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Kee-Woo Kim

Yonsei University · Medicine

About the Lab

Professor Kee-Woo Kim's research lab focuses on the central nervous system regulation of energy and metabolic homeostasis, with a particular emphasis on the hypothalamus—especially the ventromedial hypothalamic nucleus (VMH)—as a key integrative hub. The lab investigates transcription factors (e.g., SF-1, FOXO1), cellular organelles (e.g., primary cilia), and metabolic sensors (e.g., AMPK) that govern energy expenditure, thermogenesis, and glucose metabolism. Using conditional knockout mouse models and molecular analyses, the lab explores how these regulators in VMH neurons coordinate systemic metabolism and how their dysfunction contributes to obesity and diabetes. The work also extends to translational approaches, such as evaluating natural compounds (e.g., gallic acid) in improving metabolic and wound healing pathologies.

hypothalamic regulationenergy homeostasismetabolic syndromeprimary ciliatranscription factors

Research Overview

Papers
123
Total Citations
4,769
Papers (5y)
22
Primary Field
Medicine

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
22total
2022
2023
2024
2025
2026
Citations per year (5y)
344total
20222023202420252026

Selected Papers

15
1
Article|217 citations·2011
Steroidogenic factor 1 directs programs regulating diet-induced thermogenesis and leptin action in the ventral medial hypothalamic nucleus
Ki Woo Kim, Liping Zhao, José Donato, Daisuke Kohno, Yong Xu, Carol F. Elias, Charlotte Lee, Keith L. Parker, Joel K. Elmquist
SJR Q1Proceedings of the National Academy of SciencesOA

The transcription factor steroidogenic factor 1 (SF-1) is exclusively expressed in the brain in the ventral medial hypothalamic nucleus (VMH) and is required for the development of this nucleus. However, the physiological importance of transcriptional programs regulated by SF-1 in the VMH is not well defined. To delineate the functional significance of SF-1 itself in the brain, we generated pre- and postnatal VMH-specific SF-1 KO mice. Both models of VMH-specific SF-1 KO were susceptible to high

Endocrine and Autonomic SystemsNeuroscience
2
Article|212 citations·2016
Gallic Acid Promotes Wound Healing in Normal and Hyperglucidic Conditions
Donghwa Yang, Sang Hyun Moh, D.S. Son, Seunghoon You, Ann W. Kinyua, Chang Mann Ko, Mi‐Young Song, Jin-Hee Yeo, Yun‐Hee Choi, Ki Woo Kim
SJR Q1MoleculesOA

Skin is the outermost layer of the human body that is constantly exposed to environmental stressors, such as UV radiation and toxic chemicals, and is susceptible to mechanical wounding and injury. The ability of the skin to repair injuries is paramount for survival and it is disrupted in a spectrum of disorders leading to skin pathologies. Diabetic patients often suffer from chronic, impaired wound healing, which facilitate bacterial infections and necessitate amputation. Here, we studied the ef

RehabilitationMedicine
3
Article|137 citations·2012
FOXO1 in the ventromedial hypothalamus regulates energy balance
Ki Woo Kim, José Donato, Eric D. Berglund, Yun‐Hee Choi, Daisuke Kohno, Carol F. Elias, Ronald A. DePinho, Joel K. Elmquist
SJR Q1Journal of Clinical InvestigationOA

The transcription factor FOXO1 plays a central role in metabolic homeostasis by regulating leptin and insulin activity in many cell types, including neurons. However, the neurons mediating these effects and the identity of the molecular targets through which FOXO1 regulates metabolism remain to be defined. Here, we show that the ventral medial nucleus of the hypothalamus (VMH) is a key site of FOXO1 action. We found that mice lacking FOXO1 in steroidogenic factor 1 (SF-1) neurons of the VMH are

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Review|72 citations·2016
Hypothalamic AMPK as a Regulator of Energy Homeostasis
My Khanh Q. Huynh, Ann W. Kinyua, Dong Yang, Ki Woo Kim
SJR Q2Neural PlasticityOA

Activated in energy depletion conditions, AMP-activated protein kinase (AMPK) acts as a cellular energy sensor and regulator in both central nervous system and peripheral organs. Hypothalamic AMPK restores energy balance by promoting feeding behavior to increase energy intake, increasing glucose production, and reducing thermogenesis to decrease energy output. Besides energy state, many hormones have been shown to act in concert with AMPK to mediate their anorexigenic and orexigenic central effe

