Prospective functional classification of all possible missense variants in PPARG.
| Authors | |
| Abstract | Clinical exome sequencing routinely identifies missense variants in disease-related genes, but functional characterization is rarely undertaken, leading to diagnostic uncertainty. For example, mutations in PPARG cause Mendelian lipodystrophy and increase risk of type 2 diabetes (T2D). Although approximately 1 in 500 people harbor missense variants in PPARG, most are of unknown consequence. To prospectively characterize PPARγ variants, we used highly parallel oligonucleotide synthesis to construct a library encoding all 9,595 possible single-amino acid substitutions. We developed a pooled functional assay in human macrophages, experimentally evaluated all protein variants, and used the experimental data to train a variant classifier by supervised machine learning. When applied to 55 new missense variants identified in population-based and clinical sequencing, the classifier annotated 6 variants as pathogenic; these were subsequently validated by single-variant assays. Saturation mutagenesis and prospective experimental characterization can support immediate diagnostic interpretation of newly discovered missense variants in disease-related genes. |
| Year of Publication | 2016
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| Journal | Nat Genet
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| Volume | 48
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| Issue | 12
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| Pages | 1570-1575
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| Date Published | 2016 Dec
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| ISSN | 1546-1718
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| DOI | 10.1038/ng.3700
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| PubMed ID | 27749844
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| PubMed Central ID | PMC5131844
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| Links | |
| Grant list | K08 DK102877 / DK / NIDDK NIH HHS / United States
KL2 TR001100 / TR / NCATS NIH HHS / United States
R01 DK097768 / DK / NIDDK NIH HHS / United States
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