Effects of Naphtho[2,1-a]pyrene Exposure on CYP1A1 Expression: An in Vivo and in Vitro Mechanistic Study Exploring the Role of m6A Posttranscriptional Modification.
Jiemiao Shen, Li Wang, Wen Zhang, Xing Gong, Sheng Li, Xuyan Zou, Chao Chen, Rong Xia, Di Zhang, Shuyu Xu, Jiayi Xu, Shaozhuo Wang, Yinyue Jiang, Hong Sun, Chao Wang, Shou-Lin Wang
{"title":"<ArticleTitle xmlns:ns0=\"http://www.w3.org/1998/Math/MathML\">Effects of Naphtho[2,1-<i>a</i>]pyrene Exposure on CYP1A1 Expression: An <i>in Vivo</i> and <i>in Vitro</i> Mechanistic Study Exploring the Role of <ns0:math><ns0:mrow><ns0:mrow><ns0:msup><ns0:mrow><ns0:mi>m</ns0:mi></ns0:mrow><ns0:mrow><ns0:mi>6</ns0:mi></ns0:mrow></ns0:msup></ns0:mrow><ns0:mi>A</ns0:mi></ns0:mrow></ns0:math> Posttranscriptional Modification.","authors":"Jiemiao Shen, Li Wang, Wen Zhang, Xing Gong, Sheng Li, Xuyan Zou, Chao Chen, Rong Xia, Di Zhang, Shuyu Xu, Jiayi Xu, Shaozhuo Wang, Yinyue Jiang, Hong Sun, Chao Wang, Shou-Lin Wang","doi":"10.1289/EHP14055","DOIUrl":null,"url":null,"abstract":"<p><strong>Background: </strong>Currently, many emerging polycyclic aromatic hydrocarbons (PAHs) have been found to be widely present in the environment. However, little has been reported about their toxicity, particularly in relation to CYP1A1.</p><p><strong>Objectives: </strong>This study aimed to explore the toxicity of naphtho[2,1-<i>a</i>]pyrene (N21aP) and elucidate the mechanism underlying N21aP-induced expression of CYP1A1.</p><p><strong>Methods: </strong>The concentration and sources of N21aP were detected and analyzed by gas chromatography-triple quadrupole mass spectrometry (GC-MS/MS) and diagnostic ratio analysis. Then the effects of CYP1A1 on the toxicity of N21aP were conducted in male wild-type (WT) and <i>Cyp1a1</i> knockout mice exposed to N21aP (0.02, 0.2, and <math><mrow><mn>2</mn><mspace></mspace><mi>mg</mi><mo>/</mo><mi>kg</mi></mrow></math>) through intratracheal instillation. Further, the aryl hydrocarbon receptor (AhR) pathway was examined through luciferase and chromatin immunoprecipitation (ChIP) assays. <math><mrow><mrow><msup><mrow><mi>N</mi></mrow><mrow><mn>6</mn></mrow></msup></mrow></mrow></math>-methyladenosine (<math><mrow><mrow><msup><mrow><mi>m</mi></mrow><mrow><mn>6</mn></mrow></msup></mrow><mi>A</mi></mrow></math>) modification levels were measured on global RNA and specifically on <i>CYP1A1</i> mRNA using dot blotting and methylated RNA immunoprecipitation-quantitative real-time polymerase chain reaction (MeRIP qRT-PCR), with validation by <math><mrow><mrow><msup><mrow><mi>m</mi></mrow><mrow><mn>6</mn></mrow></msup></mrow><mi>A</mi></mrow></math> inhibitors, DAA and SAH. <math><mrow><mrow><msup><mrow><mi>m</mi></mrow><mrow><mn>6</mn></mrow></msup></mrow><mi>A</mi></mrow></math> sites on <i>CYP1A1</i> were identified by bioinformatics and luciferase assays, and <i>CYP1A1</i> mRNA's interaction with IGF2BP3 was confirmed by RNA pull-down, luciferase, and RNA binding protein immunoprecipitation (RIP) assays.</p><p><strong>Results: </strong>N21aP was of the same environmental origin as benzo[<i>a</i>]pyrene (BaP) but was more stably present in the environment. N21aP could be metabolically activated by CYP1A1 to produce epoxides, causing DNA damage and further leading to lung inflammation. Importantly, in addition to the classical AhR pathway (i.e., BaP), N21aP also induced CYP1A1 expression with a posttranscriptional modification of <math><mrow><mrow><msup><mrow><mi>m</mi></mrow><mrow><mn>6</mn></mrow></msup></mrow><mi>A</mi></mrow></math> in <i>CYP1A1</i> mRNA via the METTL14-IGF2BP3-CYP1A1 axis. Specifically, in the two recognition sites of METTL14 on the <i>CYP1A1</i> mRNA transcript (position at 2700 and 5218), a methylation site (position at 5218) in the 3'-untranslated region (UTR) was recognized by IGF2BP3, enhanced the stability of <i>CYP1A1</i> mRNA, and finally resulted in an increase in CYP1A1 expression.