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Imprinted Genes and the Environment: Links to the Toxic Metals Arsenic, Cadmium and Lead

机译:印迹的基因与环境:与有毒金属砷,镉和铅的链接

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Imprinted genes defy rules of Mendelian genetics with their expression tied to the parent from whom each allele was inherited. They are known to play a role in various diseases/disorders including fetal growth disruption, lower birth weight, obesity, and cancer. There is increasing interest in understanding their influence on environmentally-induced disease. The environment can be thought of broadly as including chemicals present in air, water and soil, as well as food. According to the Agency for Toxic Substances and Disease Registry (ATSDR), some of the highest ranking environmental chemicals of concern include metals/metalloids such as arsenic, cadmium, lead and mercury. The complex relationships between toxic metal exposure, imprinted gene regulation/expression and health outcomes are understudied. Herein we examine trends in imprinted gene biology, including an assessment of the imprinted genes and their known functional roles in the cell, particularly as they relate to toxic metals exposure and disease. The data highlight that many of the imprinted genes have known associations to developmental diseases and are enriched for their role in the TP53 and AhR pathways. Assessment of the promoter regions of the imprinted genes resulted in the identification of an enrichment of binding sites for two transcription factor families, namely the zinc finger family II and PLAG transcription factors. Taken together these data contribute insight into the complex relationships between toxic metals in the environment and imprinted gene biology.
机译:印记基因违反了孟德尔遗传学的规则,其表达与每个等位基因所继承的亲本相关。已知它们在各种疾病/病症中起作用,包括胎儿生长中断,出生体重减轻,肥胖和癌症。人们越来越了解它们对环境引起的疾病的影响。可以广泛地将环境视为包括空气,水和土壤以及食物中存在的化学物质。根据有毒物质和疾病登记局(ATSDR)的数据,一些最受关注的环境化学品包括金属/准金属,如砷,镉,铅和汞。对有毒金属暴露,基因印迹调控/表达与健康结果之间的复杂关系进行了研究。本文中,我们研究了印迹基因生物学的趋势,包括对印迹基因及其在细胞中已知功能作用的评估,尤其是涉及到有毒金属暴露和疾病的研究。数据突出表明,许多印迹基因与发育性疾病具有已知关联,并因其在TP53和AhR途径中的作用而丰富。对印迹基因启动子区域的评估导致鉴定了两个转录因子家族,即锌指家族II和PLAG转录因子的结合位点的富集。这些数据加在一起有助于洞悉环境中有毒金属与基因印迹生物学之间的复杂关系。

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