تخطي إلى التنقل الرئيسي تخطي إلى البحث تخطي إلى المحتوى الرئيسي

Combined burden and functional impact tests for cancer driver discovery using DriverPower

  • ,

نتاج البحث: Articleمراجعة النظراء

41 اقتباسات (Scopus)

ملخص

The discovery of driver mutations is one of the key motivations for cancer genome sequencing. Here, as part of the ICGC/TCGA Pan-Cancer Analysis of Whole Genomes (PCAWG) Consortium, which aggregated whole genome sequencing data from 2658 cancers across 38 tumour types, we describe DriverPower, a software package that uses mutational burden and functional impact evidence to identify driver mutations in coding and non-coding sites within cancer whole genomes. Using a total of 1373 genomic features derived from public sources, DriverPower’s background mutation model explains up to 93% of the regional variance in the mutation rate across multiple tumour types. By incorporating functional impact scores, we are able to further increase the accuracy of driver discovery. Testing across a collection of 2583 cancer genomes from the PCAWG project, DriverPower identifies 217 coding and 95 non-coding driver candidates. Comparing to six published methods used by the PCAWG Drivers and Functional Interpretation Working Group, DriverPower has the highest F1 score for both coding and non-coding driver discovery. This demonstrates that DriverPower is an effective framework for computational driver discovery.

اللغة الأصليةEnglish
رقم المقال734
دوريةNature Communications
مستوى الصوت11
رقم الإصدار1
المعرِّفات الرقمية للأشياء
حالة النشرPublished - 1 ديسمبر 2020

أهداف الأمم المتحدة للتنمية المستدامة

يساهم هذا المخرج في تحقيق أهداف الأمم المتحدة للتنمية المستدامة التالية (SDGs)

  1. Good health and well being
    Good health and well being

بصمة

أدرس بدقة موضوعات البحث “Combined burden and functional impact tests for cancer driver discovery using DriverPower'. فهما يشكلان معًا بصمة فريدة.

قم بذكر هذا