Leveraging base-pair mammalian constraint to understand genetic variation and human disease
Patrick F Sullivan1,2, Jennifer R S Meadows3, Steven Gazal4,5
1Department of Genetics, University of North Carolina Medical School, Chapel Hill, NC 27599, USA.
Abstract:
Thousands of genomic regions have been associated with heritable human diseases, but attempts to elucidate biological mechanisms are impeded by an inability to discern which genomic positions are functionally important. Evolutionary constraint is a powerful predictor of function, agnostic to cell type or disease mechanism. Single-base phyloP scores from 240 mammals identified 3.3% of the human genome as significantly constrained and likely functional. We compared phyloP scores to genome annotation, association studies, copy-number variation, clinical genetics findings, and cancer data. Constrained positions are enriched for variants that explain common disease heritability more than other functional annotations. Our results improve variant annotation but also highlight that the regulatory landscape of the human genome still needs to be further explored and linked to disease.
Related Concept Videos
Incomplete Dominance
Genome-wide Association Studies-GWAS
GWAS does not require the identification of the target gene involved in...
Genetic Variation
Genes exist in different versions called alleles,...
Human Genetics
The complex relationship between genetics and psychology is observable through common biological components such...
Evolutionary Relationships through Genome Comparisons
Multi-species Conserved Sequences
Although the genome of each species varies greatly from each other, a few sequences are highly conserved. Such conserved...


