Jaeseok No
Yonsei University · Medicine
About the Lab
Professor Jaeseok No's research lab specializes in molecular and translational epigenetics, focusing on the role of epigenetic regulators—particularly histone lysine demethylases (KDMs)—in cancer biology and disease progression. The lab investigates the molecular mechanisms underlying epigenetic modifications in cancer initiation and maintenance, with an emphasis on identifying novel therapeutic targets. Additionally, the lab explores neurobiological and occupational health impacts, including limbic system atrophy and stress-related biomarkers in high-risk professions, as well as the anticancer mechanisms of marine natural products such as callyspongiolide. These interdisciplinary efforts bridge epigenetics, cancer therapeutics, and environmental health.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
4Epigenetic regulators, known as “writers,” erasers,” and “readers,” are essential for controlling gene expression by adding, removing, or recognizing post-translational modifications to histone tails, respectively. These regulators significantly affect genes involved in cancer initiation and maintenance. Recently, several clinical strategies targeting these epigenetic enzymes have emerged and some trials have demonstrated promising results for cancer treatment. Histone lysine demethylases (KDMs)
No accurate method to detect thyroid microsomal (MC) antibody (Ab) in serum has been generalized. In this study, the titer of MC Ab obtained by the method of MC autoantibody particle agglutination (MCPA) was analyzed by enzyme linked immunosorbent assay (ELISA). MC and thyroglobulin (Tg) were prepared from Graves' thyroid. ELISA was done by coating the plate with MC, adding Tg to buffer and using peroxidase-conjugated anti-h IgG. 1) The titer of MCPA correlated with the MC Ab ELISA index in seru
TPS 792: Occupational health 2, Exhibition Hall, Ground floor, August 27, 2019, 3:00 PM - 4:30 PM Introduction: The limbic system is an anatomical structure that plays a pivotal role in motivation, emotion, learning and memory. Firefighters are chronically exposed to violence, trauma and other threats. They are also constantly exposed to a variety of environmental hazardous substances. This study focused on the association of limbic system atrophy and salivary cortisone known as stress hormone.
Callyspongiolide is a marine macrolide known to induce caspaseindependent cancer cell death. While its toxic effects have been known, the mechanism leading to cell death is yet to be identified. We report that Callyspongiolide R form at C-21 (cally2R) causes mitochondrial dysfunction by inhibiting mitochondrial complex I or II, leading to a disruption of mitochondrial membrane potential and a deprivation of cellular energy. Subsequently, we observed, using electron microscopy, a drastic formatio
Research Areas
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