Prenatal and postnatal traffic pollution exposure, DNA methylation in Shank3 and MeCP2 promoter regions, H3K4me3 and H3K27me3 and sociability in rats' offspring

被引:7
|
作者
Zhou, Qinfeng [1 ]
Tian, Yu [1 ]
Xu, Chenlu [1 ]
Wang, Juling [1 ]
Jin, Yongtang [1 ,2 ]
机构
[1] Zhejiang Univ, Sch Publ Hlth, Dept Environm Med, Environm Epigenet Lab, 866 Yuhangtang Rd, Hangzhou 310058, Zhejiang, Peoples R China
[2] Zhejiang Univ, Coll Med, Sir Run Run Shaw Hosp, Dept Gen Practice, Hangzhou, Zhejiang, Peoples R China
关键词
Traffic pollution exposure; DNA methylation; MeCP2; Shank3; Sociability; PARTICULATE MATTER EXPOSURE; AIR-POLLUTION; HISTONE MODIFICATIONS; NOISE; NEURONS; BRAIN;
D O I
10.1186/s13148-021-01170-x
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Background Road traffic air pollution is linked with an increased risk of autistic spectrum disorder (ASD). The aim of this study is to assess the effect of exposure to prenatal or postnatal traffic-related air pollution combining concomitant noise pollution on ASD-related epigenetic and behavioral alternations on offspring. Methods A 2 x 2 factorial analysis experiment was designed. Wistar rats were exposed at different sites (L group: green space; H group: crossroads) and timings (E group: full gestation; P group: 21 days after birth) at the same time, and air pollutants of nitrogen dioxide (NO2) and fine particles (PM2.5) were meanwhile sampled. On postnatal day 25, brains from offspring of each group were extracted to determine the levels of DNA methylation in Shank3 (three parts: Shank3_01, Shank3_02, Shank3_03) and MeCP2 (two parts: MeCP2_01, MeCP2_02) promoter regions, H3K4me3 and H3K27me3 after three-chamber social test. Meanwhile, the Shank3 and MeCP2 levels were quantified. Results The concentrations of PM2.5 (L: 58.33 mu g/m(3); H: 88.33 mu g/m(3), P < 0.05) and NO2 (L: 52.76 mu g/m(3); H: 146.03 mu g/m(3), P < 0.01) as well as the intensity of noise pollution (L: 44.4 dB (A); H: 70.1 dB (A), P < 0.001) differed significantly from 18:00 to 19:00 between experimental sites. Traffic pollution exposure (P = 0.006) and neonatal exposure (P = 0.001) led to lower weight of male pups on PND25. Male rats under early-life exposure had increased levels of Shank3 (Shank3_02: timing P < 0.001; site P < 0.05, Shank3_03: timing P < 0.001) and MeCP2 (MeCP2_01: timing P < 0.001, MeCP2_02: timing P < 0.001) methylation and H3K4me3 (EL: 11.94 mu g/mg; EH: 11.98; PL: 17.14; PH: 14.78, timing P < 0.05), and reduced levels of H3K27me3 (EL: 71.07 mu g/mg; EH: 44.76; PL: 29.15; PH: 28.67, timing P < 0.001; site P < 0.05) in brain compared to those under prenatal exposure. There was, for female pups, a same pattern of Shank3 (Shank3_02: timing P < 0.001; site P < 0.05, Shank3_03: timing P < 0.001) and MeCP2 (MeCP2_01: timing P < 0.05, MeCP2_02: timing P < 0.001) methylation and H3K4me3 (EL: 11.27 mu g/mg; EH: 11.55; PL: 16.11; PH: 15.44, timing P < 0.001), but the levels of H3K27me3 exhibited an inverse trend concerning exposure timing. Hypermethylation at the MeCP2 and Shank3 promoter was correlated with the less content of MeCP2 (female: EL: 32.23 ng/mg; EH: 29.58; PL: 25.01; PH: 23.03, timing P < 0.001; site P < 0.05; male: EL: 31.05 ng/mg; EH: 32.75; PL: 23.40; PH: 25.91, timing P < 0.001) and Shank3 (female: EL: 5.10 ng/mg; EH: 5.31; PL: 4.63; PH: 4.82, timing P < 0.001; male: EL: 5.40 ng/mg; EH: 5.48; PL: 4.82; PH: 4.87, timing P < 0.001). Rats with traffic pollution exposure showed aberrant sociability preference and social novelty, while those without it behaved normally. Conclusions Our findings suggest early life under environmental risks is a crucial window for epigenetic perturbations and then abnormalities in protein expression, and traffic pollution impairs behaviors either during pregnancy or after birth.
