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遗传易感性因素本体论(OGSF)及其在疫苗不良事件遗传易感性建模中的应用。

The ontology of genetic susceptibility factors (OGSF) and its application in modeling genetic susceptibility to vaccine adverse events.

作者信息

Lin Yu, He Yongqun

机构信息

Unit for Laboratory Animal Medicine, University of Michigan Medical School, Ann Arbor, MI 48109, USA ; Department of Microbiology and Immunology, University of Michigan Medical School, Ann Arbor, MI 48109, USA ; Center for Computational Medicine and Bioinformatics, University of Michigan Medical School, Ann Arbor, MI 48109, USA.

出版信息

J Biomed Semantics. 2014 Apr 30;5:19. doi: 10.1186/2041-1480-5-19. eCollection 2014.

Abstract

BACKGROUND

Due to human variations in genetic susceptibility, vaccination often triggers adverse events in a small population of vaccinees. Based on our previous work on ontological modeling of genetic susceptibility to disease, we developed an Ontology of Genetic Susceptibility Factors (OGSF), a biomedical ontology in the domain of genetic susceptibility and genetic susceptibility factors. The OGSF framework was then applied in the area of vaccine adverse events (VAEs).

RESULTS

OGSF aligns with the Basic Formal Ontology (BFO). OGSF defines 'genetic susceptibility' as a subclass of BFO:disposition and has a material basis 'genetic susceptibility factor'. The 'genetic susceptibility to pathological bodily process' is a subclasses of 'genetic susceptibility'. A VAE is a type of pathological bodily process. OGSF represents different types of genetic susceptibility factors including various susceptibility alleles (e.g., SNP and gene). A general OGSF design pattern was developed to represent genetic susceptibility to VAE and associated genetic susceptibility factors using experimental results in genetic association studies. To test and validate the design pattern, two case studies were populated in OGSF. In the first case study, human gene allele DBR*15:01 is susceptible to influenza vaccine Pandemrix-induced Multiple Sclerosis. The second case study reports genetic susceptibility polymorphisms associated with systemic smallpox VAEs. After the data of the Case Study 2 were represented using OGSF-based axioms, SPARQL was successfully developed to retrieve the susceptibility factors stored in the populated OGSF. A network of data from the Case Study 2 was constructed by using ontology terms and individuals as nodes and ontology relations as edges. Different social network analys is (SNA) methods were then applied to verify core OGSF terms. Interestingly, a SNA hub analysis verified all susceptibility alleles of SNPs and a SNA closeness analysis verified the susceptibility genes in Case Study 2. These results validated the proper OGSF structure identified different ontology aspects with SNA methods.

CONCLUSIONS

OGSF provides a verified and robust framework for representing various genetic susceptibility types and genetic susceptibility factors annotated from experimental VAE genetic association studies. The RDF/OWL formulated ontology data can be queried using SPARQL and analyzed using centrality-based network analysis methods.

摘要

背景

由于人类在遗传易感性方面存在差异,疫苗接种往往会在一小部分接种者中引发不良事件。基于我们之前在疾病遗传易感性本体建模方面的工作,我们开发了遗传易感性因素本体(OGSF),这是一个在遗传易感性和遗传易感性因素领域的生物医学本体。然后,OGSF框架被应用于疫苗不良事件(VAE)领域。

结果

OGSF与基础形式本体(BFO)对齐。OGSF将“遗传易感性”定义为BFO:倾向的一个子类,并有一个物质基础“遗传易感性因素”。“对病理性身体过程的遗传易感性”是“遗传易感性”的一个子类。VAE是一种病理性身体过程。OGSF代表了不同类型的遗传易感性因素,包括各种易感等位基因(如SNP和基因)。开发了一种通用的OGSF设计模式,以利用遗传关联研究中的实验结果来表示对VAE的遗传易感性和相关的遗传易感性因素。为了测试和验证该设计模式,在OGSF中填充了两个案例研究。在第一个案例研究中,人类基因等位基因DBR*15:01对流感疫苗Pandemrix诱导的多发性硬化症易感。第二个案例研究报告了与全身性天花VAE相关的遗传易感性多态性。在使用基于OGSF的公理表示案例研究2的数据后,可以成功开发SPARQL来检索填充在OGSF中的易感因素。通过将本体术语和个体作为节点,本体关系作为边,构建了案例研究2的数据网络。然后应用不同的社会网络分析(SNA)方法来验证OGSF的核心术语。有趣的是,SNA中心性分析验证了案例研究2中SNP的所有易感等位基因,SNA接近性分析验证了易感基因。这些结果验证了适当的OGSF结构,并通过SNA方法识别了不同的本体方面。

结论

OGSF为表示从实验性VAE遗传关联研究中注释的各种遗传易感性类型和遗传易感性因素提供了一个经过验证的强大框架。以RDF/OWL形式表示的本体数据可以使用SPARQL进行查询,并使用基于中心性的网络分析方法进行分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/df55/4068904/15a368fe7636/2041-1480-5-19-1.jpg

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