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Yu-Kyong Shin

Kyung Hee University · 医学

研究室紹介

Professor Yu-Kyong Shin's research lab focuses on the molecular mechanisms underlying metabolic regulation, with a central emphasis on the roles of sirtuins, incretin hormones (such as GLP-1 and GIP), and nutrient-sensing receptors in metabolism, aging, and type 2 diabetes. The lab investigates how these pathways modulate insulin sensitivity, energy homeostasis, and β-cell function in both rodent models and nonhuman primates, particularly in the context of Western-style diets. A key research direction involves understanding the interplay between taste perception, gut hormone secretion, and metabolic health, highlighting the gut-brain axis in metabolic regulation. The lab also explores conserved signaling pathways, such as mTORC1 and transcription factors, in lipid metabolism and cellular adaptation to metabolic stress.

metabolic regulationincretin hormonessirtuinstype 2 diabetesgut-brain axis

Research Overview

Papers
63
Total Citations
2,786
Papers (5y)
16
Primary Field
医学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
16total
2021
2022
2023
2024
2025
Citations per year (5y)
197total
20212022202320242025

Selected Papers

15
1
Article|290 citations·2011
SRT1720 improves survival and healthspan of obese mice
Robin K. Minor, Joseph A. Baur, Ana P. Gomes, Theresa M. Ward, Anna Csiszár, Evi M. Mercken, Kotb Abdelmohsen, Yu‐Kyong Shin, Carles Cantó, Morten Scheibye‐Knudsen, Melissa Krawczyk, Pablo M. Irusta
SJR Q1Scientific ReportsOA

Sirt1 is an NAD(+)-dependent deacetylase that extends lifespan in lower organisms and improves metabolism and delays the onset of age-related diseases in mammals. Here we show that SRT1720, a synthetic compound that was identified for its ability to activate Sirt1 in vitro, extends both mean and maximum lifespan of adult mice fed a high-fat diet. This lifespan extension is accompanied by health benefits including reduced liver steatosis, increased insulin sensitivity, enhanced locomotor activity

Geriatrics and GerontologyMedicine
2
Article|279 citations·2008
Bitter Taste Receptors Influence Glucose Homeostasis
Cedrick D. Dotson, Lan Zhang, Hong Xu, Yu‐Kyong Shin, Stéphan Vigues, Sandra Ott, Amanda E. T. Elson, Hyun Jin Choi, Hillary L. Shaw, Josephine M. Egan, Braxton D. Mitchell, Xiaodong Li
SJR Q1PLoS ONEOA

TAS1R- and TAS2R-type taste receptors are expressed in the gustatory system, where they detect sweet- and bitter-tasting stimuli, respectively. These receptors are also expressed in subsets of cells within the mammalian gastrointestinal tract, where they mediate nutrient assimilation and endocrine responses. For example, sweeteners stimulate taste receptors on the surface of gut enteroendocrine L cells to elicit an increase in intracellular Ca(2+) and secretion of the incretin hormone glucagon-l

Nutrition and DieteticsNursing
3
Article|279 citations·2008
Modulation of taste sensitivity by GLP‐1 signaling
Yu‐Kyong Shin, Bronwen Martin, Erin Golden, Cedrick D. Dotson, Stuart Maudsley, Wook Kim, Hyeung-Jin Jang, Mark P. Mattson, Daniel J. Drucker, Josephine M. Egan, Steven D. Munger
SJR Q1Journal of NeurochemistryOA

In many sensory systems, stimulus sensitivity is dynamically modulated through mechanisms of peripheral adaptation, efferent input, or hormonal action. In this way, responses to sensory stimuli can be optimized in the context of both the environment and the physiological state of the animal. Although the gustatory system critically influences food preference, food intake and metabolic homeostasis, the mechanisms for modulating taste sensitivity are poorly understood. In this study, we report tha

Nutrition and DieteticsNursing
4
Article|170 citations·2009
Exogenous Glucose–Dependent Insulinotropic Polypeptide Worsens Post prandial Hyperglycemia in T ype 2 Diabetes
Chee W. Chia, Olga D. Carlson, Wook Kim, Yu‐Kyong Shin, Cornelia P. Charles, Hee Seung Kim, Denise Melvin, Josephine M. Egan
SJR Q1DiabetesOA

OBJECTIVE: Glucose-dependent insulinotropic polypeptide (GIP), unlike glucagon-like peptide (GLP)-1, lacks glucose-lowering properties in patients with type 2 diabetes. We designed this study to elucidate the underlying pathophysiology. RESEARCH DESIGN AND METHODS: Twenty-two insulin-naïve subjects with type 2 diabetes were given either synthetic human GIP (20 ng x kg(-1) x min(-1)) or placebo (normal saline) over 180 min, starting with the first bite of a mixed meal (plus 1 g of acetaminophen)

