.2019.02529
  • Yi Z, Li J, Gao K, Fu Y. Identifcation of differentially expressed long non-coding RNAs in CD4+ T cells response to latent tuberculosis infection. J Infect. 2014;69:558–568. doi:10.1016/j.jinf.2014.06.016
  • Wang Y, Zhong H, Xie X, et al. Long noncoding RNA derived from CD244 signaling epigenetically controls CD8+ T cell immune responses in tuberculosis infection. Proc Natl Acad Sci USA. 2015;112:E3883–92. doi:10.1073/pnas.1501662112
  • Zhang F, Wu L, Qian J, et al. Identification of the long noncoding RNA NEAT1 as a novel inflammatory regulator acting through MAPK pathway in human lupus. J Autoimmun. 2016;75:96–104. doi:10.1016/j.jaut.2016.07.012
  • Zhang Q, Chen CY, Yedavalli VS, Jeang KT. NEAT1 long noncoding RNA and paraspeckle bodies modulate HIV-1 posttranscriptional expression. MBio. 2013;4:e00596–12. doi:10.1128/mBio.00596-12