Gymrek, MelissaWillems, ThomasReich, DavidErlich, Yaniv2018-04-192017Gymrek, Melissa, Thomas Willems, David Reich, and Yaniv Erlich. 2017. “Interpreting short tandem repeat variations in humans using mutational constraint.” Nature genetics 49 (10): 1495-1501. doi:10.1038/ng.3952. http://dx.doi.org/10.1038/ng.3952.http://nrs.harvard.edu/urn-3:HUL.InstRepos:35982070Identifying regions of the genome that are depleted of mutations can reveal potentially deleterious variants. Short tandem repeats (STRs), also known as microsatellites, are among the largest contributors of de novo mutations in humans. However, per-locus studies of STR mutations have been limited to highly ascertained panels of several dozen loci. Here, we harnessed bioinformatics tools and a novel analytical framework to estimate mutation parameters for each STR in the human genome by correlating STR genotypes with local sequence heterozygosity. We applied our method to obtain robust estimates of the impact of local sequence features on mutation parameters and used this to create a framework for measuring constraint at STRs by comparing observed vs. expected mutation rates. Constraint scores identified known pathogenic variants with early onset effects. Our metric will provide a valuable tool for prioritizing pathogenic STRs in medical genetics studies.en-USInterpreting short tandem repeat variations in humans using mutational constraintJournal Article2018-04-1910.1038/ng.3952