引用
收藏
页数:12
相关论文
共 50 条
  • [41] Co-expression network analysis of the H3K27me3/H3K4me3-modified genes correlated with chilling accumulation in apple dormant flower buds
    Chen, W.
    Tamada, Y.
    Yamane, H.
    Matsushita, M.
    Osako, Y.
    Gao-Takai, M.
    Luo, Z.
    Tao, R.
    XXXI INTERNATIONAL HORTICULTURAL CONGRESS, IHC2022: INTERNATIONAL SYMPOSIUM ON ADAPTATION OF HORTICULTURAL PLANTS TO ABIOTIC STRESSES, 2023, 1372 : 95 - 100
  • [42] H3K27me3 Demethylases Maintain the Transcriptional and Epigenomic Landscape of the Intestinal Epithelium
    Kolev, Hannah M.
    Swisa, Avital
    Manduchi, Elisabetta
    Lan, Yemin
    Stine, Rachel R.
    Testa, Giuseppe
    Kaestner, Klaus H.
    CELLULAR AND MOLECULAR GASTROENTEROLOGY AND HEPATOLOGY, 2023, 15 (04): : 821 - 839
  • [43] Seasonal plasticity and diel stability of H3K27me3 in natural fluctuating environments
    Nishio, Haruki
    Nagano, Atsushi J.
    Ito, Tasuku
    Suzuki, Yutaka
    Kudoh, Hiroshi
    NATURE PLANTS, 2020, 6 (09) : 1091 - +
  • [44] H3K27me3 at pericentromeric heterochromatin is a defining feature of the early mouse blastocyst
    Pailles, Melanie
    Hirlemann, Melanie
    Brochard, Vincent
    Chebrout, Martine
    Oudin, Jean-Francois
    Marks, Hendrik
    Jouneau, Alice
    Bonnet-Garnier, Amelie
    SCIENTIFIC REPORTS, 2022, 12 (01)
  • [45] Determination of the parental pronuclear origin in bovine zygotes: H3K9me3 versus H3K27me2-3
    Heras, Sonia
    Vandenberghe, Lynn
    Van Soom, Ann
    ANALYTICAL BIOCHEMISTRY, 2016, 510 : 76 - 78
  • [46] The association between Histone 3 Lysine 27 Trimethylation (H3K27me3) and prostate cancer: relationship with clinicopathological parameters
    Ngollo, Marjolaine
    Lebert, Andre
    Dagdemir, Aslihan
    Judes, Gaelle
    Karsli-Ceppioglu, Seher
    Daures, Marine
    Kemeny, Jean-Louis
    Penault-Llorca, Frederique
    Boiteux, Jean-Paul
    Bignon, Yves-Jean
    Guy, Laurent
    Bernard-Gallon, Dominique
    BMC CANCER, 2014, 14
  • [47] Epigenetic Alteration of H3K27me3 as a Possible Oncogenic Mechanism of Central Neurocytoma
    Kim, Hyunhee
    Lee, Kwanghoon
    Shim, Yu -Mi
    Kim, Eric Eunshik
    Kim, Seung-Ki
    Phi, Ji Hoon
    Park, Chul-Kee
    Choi, Seung Hong
    Park, Sung-Hye
    LABORATORY INVESTIGATION, 2023, 103 (08)
  • [48] Genome-wide epigenetic cross-talk between DNA methylation and H3K27me3 in zebrafish embryos
    de la Calle Mustienes, Elisa
    Luis Gomez-Skarmeta, Jose
    Bogdanovic, Ozren
    GENOMICS DATA, 2015, 6 : 7 - 9
  • [49] Comprehensive analysis of H3K27me3 LOCKs under different DNA methylation contexts reveal epigenetic redistribution in tumorigenesis
    Liang, Yuan
    Liu, Mengni
    Liu, Bingyuan
    Ziman, Benjamin
    Peng, Guanjie
    Mao, Qiong
    Wang, Xingzhe
    Jiang, Lizhen
    Lin, De-Chen
    Zheng, Yueyuan
    EPIGENETICS & CHROMATIN, 2025, 18 (01)
  • [50] Chromatin state analysis of the barley epigenome reveals a higher-order structure defined by H3K27me1 and H3K27me3 abundance
    Baker, Katie
    Dhillon, Taniya
    Colas, Isabelle
    Cook, Nicola
    Milne, Iain
    Milne, Linda
    Bayer, Micha
    Flavell, Andrew J.
    PLANT JOURNAL, 2015, 84 (01) : 111 - 124