Molecular mechanisms of environmental exposures and human disease

被引:97
作者
Wu, Haotian [1 ]
Eckhardt, Christina M. M. [2 ]
Baccarelli, Andrea A. A. [1 ]
机构
[1] Columbia Univ, Dept Environm Hlth Sci, Mailman Sch Publ Hlth, New York, NY 10027 USA
[2] Columbia Univ, Dept Pulm Allergy & Crit Care Med, Coll Phys & Surg, New York, NY USA
关键词
PARTICULATE AIR-POLLUTION; LYSINE; 4; TRIMETHYLATION; NF-KAPPA-B; DNA METHYLATION; RNA METHYLATION; MESSENGER-RNA; PHTHALATE METABOLITES; HISTONE MODIFICATION; MICRORNA EXPRESSION; CIGARETTE-SMOKING;
D O I
10.1038/s41576-022-00569-3
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
A substantial proportion of disease risk for common complex disorders is attributable to environmental exposures and pollutants. An appreciation of how environmental pollutants act on our cells to produce deleterious health effects has led to advances in our understanding of the molecular mechanisms underlying the pathogenesis of chronic diseases, including cancer and cardiovascular, neurodegenerative and respiratory diseases. Here, we discuss emerging research on the interplay of environmental pollutants with the human genome and epigenome. We review evidence showing the environmental impact on gene expression through epigenetic modifications, including DNA methylation, histone modification and non-coding RNAs. We also highlight recent studies that evaluate recently discovered molecular processes through which the environment can exert its effects, including extracellular vesicles, the epitranscriptome and the mitochondrial genome. Finally, we discuss current challenges when studying the exposome - the cumulative measure of environmental influences over the lifespan - and its integration into future environmental health research. Environmental pollutants have been shown to disrupt molecular mechanisms underlying common complex diseases. The authors review the interplay of environmental stressors with the human genome and epigenome as well as other molecular processes, such as production of extracellular vesicles, epitranscriptomic changes and mitochondrial changes, through which the environment can exert its effects.
引用
收藏
页码:332 / 344
页数:13
相关论文
共 207 条
  • [1] Cellular senescence contributes to age-dependent changes in circulating extracellular vesicle cargo and function
    Alibhai, Faisal J.
    Lim, Fievel
    Yeganeh, Azadeh
    DiStefano, Peter, V
    Binesh-Marvasti, Tina
    Belfiore, Alyssa
    Wlodarek, Lukasz
    Gustafson, Dakota
    Millar, Sean
    Li, Shu-Hong
    Weisel, Richard D.
    Fish, Jason E.
    Li, Ren-Ke
    [J]. AGING CELL, 2020, 19 (03)
  • [2] Identification of Four Novel Loci in Asthma in European American and African American Populations
    Almoguera, Berta
    Vazquez, Lyam
    Mentch, Frank
    Connolly, John
    Pacheco, Jennifer A.
    Sundaresan, Agnes S.
    Peissig, Peggy L.
    Linneman, James G.
    McCarty, Catherine A.
    Crosslin, David
    Carrell, David S.
    Lingren, Todd
    Namjou-Khales, Bahram
    Harley, John B.
    Larson, Eric
    Jarvik, Gail P.
    Brilliant, Murray
    Williams, Marc S.
    Kullo, Lftikhar J.
    Hysinger, Erik B.
    Sleiman, Patrick M. A.
    Hakonarson, Hakon
    [J]. AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE, 2017, 195 (04) : 456 - 463
  • [3] PCB126 Exposure Revealed Alterations in m6A RNA Modifications in Transcripts Associated With AHR Activation
    Aluru, Neelakanteswar
    Karchner, Sibel, I
    [J]. TOXICOLOGICAL SCIENCES, 2021, 179 (01) : 84 - 94
  • [4] Dynamic m6A methylation facilitates mRNA triaging to stress granules
    Anders, Maximilian
    Chelysheva, Irina
    Goebel, Ingrid
    Trenkner, Timo
    Zhou, Jun
    Mao, Yuanhui
    Verzini, Silvia
    Qian, Shu-Bing
    Ignatova, Zoya
    [J]. LIFE SCIENCE ALLIANCE, 2018, 1 (04)
  • [5] tRNA fragments in human health and disease
    Anderson, Paul
    Ivanov, Pavel
    [J]. FEBS LETTERS, 2014, 588 (23) : 4297 - 4304
  • [6] Gene Ontology: tool for the unification of biology
    Ashburner, M
    Ball, CA
    Blake, JA
    Botstein, D
    Butler, H
    Cherry, JM
    Davis, AP
    Dolinski, K
    Dwight, SS
    Eppig, JT
    Harris, MA
    Hill, DP
    Issel-Tarver, L
    Kasarskis, A
    Lewis, S
    Matese, JC
    Richardson, JE
    Ringwald, M
    Rubin, GM
    Sherlock, G
    [J]. NATURE GENETICS, 2000, 25 (01) : 25 - 29
  • [7] Crosstalk between microRNA expression and DNA methylation drives the hormone-dependent phenotype of breast cancer
    Aure, Miriam Ragle
    Fleischer, Thomas
    Bjorklund, Sunniva
    Ankill, Jorgen
    Castro-Mondragon, Jaime A.
    Borresen-Dale, Anne-Lise
    Tost, Jorg
    Sahlberg, Kristine K.
    Mathelier, Anthony
    Tekpli, Xavier
    Kristensen, Vessela N.
    [J]. GENOME MEDICINE, 2021, 13 (01)
  • [8] m6A Demethylase FTO Regulates Dopaminergic Neurotransmission Deficits Caused by Arsenite
    Bai, Lulu
    Tang, Qianghu
    Zou, Zhen
    Meng, Pan
    Tu, Baijie
    Xia, Yinyin
    Cheng, Shuqun
    Zhang, Lina
    Yang, Kai
    Mu, Shaoyu
    Wang, Xuefeng
    Qin, Xia
    Lv, Bo
    Cao, Xianqing
    Qin, Qizhong
    Jiang, Xuejun
    Chen, Chengzhi
    [J]. TOXICOLOGICAL SCIENCES, 2018, 165 (02) : 431 - 446
  • [9] Functional implications of ribosomal RNA methylation in response to environmental stress
    Baldridge, Kevin C.
    Contreras, Lydia M.
    [J]. CRITICAL REVIEWS IN BIOCHEMISTRY AND MOLECULAR BIOLOGY, 2014, 49 (01) : 69 - 89
  • [10] Regulation of chromatin by histone modifications
    Bannister, Andrew J.
    Kouzarides, Tony
    [J]. CELL RESEARCH, 2011, 21 (03) : 381 - 395