Elucidating disease-associated mechanisms triggered by pollutants via the epigenetic landscape using large-scale ChIP-Seq data

被引:2
作者
Zou, Zhaonan [1 ]
Yoshimura, Yuka [1 ]
Yamanishi, Yoshihiro [2 ]
Oki, Shinya [1 ]
机构
[1] Kyoto Univ, Grad Sch Med, Dept Drug Discovery Med, 53 Shogoin Kawahara Cho,Sakyo Ku, Kyoto 6068507, Japan
[2] Nagoya Univ, Grad Sch Informat, Dept Complex Syst Sci, Furo Cho,Chikusa Ku, Nagoya 4648602, Japan
关键词
ChIP-Seq; ATAC-seq; Transcription factor; Differentially accessible genomic region; Epigenetic landscape; Action modes of environmental pollutants; TRANSCRIPTION FACTOR; AIR-POLLUTION; TARGETED DISRUPTION; LEAD-EXPOSURE; PPAR-ALPHA; T-BET; MORTALITY; MOUSE; ATHEROSCLEROSIS; TRANSACTIVATION;
D O I
10.1186/s13072-023-00510-w
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
BackgroundDespite well-documented effects on human health, the action modes of environmental pollutants are incompletely understood. Although transcriptome-based approaches are widely used to predict associations between chemicals and disorders, the molecular cues regulating pollutant-derived gene expression changes remain unclear. Therefore, we developed a data-mining approach, termed "DAR-ChIPEA," to identify transcription factors (TFs) playing pivotal roles in the action modes of pollutants.MethodsLarge-scale public ChIP-Seq data (human, n = 15,155; mouse, n = 13,156) were used to predict TFs that are enriched in the pollutant-induced differentially accessible genomic regions (DARs) obtained from epigenome analyses (ATAC-Seq). The resultant pollutant-TF matrices were then cross-referenced to a repository of TF-disorder associations to account for pollutant modes of action. We subsequently evaluated the performance of the proposed method using a chemical perturbation data set to compare the outputs of the DAR-ChIPEA and our previously developed differentially expressed gene (DEG)-ChIPEA methods using pollutant-induced DEGs as input. We then adopted the proposed method to predict disease-associated mechanisms triggered by pollutants.ResultsThe proposed approach outperformed other methods using the area under the receiver operating characteristic curve score. The mean score of the proposed DAR-ChIPEA was significantly higher than that of our previously described DEG-ChIPEA (0.7287 vs. 0.7060; Q = 5.278 x 10-42; two-tailed Wilcoxon rank-sum test). The proposed approach further predicted TF-driven modes of action upon pollutant exposure, indicating that (1) TFs regulating Th1/2 cell homeostasis are integral in the pathophysiology of tributyltin-induced allergic disorders; (2) fine particulates (PM2.5) inhibit the binding of C/EBPs, Rela, and Spi1 to the genome, thereby perturbing normal blood cell differentiation and leading to immune dysfunction; and (3) lead induces fatty liver by disrupting the normal regulation of lipid metabolism by altering hepatic circadian rhythms.ConclusionsHighlighting genome-wide chromatin change upon pollutant exposure to elucidate the epigenetic landscape of pollutant responses outperformed our previously described method that focuses on gene-adjacent domains only. Our approach has the potential to reveal pivotal TFs that mediate deleterious effects of pollutants, thereby facilitating the development of strategies to mitigate damage from environmental pollution.
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页数:15
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共 80 条
  • [1] Circadian Mechanisms in Medicine
    Allada, Ravi
    Bass, Joseph
    [J]. NEW ENGLAND JOURNAL OF MEDICINE, 2021, 384 (06) : 550 - 561
  • [2] Evaluation of the effects produced by subacute tributyltin administration on vascular reactivity of male wistar rats
    Araujo Mendes, Ana Beatriz
    Vieira Motta, Nadia Alice
    Lima, Gabriel Ferreira
    Autran, Lis Jappour
    Brazao, Stephani Correia
    Magliano, D'Angelo Carlo
    Sepulveda-Fragoso, Vinicius
    Vieira Scaramello, Christianne Bretas
    Graceli, Jones Bernardes
    Miranda-Alves, Leandro
    Ferreira Brito, Fernanda Carla
    [J]. TOXICOLOGY, 2022, 465
  • [3] The MEME Suite
    Bailey, Timothy L.
    Johnson, James
    Grant, Charles E.
    Noble, William S.
    [J]. NUCLEIC ACIDS RESEARCH, 2015, 43 (W1) : W39 - W49
  • [4] Phase I Study of Elacestrant (RAD1901), a Novel Selective Estrogen Receptor Degrader, in ER-Positive, HER2-Negative Advanced Breast Cancer
    Bardia, Aditya
    Kaklamani, Virginia
    Wilks, Sharon
    Weise, Amy
    Richards, Donald
    Harb, Wael
    Osborne, Cynthia
    Wesolowski, Robert
    Karuturi, Meghan
    Conkling, Paul
    Bagley, Rebecca G.
    Wang, Yamei
    Conlan, Maureen G.
    Kabos, Peter
    [J]. JOURNAL OF CLINICAL ONCOLOGY, 2021, 39 (12) : 1360 - +
  • [5] Mouse Genome Database (MGD): Knowledgebase for mouse-human comparative biology
    Blake, Judith A.
    Baldarelli, Richard
    Kadin, James A.
    Richardson, Joel E.
    Smith, Cynthia L.
    Bult, Carol J.
    [J]. NUCLEIC ACIDS RESEARCH, 2021, 49 (D1) : D981 - D987
  • [6] Large scale comparison of QSAR and conformal prediction methods and their applications in drug discovery
    Bosc, Nicolas
    Atkinson, Francis
    Felix, Eloy
    Gaulton, Anna
    Hersey, Anne
    Leach, Andrew R.
    [J]. JOURNAL OF CHEMINFORMATICS, 2019, 11 (1)
  • [7] Buenrostro JD, 2013, NAT METHODS, V10, P1213, DOI [10.1038/nmeth.2688, 10.1038/NMETH.2688]
  • [8] Ancestral perinatal obesogen exposure results in a transgenerational thrifty phenotype in mice
    Chamorro-Garcia, Raquel
    Diaz-Castillo, Carlos
    Shoucri, Bassem M.
    Kach, Heidi
    Leavitt, Ron
    Shioda, Toshi
    Blumberg, Bruce
    [J]. NATURE COMMUNICATIONS, 2017, 8
  • [9] The Role of Fine Particles (PM 2.5) in the Genesis of Atherosclerosis and Myocardial Damage: Emphasis on Clinical and Epidemiological Data, and Pathophysiological Mechanisms
    Chaulin, Aleksey Michailovich
    Sergeev, Artem Konstantinovich
    [J]. CARDIOLOGY RESEARCH, 2022, 13 (05) : 268 - 282
  • [10] Roles of Ambient Temperature and PM2.5 on Childhood Acute Bronchitis and Bronchiolitis from Viral Infection
    Chen, Pei-Chun
    Mou, Chih-Hsin
    Chen, Chao W.
    Hsieh, Dennis P. H.
    Tsai, Shan P.
    Wei, Chang-Ching
    Sung, Fung-Chang
    [J]. VIRUSES-BASEL, 2022, 14 (09):