Suppr超能文献

在大型临床人群中外显子变异发现的轨迹:对变异管理的启示。

Trajectory of exonic variant discovery in a large clinical population: implications for variant curation.

机构信息

Geisinger Clinic, Geisinger Health System, Danville, PA, USA.

出版信息

Genet Med. 2019 Jun;21(6):1417-1424. doi: 10.1038/s41436-018-0353-5. Epub 2018 Nov 19.

Abstract

PURPOSE

Precision health initiatives and reduced sequencing costs are driving large-scale human genome analyses. Genetic variant curation is a bottleneck in clinical applications. The burden of variant curation can be high for newly discovered variants because they are less likely to have undergone previous clinical annotation; the rate of discovery of genetic variants in large clinical populations has not been empirically determined.

METHODS

We determined the rate of accrual of unique sequence variants in 90,000 exome sequences. Separate analyses were done for 17,267 autosomal genes and a subset of 74 actionable genes; the effect of relatedness in the cohort was also determined.

RESULTS

Variant discovery showed a nonlinear growth pattern. The rate of unique variant accrual decreased as the database size increased; by 90,000 exomes 97% of all projected coding and splicing variants had been observed. Variants in 74 actionable genes showed a similar pattern. Family relatedness slightly reduced the rate of discovery of unique variants.

CONCLUSION

The heaviest burden of interpretation for genetic variants occurs early and diminishes as the database size increases. Our data provide a framework for scaling pathogenic genetic variant discovery and curation, a critical element of patient care in the era of precision health.

摘要

目的

精准医疗计划和测序成本的降低推动了大规模人类基因组分析。遗传变异的筛选是临床应用中的一个瓶颈。由于新发现的变异不太可能经历过先前的临床注释,因此它们的变异筛选负担可能很高;在大型临床人群中发现遗传变异的速度尚未通过经验确定。

方法

我们确定了在 90,000 个外显子序列中独特序列变异的累积速度。分别对 17,267 条常染色体基因和 74 个可操作基因的子集进行了分析;还确定了队列中亲缘关系的影响。

结果

变异发现呈现出非线性增长模式。随着数据库大小的增加,独特变异累积的速度下降;在 90,000 个外显子中,已经观察到所有预测的编码和剪接变异的 97%。74 个可操作基因中的变异也呈现出类似的模式。家族亲缘关系略微降低了独特变异的发现速度。

结论

遗传变异解释的最大负担发生在早期,随着数据库大小的增加而减少。我们的数据为致病遗传变异发现和筛选的扩展提供了一个框架,这是精准医疗时代患者护理的关键要素。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验