Genome-wide identification of inter-individually variable DNA methylation sites improves the efficacy of epigenetic association studies
Tsuyoshi Hachiya(Iwate Medical University), Atsushi Shimizu(Keio University), Mamoru Satoh(Iwate Medical University), Kengo Kinoshita(Tohoku University), Kuniaki Ogasawara(Iwate Medical University), Masao Nagasaki(Kyushu University), Jiro Hitomi(Iwate Medical University), Jun Yasuda(Jikei University School of Medicine), Yuh Shiwa(Health Information Management), Kozo Tanno(Iwate Medical University), Kiyomi Sakata, Makoto Sasaki(Iwate Medical University), Seiichiro Kobayashi(Iwate Medical University), Masayuki Yamamoto(Tohoku University), Kanako Ono(Emory University), Ryujin Endo(Health Information Management), Ryohei Furukawa(Health Information Management), Fumiki Katsuoka(Tohoku University), Kenji Sobue(Iwate Medical University), Nobuo Fuse(Tohoku University)
Cited by 71
Related Papers
A cross-population atlas of genetic associations for 220 human phenotypes
|Nature Genetics|2021|2.4k
Nrf2 suppresses macrophage inflammatory response by blocking proinflammatory cytokine transcription
|Nature Communications|2016|1.8k
Nrf2 Redirects Glucose and Glutamine into Anabolic Pathways in Metabolic Reprogramming
|Cancer Cell|2012|1.4k
Activity and tissue-specific expression of the transcription factor NF-E1 multigene family.
|Genes & Development|1990|622