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Finding Genomic Function for Genetic Associations in Nicotine Addiction Research: The ENCODE Projects Role in Future Pharmacogenomic Analysis

机译:在烟碱成瘾研究中寻找基因关联的基因组功能:ENCODE项目在未来药物基因组学分析中的作用

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摘要

Tobacco-related behaviors and the underlying addiction to nicotine are complex tangles of genetic and environmental factors. Efforts to understand the genetic component of these traits have identified sites in the genome (Single Nucleotide Polymorphisms, or SNPs) that might account for some part of the role of genetics in nicotine addiction. Encouragingly, some of these candidate SNPs remain significant in meta-analyses. However, genetic associations cannot be fully assessed, regardless of statistical significance, without an understanding of the functional consequences of the alleles present at these SNPs. The proper experimental test for allelic function can be very difficult to define, representing a roadblock in translating genetic results into treatment to prevent smoking and other nicotine-related behaviors. This roadblock can be navigated in part with a new web-based tool, the Encyclopedia of DNA Elements (ENCODE). ENCODE is a compilation of searchable data on several types of biochemical functions or “marks” across the genome. These data can be queried for the co-localization of a candidate SNP and a biochemical mark. The presence of a SNP within a marked region of DNA enables the generation of better-informed hypotheses to test possible functional roles of alleles at a candidate SNP. Two examples of such co-localizations are presented. One example reveals ENCODE's ability to relate a candidate SNP's function with a gene very far from the physical location of the SNP. The second example reveals a new potential function of the SNP, rs4105144, that has been genetically associated with the number of cigarettes smoked per day. Details for accessing the ENCODE data for this SNP are provided to serve as a tutorial. By serving as a bridge between genetic associations and biochemical function, ENCODE has the power to propel progress in untangling the genetic aspects of nicotine addiction—a major public health concern.
机译:烟草相关的行为和对尼古丁的潜在成瘾是遗传和环境因素的复杂缠结。努力了解这些性状的遗传成分已确定了基因组中的位点(单核苷酸多态性,即SNP),这可能解释了遗传因素在尼古丁成瘾中的作用。令人鼓舞的是,这些候选SNP中的一些在荟萃分析中仍然很重要。但是,如果不了解这些SNP上存在的等位基因的功能后果,则无论统计意义如何,都无法充分评估遗传关联。对等位基因功能的正确实验测试可能很难定义,这代表了将遗传结果转化为治疗措施以预防吸烟和其他尼古丁相关行为的障碍。可以使用基于Web的新工具DNA元素百科全书(ENCODE)来部分浏览此障碍。 ENCODE是有关基因组中几种类型的生化功能或“标记”的可搜索数据的汇编。可以查询这些数据以寻找候选SNP和生化标记的共定位。 DNA标记区域内SNP的存在使得能够生成消息灵通的假设,以测试等位基因在候选SNP处的可能功能。给出了这种共定位的两个例子。一个例子表明,ENCODE能够将候选SNP功能与距离SNP物理位置很远的基因相关联。第二个示例揭示了SNP的新潜在功能rs4105144,该功能与每天吸烟的数量在遗传上相关。提供了有关访问此SNP的ENCODE数据的详细信息,以作为教程。通过充当遗传关联和生化功能之间的桥梁,ENCODE有权推动在解决尼古丁成瘾的遗传方面(这是公共健康的主要问题)方面取得进展。

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