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The molecule’s the thing: the promise of molecular modeling and dynamic simulations in aiding the prioritization and interpretation of genomic testing results

机译:分子就是物:分子建模和动态模拟有望帮助确定基因组测试结果的优先级和解释

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摘要

Clinical genomics is now a reality and lies at the heart of individualized medicine efforts. The success of these approaches is evidenced by the increasing volume of publications that report causal links between genomic variants and disease. In spite of early success, clinical genomics currently faces significant challenges in establishing the relevance of the majority of variants identified by next generation sequencing tests. Indeed, the majority of mutations identified are harbored by proteins whose functions remain elusive. Herein we describe the current scenario in genomic testing and in particular the burden of variants of uncertain significance (VUSs). We highlight a role for molecular modeling and molecular dynamic simulations as tools that can significantly increase the yield of information to aid in the evaluation of pathogenicity. Though the application of these methodologies to the interpretation of variants identified by genomic testing is not yet widespread, we predict that an increase in their use will significantly benefit the mission of clinical genomics for individualized medicine.
机译:临床基因组学现已成为现实,并且是个体化医学工作的核心。报告基因组变异与疾病之间因果关系的出版物数量不断增加,证明了这些方法的成功。尽管取得了早期成功,但临床基因组学目前在建立下一代测序测试所鉴定的大多数变异体的相关性方面仍面临重大挑战。实际上,鉴定出的大多数突变都由蛋白质保留,而这些蛋白质的功能仍然难以捉摸。在这里,我们描述了基因组测试的当前情况,尤其是不确定重要性变异(VUSs)的负担。我们强调了分子建模和分子动力学模拟作为工具的作用,该工具可以显着提高信息的产量以帮助评估致病性。尽管这些方法在解释通过基因组测试鉴定的变异体中的应用尚不广泛,但我们预测,使用这些方法的增加将大大有利于个体化临床基因组学的使命。

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