Endocrinology, Diabetes and MetabolismMedicine
5
Article|168 citations·2013
Insulin Inhibits Lipolysis in Adipocytes via the Evolutionarily Conserved mTORC1-Egr1-ATGL-Mediated Pathway
Partha Chakrabarti, Ju Youn Kim, Maneet Singh, Yu‐Kyong Shin, Jessica Kim, Joerg Kumbrink, Yuanyuan Wu, Mi‐Jeong Lee, Kathrin H. Kirsch, Susan K. Fried, Konstantin V. Kandror
SJR Q2Molecular and Cellular BiologyOA

One of the basic functions of insulin in the body is to inhibit lipolysis in adipocytes. Recently, we have found that insulin inhibits lipolysis and promotes triglyceride storage by decreasing transcription of adipose triglyceride lipase via the mTORC1-mediated pathway (P. Chakrabarti et al., Diabetes 59:775-781, 2010), although the mechanism of this effect remained unknown. Here, we used a genetic screen in Saccharomyces cerevisiae in order to identify a transcription factor that mediates the e

BiochemistryBiochemistry, Genetics and Molecular Biology
6
Article|137 citations·2013
Resveratrol Prevents β-Cell Dedifferentiation in Nonhuman Primates Given a High-Fat/High-Sugar Diet
Jennifer L. Fiori, Yu‐Kyong Shin, Wook Kim, Susan M. Krzysik-Walker, Isabel González‐Mariscal, Olga D. Carlson, Mitesh Sanghvi, Ruin Moaddel, Kathleen Farhang, Shekhar K. Gadkaree, Maı̀re E. Doyle, Kevin J. Pearson
SJR Q1DiabetesOA

Eating a "Westernized" diet high in fat and sugar leads to weight gain and numerous health problems, including the development of type 2 diabetes mellitus (T2DM). Rodent studies have shown that resveratrol supplementation reduces blood glucose levels, preserves β-cells in islets of Langerhans, and improves insulin action. Although rodent models are helpful for understanding β-cell biology and certain aspects of T2DM pathology, they fail to reproduce the complexity of the human disease as well as

SurgeryMedicine
7
Article|127 citations·2009
Modulation of Taste Sensitivity by GLP‐1 Signaling in Taste Buds
Bronwen Martin, Cedrick D. Dotson, Yu‐Kyong Shin, Sunggoan Ji, Daniel J. Drucker, Stuart Maudsley, Steven D. Munger
SJR Q1Annals of the New York Academy of SciencesOA

Modulation of sensory function can help animals adjust to a changing external and internal environment. Even so, mechanisms for modulating taste sensitivity are poorly understood. Using immunohistochemical, biochemical, and behavioral approaches, we found that the peptide hormone glucagon-like peptide-1 (GLP-1) and its receptor (GLP-1R) are expressed in mammalian taste buds. Furthermore, we found that GLP-1 signaling plays an important role in the modulation of taste sensitivity: GLP-1R knockout

Nutrition and DieteticsNursing
8
Article|124 citations·2011
Cannabinoids Inhibit Insulin Receptor Signaling in Pancreatic β-Cells
Wook Kim, Maı̀re E. Doyle, Zhuo Liu, Qizong Lao, Yu‐Kyong Shin, Olga D. Carlson, Hee Seung Kim, Sam Thomas, Joshua K. Napora, Eun Kyung Lee, Ruin Moaddel, Yan Wang
SJR Q1DiabetesOA

OBJECTIVE: Optimal glucose homeostasis requires exquisitely precise adaptation of the number of insulin-secreting β-cells in the islets of Langerhans. Insulin itself positively regulates β-cell proliferation in an autocrine manner through the insulin receptor (IR) signaling pathway. It is now coming to light that cannabinoid 1 receptor (CB1R) agonism/antagonism influences insulin action in insulin-sensitive tissues. However, the cells on which the CB1Rs are expressed and their function in islets

SurgeryMedicine
9
Article|106 citations·2010
Vasoactive Intestinal Peptide–Null Mice Demonstrate Enhanced Sweet Taste Preference, Dysglycemia, and Reduced Taste Bud Leptin Receptor Expression
Bronwen Martin, Yu‐Kyong Shin, Caitlin M. White, Sunggoan Ji, Wook Kim, Olga D. Carlson, Joshua K. Napora, Wayne Chadwick, Megan C. Chapter, James A. Waschek, Mark P. Mattson, Stuart Maudsley
SJR Q1DiabetesOA

OBJECTIVE: It is becoming apparent that there is a strong link between taste perception and energy homeostasis. Recent evidence implicates gut-related hormones in taste perception, including glucagon-like peptide 1 and vasoactive intestinal peptide (VIP). We used VIP knockout mice to investigate VIP's specific role in taste perception and connection to energy regulation. RESEARCH DESIGN AND METHODS: Body weight, food intake, and plasma levels of multiple energy-regulating hormones were measured