Endocrine and Autonomic SystemsNeuroscience
5
Review|72 citations·2010
SF-1 in the ventral medial hypothalamic nucleus: A key regulator of homeostasis
Ki Woo Kim, Jong‐Woo Sohn, Daisuke Kohno, Yong Xu, Kevin W. Williams, Joel K. Elmquist
SJR Q1Molecular and Cellular Endocrinology
Endocrine and Autonomic SystemsNeuroscience
6
Review|69 citations·2014
Leptin and insulin signaling in dopaminergic neurons: relationship between energy balance and reward system
Doan V. Khanh, Yun‐Hee Choi, Sang Hyun Moh, Ann W. Kinyua, Ki Woo Kim
SJR Q2Frontiers in PsychologyOA

The central actions of leptin and insulin are essential for the regulation of energy and glucose homeostasis. In addition to the crucial effects on the hypothalamus, emerging evidence suggests that the leptin and insulin signaling can act on other brain regions to mediate the reward value of nutrients. Recent studies have indicated the midbrain dopaminergic neurons as a potential site for leptin' and insulin's actions on mediating the feeding behaviors and therefore affecting the energy balance.

Endocrine and Autonomic SystemsNeuroscience
7
Article|63 citations·2020
Ventromedial hypothalamic primary cilia control energy and skeletal homeostasis
Ji Su Sun, Dong Yang, Ann W. Kinyua, Seul Gi Yoon, Je Kyung Seong, Ju-Won Kim, Seok Jun Moon, Dong Min Shin, Yun‐Hee Choi, Ki Woo Kim
SJR Q1Journal of Clinical InvestigationOA

Dysfunction of primary cilia is related to dyshomeostasis, leading to a wide range of disorders. The ventromedial hypothalamus (VMH) is known to regulate several homeostatic processes, but those modulated specifically by VMH primary cilia are not yet known. In this study, we identify VMH primary cilia as an important organelle that maintains energy and skeletal homeostasis by modulating the autonomic nervous system. We established loss-of-function models of primary cilia in the VMH by either tar

GeneticsBiochemistry, Genetics and Molecular Biology
8
Article|56 citations·2015
Mycosporine-Like Amino Acids Promote Wound Healing through Focal Adhesion Kinase (FAK) and Mitogen-Activated Protein Kinases (MAP Kinases) Signaling Pathway in Keratinocytes
Yun‐Hee Choi, Donghwa Yang, Atul Kulkarni, Sang Hyun Moh, Ki Woo Kim
SJR Q1Marine DrugsOA

Mycosporine-like amino acids (MAAs) are secondary metabolites found in diverse marine, freshwater, and terrestrial organisms. Evidence suggests that MAAs have several beneficial effects on skin homeostasis such as protection against UV radiation and reactive oxygen species (ROS). In addition, MAAs are also involved in the modulation of skin fibroblasts proliferation. However, the regulatory function of MAAs on wound repair in human skin is not yet clearly elucidated. To investigate the roles of

Ecology, Evolution, Behavior and SystematicsAgricultural and Biological Sciences
9
Article|55 citations·2016
FoxO1 in dopaminergic neurons regulates energy homeostasis and targets tyrosine hydroxylase
Khanh V. Doan, Ann W. Kinyua, Dong Yang, Chang Mann Ko, Sang Hyun Moh, Ko Eun Shong, Hail Kim, Sang-Kyu Park, Dong Hoon Kim, Inki Kim, Ji-Hye Paik, Ronald A. DePinho
SJR Q1Nature CommunicationsOA

Abstract Dopaminergic (DA) neurons are involved in the integration of neuronal and hormonal signals to regulate food consumption and energy balance. Forkhead transcriptional factor O1 (FoxO1) in the hypothalamus plays a crucial role in mediation of leptin and insulin function. However, the homoeostatic role of FoxO1 in DA system has not been investigated. Here we report that FoxO1 is highly expressed in DA neurons and mice lacking FoxO1 specifically in the DA neurons (FoxO1 KO DAT ) show markedl

