Sungkyunkwan University · Medicine
Professor Dong Hoon Kim's research lab focuses on epigenetic regulation, particularly the role of histone deacetylases (HDACs) in cancer development and metabolic diseases. The lab investigates the molecular mechanisms of HDAC inhibitors, such as psammaplin derivatives, to understand their anti-tumor and anti-angiogenic effects. A key research direction involves exploring the epigenetic and cellular consequences of histone acetylation dynamics in carcinogenesis and adipose tissue biology. The lab also examines the broader functions of HAT/HDAC enzymes beyond gene expression, including their roles in cell cycle regulation and cytoskeletal organization.
Figures are computed from collected data and may differ slightly.
The acetylation state of histone is reversibly regulated by histone acetyltransferase (HAT) and deacetylase (HDAC). An imbalance of this reaction leads to an aberrant behavior of the cells in morphology, cell cycle, differentiation, and carcinogenesis. Recently, these key enzymes in the gene expression were cloned. They revealed a broad use of this modification, not only in histone, but also other proteins that involved transcription, nuclear transport, and cytoskeleton. These results suggest th
Histone deacetylase (HDAC) has been highlighted as one of key players in tumorigenesis and angiogenesis. Recently, several derivatives of psammaplin (Psams) from a marine sponge have been known to inhibit the HDAC activity, but the molecular mechanism for the inhibition has not fully understood. Here, we explored the mode of action of Psams for the inhibition of HDAC activity in the molecular and cellular level. Among the derivatives, psammaplin A (Psam A) showed the potent inhibitory activity i
A serum lactate level > 2.6 mmol/L predicted 30-day in-hospital mortality in unselected patients who arrived to the ED and were admitted to the hospital. Additionally, serum lactate test in the ED could be an effective screening method for identifying low risk patients.
These results suggest depot-specific differences in AT angiogenesis and a potential role in the susceptibility to diet-induced obesity.
Purpose: Cell cycle progression is regulated by interactions of specific cyclins and cyclin dependent kinases (CDKs) at the G1-S and G2-M checkpoints and cell cycle deregulation plays a major role in carcinogenesis of human cancers. Patients and Methods: To investigate the role of cell cycle regulators in the pathogenesis and progression of human gastric cancers, 23 cases of gastric carcinomas were examined for the expression of cyclin B1, p34cdc2, p27Kip1 and p53 by immunohistochemical methods,
A ground-breaking investigation into the film culture of colonial KoreaIn this pioneering investigation into the seldom-studied film culture of colonial Korea (1910-1945), Dong Hoon Kim brings new perspectives to the associations between colonialism, modernity, film historiography and national cinema. By reconstructing the lost intricacies of colonial film history, Eclipsed Cinema explores under-investigated aspects of colonial film culture, such as the representational politics of colonial cine
Administration of metformin is known to reduce both body weight and food intake. Although the hypothalamus is recognized as a critical regulator of energy balance and body weight, there is currently no evidence for an effect of metformin in the hypothalamus. Therefore, we sought to determine the central action of metformin on energy balance and body weight, as well as its potential involvement with key hypothalamic energy sensors, including adenosine monophosphate-activated protein kinase (AMPK)
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