[No authors listed]
Although Huntington's disease (HD) is a well studied Mendelian genetic disorder, less is known about its associated epigenetic changes. Here, we characterize DNA methylation levels in six different tissues from 3 species: a mouse huntingtin (Htt) gene knock-in model, a transgenic HTT sheep model, and humans. Our epigenome-wide association study (EWAS) of human blood reveals that HD mutation status is significantly (pâ<â10-7) associated with 33 CpG sites, including the HTT gene (pâ=â6.5âÃâ10-26). These Htt/HTT associations were replicated in the Q175 Htt knock-in mouse model (pâ=â6.0âÃâ10-8) and in the transgenic sheep model (pâ=â2.4âÃâ10-88). We define a measure of HD motor score progression among manifest HD cases based on multiple clinical assessments. EWAS of motor progression in manifest HD cases exhibits significant (pâ<â10-7) associations with methylation levels at three loci: near PEX14 (pâ=â9.3âÃâ10-9), GRIK4 (pâ=â3.0âÃâ10-8), and COX4I2 (pâ=â6.5âÃâ10-8). We conclude that HD is accompanied by profound changes of DNA methylation levels in three mammalian species.
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