PhysiologyMedicine
10
Article|45 citations·2010
CNS-Specific Ablation of Steroidogenic Factor 1 Results in Impaired Female Reproductive Function
Ki Woo Kim, Li Shen, Hongyu Zhao, Boya Peng, Stuart Tobet, Joel K. Elmquist, Keith L. Parker, Liping Zhao
Molecular EndocrinologyOA

The ventromedial hypothalamic nucleus (VMH) regulates a variety of homeostatic processes including female sexual behavior and reproduction. In the current study, we assessed the roles of steroidogenic factor 1 (SF-1) on reproductive function in the VMH using central nervous system-specific SF-1 knockout (SF-1 KO(nCre;F/-)) mice. Here we show that SF-1 KO(nCre;F/-) females exhibited marked impairment in female reproduction. Although male mice appeared to be normal in all aspects studied, includin

Reproductive MedicineMedicine
11
Review|42 citations·2008
Central nervous system-specific knockout of steroidogenic factor 1
Ki Woo Kim, Liping Zhao, Keith L. Parker
SJR Q1Molecular and Cellular Endocrinology
GeneticsBiochemistry, Genetics and Molecular Biology
12
Article|37 citations·2018
Insulin Regulates Adrenal Steroidogenesis by Stabilizing SF-1 Activity
Ann W. Kinyua, Khanh V. Doan, Dong Yang, My Khanh Q. Huynh, Yun‐Hee Choi, Dong Min Shin, Ki Woo Kim
SJR Q1Scientific ReportsOA

Development of metabolic syndrome is associated with hyperactivity of the HPA axis characterized by elevated levels of circulating adrenal hormones including cortisol and aldosterone. However, the molecular mechanism leading to the dysregulation of the HPA axis is not well elucidated. In this study, we found that insulin regulates adrenal steroidogenesis by increasing the expression and activity of steroidogenic factor 1 (SF-1) both in vitro and in vivo and this insulin effect was partly through

Endocrinology, Diabetes and MetabolismMedicine
13
Article|36 citations·2008
Steroidogenic Factor 1 Regulates Expression of the Cannabinoid Receptor 1 in the Ventromedial Hypothalamic Nucleus
Ki Woo Kim, Young‐Hwan Jo, Liping Zhao, Nancy R. Stallings, Streamson C. Chua, Keith L. Parker
Molecular EndocrinologyOA

The nuclear receptor steroidogenic factor 1 (SF-1) plays essential roles in the development and function of the ventromedial hypothalamic nucleus (VMH). Considerable evidence links the VMH and SF-1 with the regulation of energy homeostasis. Here, we demonstrate that SF-1 colocalizes in VMH neurons with the cannabinoid receptor 1 (CB1R) and that a specific CB1R agonist modulates electrical activity of SF-1 neurons in hypothalamic slice preparations. We further show that SF-1 directly regulates CB

PharmacologyMedicine
14
Article|27 citations·2023
Mitochondria-derived peptide SHLP2 regulates energy homeostasis through the activation of hypothalamic neurons
Seul Ki Kim, Trung Le Tran, Cherl NamKoong, Hyung Jin Choi, Hye Jin Chun, Yong‐ho Lee, Myunghyun Cheon, ChiHye Chung, Junmo Hwang, Hyun–Ho Lim, Dong Min Shin, Yun‐Hee Choi
SJR Q1Nature CommunicationsOA

Small humanin-like peptide 2 (SHLP2) is a mitochondrial-derived peptide implicated in several biological processes such as aging and oxidative stress. However, its functional role in the regulation of energy homeostasis remains unclear, and its corresponding receptor is not identified. Hereby, we demonstrate that both systemic and intracerebroventricular (ICV) administrations of SHLP2 protected the male mice from high-fat diet (HFD)-induced obesity and improved insulin sensitivity. In addition,

RheumatologyMedicine
15
Article|26 citations·2001
Inactivation of farnesyltransferase and geranylgeranyltransferase I by caspase-3: Cleavage of the common α subunit during apoptosis
Ki Woo Kim, Hyun-Ho Chung, Chul-Woong Chung, In-Ki Kim, Masayuki Miura, Suyue Wang, Hong Zhu, Kyung-Duk Moon, Geun-Bae Rha, Jy-Hyun Park, Dong‐Gyu Jo, Ha‐Na Woo
SJR Q1Oncogene
Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyEndocrine and Autonomic SystemsPhysiologyGeneticsPharmacologyEpidemiology

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