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Open AccessJournal ArticleDOI

A global reference for human genetic variation.

Adam Auton, +517 more
- 01 Oct 2015 - 
- Vol. 526, Iss: 7571, pp 68-74
TLDR
The 1000 Genomes Project set out to provide a comprehensive description of common human genetic variation by applying whole-genome sequencing to a diverse set of individuals from multiple populations, and has reconstructed the genomes of 2,504 individuals from 26 populations using a combination of low-coverage whole-generation sequencing, deep exome sequencing, and dense microarray genotyping.
Abstract
The 1000 Genomes Project set out to provide a comprehensive description of common human genetic variation by applying whole-genome sequencing to a diverse set of individuals from multiple populations. Here we report completion of the project, having reconstructed the genomes of 2,504 individuals from 26 populations using a combination of low-coverage whole-genome sequencing, deep exome sequencing, and dense microarray genotyping. We characterized a broad spectrum of genetic variation, in total over 88 million variants (84.7 million single nucleotide polymorphisms (SNPs), 3.6 million short insertions/deletions (indels), and 60,000 structural variants), all phased onto high-quality haplotypes. This resource includes >99% of SNP variants with a frequency of >1% for a variety of ancestries. We describe the distribution of genetic variation across the global sample, and discuss the implications for common disease studies.

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Citations
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Journal ArticleDOI

Comparative genetic architectures of schizophrenia in East Asian and European populations

Max Lam, +69 more
- 31 Dec 2019 - 
TL;DR: The largest study to date of East Asian participants is reported, identifying 21 genome-wide-significant associations in 19 genetic loci associated with schizophrenia and highlighting the importance of including sufficient samples of major ancestral groups to ensure their generalizability across populations.
Journal ArticleDOI

The druggable genome and support for target identification and validation in drug development.

TL;DR: This work connected complex disease- and biomarker-associated loci from genome-wide association studies to an updated set of genes encoding druggable human proteins, to agents with bioactivity against these targets, and, where there were licensed drugs, to clinical indications.
Journal ArticleDOI

Deep learning sequence-based ab initio prediction of variant effects on expression and disease risk

TL;DR: A deep learning–based framework that can accurately predict the tissue-specific transcriptional effects of mutations on the basis of DNA sequence alone, ExPecto is developed and can prioritize causal variants from GWAS loci and be used to predict the disease risk of a variant.
Journal ArticleDOI

Towards clinical utility of polygenic risk scores.

TL;DR: This review summarises the potential use cases for seven common diseases where PRS has or could have clinical utility and summarises open questions regarding PRS usability, ancestry bias, and transferability, emphasising the need for the next wave of studies to focus on the implementation and health-economic value of PRS testing.
Journal ArticleDOI

Ensembl variation resources

TL;DR: This work develops methods to facilitate data integration and broad access; aggregate information in a consistent manner and make it available a variety of standard formats; build analysis pipelines to compare variants to comprehensive genomic annotation sets; and make all tools and data publicly available.
References
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