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Research
Latest papers
Scikick: A sidekick for workflow clarity and reproducibility during extensive data analysis.
PloS one · 2023 · senior author
DiscoRhythm: an easy-to-use web application and R package for discovering rhythmicity.
Bioinformatics (Oxford, England) · 2019 · senior author
Epigenetic dysregulation of enhancers in neurons is associated with Alzheimer's disease pathology and cognitive symptoms.
Nature communications · 2019
Latest funding
- $100,000
Investigating the role of accelerated neuronal aging in a mouse model of Huntington's disease from a circadian epigenomic perspective.
CIHR · 2020 · Nominated PI
- $1,499,850
Circadian epigenomic biomarkers for predicting bipolar disorder in high-risk youth
CIHR · 2018 · Principal investigator
- $598,981
Genetic-epigenetic interactions in lactase non-persistence
CIHR · 2017 · Co-investigator
16 publications.
Scikick: A sidekick for workflow clarity and reproducibility during extensive data analysis.
Carlucci M, Bareikis T, Koncevičius K, Gibas P, Kriščiūnas A, Petronis A, Oh G
DiscoRhythm: an easy-to-use web application and R package for discovering rhythmicity.
Carlucci M, Kriščiūnas A, Li H, Gibas P, Koncevičius K, Petronis A, Oh G
Epigenetic dysregulation of enhancers in neurons is associated with Alzheimer's disease pathology and cognitive symptoms.
Li P, Marshall L, Oh G, Jakubowski JL, Groot D, He Y, Wang T, Petronis A, Labrie V
Circadian oscillations of cytosine modification in humans contribute to epigenetic variability, aging, and complex disease.
Oh G, Koncevičius K, Ebrahimi S, Carlucci M, Groot DE, Nair A, Zhang A, Kriščiūnas A, Oh ES, Labrie V, Wong AHC, Gordevičius J, Jia P, Susic M, Petronis A
Cell-Free DNA Modification Dynamics in Abiraterone Acetate-Treated Prostate Cancer Patients.
Gordevičius J, Kriščiūnas A, Groot DE, Yip SM, Susic M, Kwan A, Kustra R, Joshua AM, Chi KN, Petronis A, Oh G
Inhibition of the G9a/GLP histone methyltransferase complex modulates anxiety-related behavior in mice.
Wang DY, Kosowan J, Samsom J, Leung L, Zhang KL, Li YX, Xiong Y, Jin J, Petronis A, Oh G, Wong AHC
Cytosine modifications exhibit circadian oscillations that are involved in epigenetic diversity and aging.
Oh G, Ebrahimi S, Carlucci M, Zhang A, Nair A, Groot DE, Labrie V, Jia P, Oh ES, Jeremian RH, Susic M, Shrestha TC, Ralph MR, Gordevičius J, Koncevičius K, Petronis A
Transcriptional heterogeneity in the lactase gene within cell-type is linked to the epigenome.
Oh E, Jeremian R, Oh G, Groot D, Susic M, Lee K, Foy K, Laird PW, Petronis A, Labrie V
Lactase nonpersistence is directed by DNA-variation-dependent epigenetic aging.
Labrie V, Buske OJ, Oh E, Jeremian R, Ptak C, Gasiūnas G, Maleckas A, Petereit R, Žvirbliene A, Adamonis K, Kriukienė E, Koncevičius K, Gordevičius J, Nair A, Zhang A, Ebrahimi S, Oh G, Šikšnys V, Kupčinskas L, Brudno M, Petronis A
Allele-Skewed DNA Modification in the Brain: Relevance to a Schizophrenia GWAS.
Gagliano SA, Ptak C, Mak DYF, Shamsi M, Oh G, Knight J, Boutros PC, Petronis A
Investigating the role of accelerated neuronal aging in a mouse model of Huntington's disease from a circadian epigenomic perspective.
Principal investigators: Oh, Gabriel Hyun Ta; Petronis, Arturas
Keywords: Circadian Epigenomics; Epigenetic Aging; Huntington'S Disease
Circadian epigenomic biomarkers for predicting bipolar disorder in high-risk youth
Principal investigators: Petronis, Arturas; Duffy, Anne C; Oh, Gabriel Hyun Ta; Wong, Albert H
Keywords: Bipolar Disorder; Circadian; Dna Modification; Epigenetics; Etiology; Precision Medicine; Prediction; Psychiatry
Genetic-epigenetic interactions in lactase non-persistence
Principal investigators: Petronis, Arturas
Keywords: Aging; Disease Models; Dna; Dna Modification; Epigenetics; Lactase Gene; Sequencing
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
- Neurosciences
- Department of Psychiatry
- Computer Science
- Biostatistics Division
Co-authors at University of Toronto, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
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