</p><p><strong>Discussion: </strong>This study systematically demonstrated that in addition to AhR-mediated transcriptional regulation, N21aP, had a new additional mechanism of <math><mrow><mrow><msup><mrow><mi>m</mi></mrow><mrow><mn>6</mn></mrow></msup></mrow><mi>A</mi></mrow></math>-mediated posttranscriptional modification, jointly contributing to CYP1A1 expression. Given that PAHs are the metabolic substrates of CYP1A1, this study not only helps to understand the significance of environment-genetic interactions for the toxicity of PAHs but also helps to better understand the health risks of the emerging PAHs at environmental exposure levels. https://doi.org/10.1289/EHP14055.</p>","PeriodicalId":11862,"journal":{"name":"Environmental Health Perspectives","volume":"132 8","pages":"87003"},"PeriodicalIF":10.1000,"publicationDate":"2024-08-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11318572/pdf/","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Environmental Health Perspectives","FirstCategoryId":"93","ListUrlMain":"https://doi.org/10.1289/EHP14055","RegionNum":1,"RegionCategory":"环境科学与生态学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"2024/8/12 0:00:00","PubModel":"Epub","JCR":"Q1","JCRName":"ENVIRONMENTAL SCIENCES","Score":null,"Total":0}
引用次数: 0
Abstract
Background: Currently, many emerging polycyclic aromatic hydrocarbons (PAHs) have been found to be widely present in the environment. However, little has been reported about their toxicity, particularly in relation to CYP1A1.
Objectives: This study aimed to explore the toxicity of naphtho[2,1-a]pyrene (N21aP) and elucidate the mechanism underlying N21aP-induced expression of CYP1A1.
Methods: The concentration and sources of N21aP were detected and analyzed by gas chromatography-triple quadrupole mass spectrometry (GC-MS/MS) and diagnostic ratio analysis. Then the effects of CYP1A1 on the toxicity of N21aP were conducted in male wild-type (WT) and Cyp1a1 knockout mice exposed to N21aP (0.02, 0.2, and ) through intratracheal instillation. Further, the aryl hydrocarbon receptor (AhR) pathway was examined through luciferase and chromatin immunoprecipitation (ChIP) assays. -methyladenosine () modification levels were measured on global RNA and specifically on CYP1A1 mRNA using dot blotting and methylated RNA immunoprecipitation-quantitative real-time polymerase chain reaction (MeRIP qRT-PCR), with validation by inhibitors, DAA and SAH. sites on CYP1A1 were identified by bioinformatics and luciferase assays, and CYP1A1 mRNA's interaction with IGF2BP3 was confirmed by RNA pull-down, luciferase, and RNA binding protein immunoprecipitation (RIP) assays.
Results: N21aP was of the same environmental origin as benzo[a]pyrene (BaP) but was more stably present in the environment. N21aP could be metabolically activated by CYP1A1 to produce epoxides, causing DNA damage and further leading to lung inflammation. Importantly, in addition to the classical AhR pathway (i.e., BaP), N21aP also induced CYP1A1 expression with a posttranscriptional modification of in CYP1A1 mRNA via the METTL14-IGF2BP3-CYP1A1 axis. Specifically, in the two recognition sites of METTL14 on the CYP1A1 mRNA transcript (position at 2700 and 5218), a methylation site (position at 5218) in the 3'-untranslated region (UTR) was recognized by IGF2BP3, enhanced the stability of CYP1A1 mRNA, and finally resulted in an increase in CYP1A1 expression.
Discussion: This study systematically demonstrated that in addition to AhR-mediated transcriptional regulation, N21aP, had a new additional mechanism of -mediated posttranscriptional modification, jointly contributing to CYP1A1 expression. Given that PAHs are the metabolic substrates of CYP1A1, this study not only helps to understand the significance of environment-genetic interactions for the toxicity of PAHs but also helps to better understand the health risks of the emerging PAHs at environmental exposure levels. https://doi.org/10.1289/EHP14055.
期刊介绍:
Environmental Health Perspectives (EHP) is a monthly peer-reviewed journal supported by the National Institute of Environmental Health Sciences, part of the National Institutes of Health under the U.S. Department of Health and Human Services. Its mission is to facilitate discussions on the connections between the environment and human health by publishing top-notch research and news. EHP ranks third in Public, Environmental, and Occupational Health, fourth in Toxicology, and fifth in Environmental Sciences.