Epigenetics in drug disposition &amp; drug therapy: symposium report of the 24<sup>th</sup> North American meeting of the International Society for the Study of Xenobiotics (ISSX)

表观遗传学 DNA甲基化 药品 小RNA 药物开发 异型生物质的 组蛋白 药物发现 药理学 会话(web分析) 性情 药物代谢 生物 计算生物学 心理学 遗传学 生物信息学 基因表达 基因 生物化学 计算机科学 社会心理学 万维网
作者
Benjamin J. Maldonato,Ana I. Vergara,Jaydeep Yadav,Sarah M. Glass,Erickson M. Paragas,Dongying Li,Philip Lazarus,Joseph L. McClay,Baitang Ning,Ann K. Daly,Laura D. Russell
出处
期刊:Drug Metabolism Reviews [Taylor & Francis]
卷期号:54 (3): 318-330
标识
DOI:10.1080/03602532.2022.2101662
摘要

The 24th North American International Society for the Study of Xenobiotics (ISSX) meeting, held virtually from September 13 to 17, 2021, embraced the theme of "Broadening Our Horizons." This reinforces a key mission of ISSX: striving to share innovative science related to drug discovery and development. Session speakers and the ISSX New Investigators Group, which supports the scientific and professional development of student and early career ISSX members, elected to highlight the scientific content presented during the captivating session titled, "Epigenetics in Drug Disposition & Drug Therapy." The impact genetic variation has on drug response is well established; however, this session underscored the importance of investigating the role of epigenetics in drug disposition and drug discovery. Session speakers, Drs. Ning, McClay, and Lazarus, detailed mechanisms by which epigenetic players including long non-coding RNA (lncRNAs), microRNA (miRNAs), DNA methylation, and histone acetylation can alter the expression of genes involved in pharmacokinetics, pharmacodynamics, and toxicity. Dr. Ning detailed current knowledge about miRNAs and lncRNAs and the mechanisms by which they can affect the expression of drug metabolizing enzymes (DMEs) and nuclear receptors. Dr. Lazarus discussed the potential role of miRNAs on UDP-glucuronosyltransferase (UGT) expression and activity. Dr. McClay provided evidence that aging alters methylation and acetylation of DMEs in the liver, affecting gene expression and activity. These topics, compiled by the symposium organizers, presenters, and the ISSX New Investigators Group, are herein discussed, along with exciting future perspectives for epigenetics in drug disposition and drug discovery research.
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