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Science Advances|May 27, 2021
BRD4 methylation by the methyltransferase SETD6 regulates selective transcription to control mRNA translationZlata Vershinin, Michal Feldman, Thilo Werner, et al.Cancer Research|November 29, 2017
Utility of Single-Cell Genomics in Diagnostic Evaluation of Prostate CancerJoan Alexander, Jude Kendall, Jean McIndoo, et al.American Journal of Human Genetics|August 7, 2012
Rare de novo germline copy-number variation in testicular cancerZsofia K Stadler, Diane Esposito, Sohela Shah, et al.Molecular Oncology|December 21, 2010
DNA methylation patterns in luminal breast cancers differ from non-luminal subtypes and can identify relapse risk independent of other clinical variablesSitharthan Kamalakaran, Vinay Varadan, Hege E Giercksky Russnes, et al.Nature Immunology|December 7, 2010
Lysine methylation of the NF-κB subunit RelA by SETD6 couples activity of the histone methyltransferase GLP at chromatin to tonic repression of NF-κB signalingDan Levy, Alex J Kuo, Yanqi Chang, et al.Current Drug Abuse Reviews|August 18, 2010
The alcohol hangover research group consensus statement on best practice in alcohol hangover researchJoris C Verster, Richard Stephens, Renske Penning, et al.Epigenomics|September 9, 2020
Methylome-wide association study of central adiposity implicates genes involved in immune and endocrine systemsAnne E Justice, Geetha Chittoor, Rahul Gondalia, et al.Neuron|May 1, 2012
De novo gene disruptions in children on the autistic spectrumIvan Iossifov, Michael Ronemus, Dan Levy, et al.Nature|November 4, 2014
The contribution of de novo coding mutations to autism spectrum disorderIvan Iossifov, Brian J O'Roak, Stephan J Sanders, et al.Nature Methods|December 31, 2025
cellSTAAR: incorporating single-cell-sequencing-based functional data to boost power in rare variant association testing of noncoding regionsEric Van Buren, Yi Zhang, Xihao Li, et al.Pageof 17