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一个全面的全球罕见病基因型-表型数据库。

A comprehensive global genotype-phenotype database for rare diseases.

作者信息

Trujillano Daniel, Oprea Gabriela-Elena, Schmitz Yvonne, Bertoli-Avella Aida M, Abou Jamra Rami, Rolfs Arndt

机构信息

Centogene AG Rostock Germany.

Centogene AGRostockGermany; Institute of Human GeneticsUniversity of Leipzig Hospitals and ClinicsLeipzigGermany.

出版信息

Mol Genet Genomic Med. 2016 Nov 23;5(1):66-75. doi: 10.1002/mgg3.262. eCollection 2017 Jan.

Abstract

BACKGROUND

The ability to discover genetic variants in a patient runs far ahead of the ability to interpret them. Databases with accurate descriptions of the causal relationship between the variants and the phenotype are valuable since these are critical tools in clinical genetic diagnostics. Here, we introduce a comprehensive and global genotype-phenotype database focusing on rare diseases.

METHODS

This database (CentoMD ) is a browser-based tool that enables access to a comprehensive, independently curated system utilizing stringent high-quality criteria and a quickly growing repository of genetic and human phenotype ontology (HPO)-based clinical information. Its main goals are to aid the evaluation of genetic variants, to enhance the validity of the genetic analytical workflow, to increase the quality of genetic diagnoses, and to improve evaluation of treatment options for patients with hereditary diseases. The database software correlates clinical information from consented patients and probands of different geographical backgrounds with a large dataset of genetic variants and, when available, biomarker information. An automated follow-up tool is incorporated that informs all users whenever a variant classification has changed. These unique features fully embedded in a CLIA/CAP-accredited quality management system allow appropriate data quality and enhanced patient safety.

RESULTS

More than 100,000 genetically screened individuals are documented in the database, resulting in more than 470 million variant detections. Approximately, 57% of the clinically relevant and uncertain variants in the database are novel. Notably, 3% of the genetic variants identified and previously reported in the literature as being associated with a particular rare disease were reclassified, based on internal evidence, as clinically irrelevant.

CONCLUSIONS

The database offers a comprehensive summary of the clinical validity and causality of detected gene variants with their associated phenotypes, and is a valuable tool for identifying new disease genes through the correlation of novel genetic variants with specific, well-defined phenotypes.

摘要

背景

发现患者基因变异的能力远远超过了解释这些变异的能力。拥有变异与表型之间因果关系准确描述的数据库很有价值,因为这些是临床基因诊断的关键工具。在此,我们推出了一个专注于罕见病的全面且全球性的基因型-表型数据库。

方法

该数据库(CentoMD)是一个基于浏览器的工具,可访问一个全面的、经过独立策划的系统,该系统采用严格的高质量标准以及一个快速增长的基于基因和人类表型本体论(HPO)的临床信息库。其主要目标是协助评估基因变异,提高基因分析流程的有效性,提升基因诊断的质量,并改善对遗传病患者治疗方案的评估。数据库软件将来自不同地理背景的同意参与的患者和先证者的临床信息与大量基因变异数据集以及(如有)生物标志物信息相关联。纳入了一个自动跟踪工具,每当变异分类发生变化时会通知所有用户。这些独特功能完全嵌入CLIA/CAP认可的质量管理系统中,可确保适当的数据质量并增强患者安全性。

结果

数据库记录了超过100,000名经过基因筛查的个体,产生了超过4.7亿次变异检测。数据库中约57%的临床相关且不确定的变异是新发现的。值得注意的是,根据内部证据,数据库中鉴定出的且先前在文献中报道与特定罕见病相关的3%的基因变异被重新分类为临床无关。

结论

该数据库提供了检测到的基因变异与其相关表型的临床有效性和因果关系的全面总结,是通过将新的基因变异与特定的、明确界定的表型相关联来识别新疾病基因的宝贵工具。

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