Nutrition and DieteticsNursing
10
Article|105 citations·2010
Ghrelin Is Produced in Taste Cells and Ghrelin Receptor Null Mice Show Reduced Taste Responsivity to Salty (NaCl) and Sour (Citric Acid) Tastants
Yu‐Kyong Shin, Bronwen Martin, Wook Kim, Caitlin M. White, Sunggoan Ji, Yuxiang Sun, Roy G. Smith, Jean Sévigny, Matthias H. Tschöp, Stuart Maudsley, Josephine M. Egan
SJR Q1PLoS ONEOA

BACKGROUND: The gustatory system plays a critical role in determining food preferences, food intake and energy balance. The exact mechanisms that fine tune taste sensitivity are currently poorly defined, but it is clear that numerous factors such as efferent input and specific signal transduction cascades are involved. METHODOLOGY/PRINCIPAL FINDINGS: Using immunohistochemical analyses, we show that ghrelin, a hormone classically considered to be an appetite-regulating hormone, is present within

Nutrition and DieteticsNursing
11
Article|71 citations·2011
Age-Related Changes in Mouse Taste Bud Morphology, Hormone Expression, and Taste Responsivity
Yu‐Kyong Shin, Wei‐na Cong, Huan Cai, Wook Kim, Stuart Maudsley, Josephine M. Egan, Bronwen Martin
SJR Q1The Journals of Gerontology Series AOA

Normal aging is a complex process that affects every organ system in the body, including the taste system. Thus, we investigated the effects of the normal aging process on taste bud morphology, function, and taste responsivity in male mice at 2, 10, and 18 months of age. The 18-month-old animals demonstrated a significant reduction in taste bud size and number of taste cells per bud compared with the 2- and 10-month-old animals. The 18-month-old animals exhibited a significant reduction of prote

Nutrition and DieteticsNursing
12
Article|37 citations·2006
Proteomic analysis of mammalian basic proteins by liquid‐based two‐dimensional column chromatography
Yu‐Kyong Shin, Hyoungjoo Lee, Joonseok Lee, Young‐Ki Paik
SJR Q2PROTEOMICS

To develop a standard method for separating highly basic proteins in mammalian cells, we established a 2-D LC separation system coupled with chromatofocusing/nonporous RP column chromatography (CF/NPRPC) in a ProteomeLab PF2D system. After standardizing conditions for 2-D LC, a 2-D liquid protein map of uninfected macrophage proteins with pH range 8.3-11.3 was constructed, and then compared with a macrophage protein map made after infection with Candida albicans. The results demonstrate that 2-D

ImmunologyImmunology and Microbiology
13
Article|23 citations·2021
The Protective Effect of Adenocaulon himalaicum Edgew. and Its Bioactive Compound Neochlorogenic Acid against UVB-Induced Skin Damage in Human Dermal Fibroblasts and Epidermal Keratinocytes
Hye Shin Ahn, Hyun Jae Kim, Changseon Na, Dae Sik Jang, Yu‐Kyong Shin, Sun Hee Lee
SJR Q1PlantsOA

Skin aging induced by ultraviolet (UV) irradiation increases expression of matrix metalloproteinase-1 (MMP-1) and destroys collagen fibers, as a result accelerating wrinkle formation. Natural products have been received scientific attention as utilized agents against photoaging. The aim of this study was to investigate the protective effect of Adenocaulon himalaicum Edgew. extract (AHE) against ultraviolet B (UVB)-induced skin damage, and to explain the underlying mechanisms in human dermal fibr

DermatologyMedicine
14
Review|18 citations·2010
Roles of Hormones in Taste Signaling
Yu‐Kyong Shin, Josephine M. Egan
Results and problems in cell differentiationOA
Nutrition and DieteticsNursing
15
Article|17 citations·2016
Macelignan inhibits bee pathogenic fungi Ascophaera apis growth through HOG1 pathway
Yu‐Kyong Shin, K.Y. Kim
SJR Q2Brazilian Journal of Medical and Biological ResearchOA

Ascosphaera apis is a bee pathogen that causes bee larvae infection disease, to which treatment is not yet well investigated. The aim of this study was to investigate antifungal susceptibility in vitro against A. apis and to identify a new antifungal agent for this pathogen through minimal inhibitory concentration (MIC) assay and western blot analysis. Macelignan had 1.56 and 3.125 μg/mL MIC against A. apis after 24 and 48 h, respectively, exhibiting the strongest growth inhibition against A. ap

Food ScienceAgricultural and Biological Sciences

Research Areas

Nutrition and DieteticsSurgeryMolecular BiologyDermatologyPhysiologyFood Science

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