Author:
Seplyarskiy Vladimir,Lee Daniel J.,Koch Evan M.,Lichtman Joshua S.,Luan Harding H.,Sunyaev Shamil R.
Abstract
AbstractDe novo mutations occur with substantially different rates depending on genomic location, sequence context and DNA strand1–4. The success of many human genetics techniques, especially when applied to large population sequencing datasets with numerous recurrent mutations5,6, depends strongly on assumptions about the local mutation rate. Such techniques include estimation of selection intensity7, inference of demographic history8, and mapping of rare disease genes9. Here, we present Roulette, a genome-wide mutation rate model at the basepair resolution that incorporates known determinants of local mutation rate (http://genetics.bwh.harvard.edu/downloads/Vova/Roulette/). Roulette is shown to be more accurate than existing models1,10. Roulette has sufficient resolution at high mutation rate sites to model allele frequencies under recurrent mutation. We use Roulette to refine estimates of population growth within Europe by incorporating the full range of human mutation rates. The analysis of significant deviations from the model predictions revealed a 10-fold increase in mutation rate in nearly all genes transcribed by Polymerase III, suggesting a new mutagenic mechanism. We also detected an accelerated mutation rate within transcription factor binding sites restricted to sites actively utilized in testis and residing in promoters.
Publisher
Cold Spring Harbor Laboratory
Cited by
4 articles.
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