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Yun-sil Lee

Ewha Womans University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Yun-sil Lee's research lab focuses on molecular mechanisms underlying radiation-induced tissue injury, particularly in the lung and reproductive system, with an emphasis on identifying therapeutic targets for fibrosis and radiation protection. The lab investigates stress response proteins such as HSP27 and growth regulatory factors like myostatin and GDF-11 in the context of cancer, muscle atrophy, and fibrotic diseases. Using preclinical models, including genetically modified mice and in vitro systems, the lab explores signaling pathways involved in epithelial-mesenchymal transition, fibroblast activation, and spermatogenesis under electromagnetic field exposure. Their work aims to translate basic findings into novel therapeutic strategies for radiation injury, fibrosis, and muscle-wasting disorders.

radiation-induced fibrosismyostatin signalingHSP27testicular functionEMF exposure

Research Overview

Papers
204
Total Citations
10,507
Papers (5y)
29
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
29total
2021
2022
2023
2024
2025
Citations per year (5y)
296total
20212022202320242025

Selected Papers

15
1
Review|130 citations·2019
Targeting Heat Shock Protein 27 in Cancer: A Druggable Target for Cancer Treatment?
Seul-Ki Choi, Heejin Kam, Kye-Young Kim, Suk In Park, Yun‐Sil Lee
SJR Q1CancersOA

Heat shock protein 27 (HSP27), induced by heat shock, environmental, and pathophysiological stressors, is a multi-functional protein that acts as a protein chaperone and an antioxidant. HSP27 plays a significant role in the inhibition of apoptosis and actin cytoskeletal remodeling. HSP27 is upregulated in many cancers and is associated with a poor prognosis, as well as treatment resistance, whereby cells are protected from therapeutic agents that normally induce apoptosis. This review highlights

Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Review|111 citations·2020
Radiation-Induced Lung Fibrosis: Preclinical Animal Models and Therapeutic Strategies
Hee Kyung Jin, Youngjo Yoo, Young-Hwa Kim, Yeijin Kim, Jaeho Cho, Yun‐Sil Lee
SJR Q1CancersOA

Radiation-induced lung injury (RILI), including acute radiation pneumonitis and chronic radiation-induced lung fibrosis, is the most common side effect of radiation therapy. RILI is a complicated process that causes the accumulation, proliferation, and differentiation of fibroblasts and, finally, results in excessive extracellular matrix deposition. Currently, there are no approved treatment options for patients with radiation-induced pulmonary fibrosis (RIPF) partly due to the absence of effect

Radiology, Nuclear Medicine and ImagingMedicine
3
Article|96 citations·2013
Regulation of GDF-11 and myostatin activity by GASP-1 and GASP-2
Yun‐Sil Lee, Se‐Jin Lee
SJR Q1Proceedings of the National Academy of SciencesOA

Myostatin (MSTN) and growth and differentiation factor-11 (GDF-11) are highly related TGF-β family members that have distinct biological functions. MSTN is expressed primarily in skeletal muscle and acts to limit muscle growth. GDF-11 is expressed more widely and plays multiple roles, including regulating axial skeletal patterning during development. Several MSTN and GDF-11 binding proteins have been identified, including GDF-associated serum protein-1 (GASP-1) and GASP-2, which are capable of i

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|76 citations·2012
Soluble HSPB1 regulates VEGF-mediated angiogenesis through their direct interaction
Yoon-Jin Lee, Hae-Jun Lee, Seo-Hyun Choi, Yeung Bae Jin, Ho Jung An, Jin Hyoung Kang, Sam S. Yoon, Yun‐Sil Lee
SJR Q1Angiogenesis
Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|73 citations·2019
The Hsp27-Mediated IkBα-NFκB Signaling Axis Promotes Radiation-Induced Lung Fibrosis
Jee-Youn Kim, Seulgi Jeon, Young Jo Yoo, Hee Kyung Jin, Hee Yeon Won, Kyeonghee Yoon, Eun Sook Hwang, Yoon-Jin Lee, Younghwa Na, Jaeho Cho, Yun‐Sil Lee
SJR Q1Clinical Cancer ResearchOA

PURPOSE: Lung fibrosis is a major side effect experienced by patients after lung cancer radiotherapy. However, effective protection strategies and underlying treatment targets remain unclear. In an effort to improve clinical outcomes, pharmacologic treatment of fibrosis is becoming increasingly popular; however, no ideal therapeutic strategy is yet available. EXPERIMENTAL DESIGN: We used a mouse model to irradiate high focal (90 or 75 Gy) to 3-mm volume of the left lung. Lung tissues of mice wer

Radiology, Nuclear Medicine and ImagingMedicine
6
Article|56 citations·2017
Long-term RF exposure on behavior and cerebral glucose metabolism in 5xFAD mice
Yeonghoon Son, Jin Su Kim, Ye Ji Jeong, Youn Kyoung Jeong, Jong Hwa Kwon, Hyung‐Do Choi, Jeong‐Ki Pack, Nam Kim, Yun‐Sil Lee, Hae‐June Lee
SJR Q2Neuroscience Letters
BiophysicsBiochemistry, Genetics and Molecular Biology
7
Article|54 citations·2010
Sialylation of Integrin β1 is Involved in Radiation-Induced Adhesion and Migration in Human Colon Cancer Cells
Min Young Lee, Hae‐June Lee, Woo Duck Seo, Ki Hun Park, Yun‐Sil Lee
SJR Q1International Journal of Radiation Oncology*Biology*Physics
Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|49 citations·2011
Altered Cross-Linking of HSP27 by Zerumbone as a Novel Strategy for Overcoming HSP27-Mediated Radioresistance
Seo-Hyun Choi, Yoon-Jin Lee, Yoon-Jin Lee, Woo Duck Seo, Hae‐June Lee, Joo‐Won Nam, Yoo Jin Lee, Yoo Jin Lee, Joon Kim, Eun Kyoung Seo, Yun‐Sil Lee, Yun‐Sil Lee
SJR Q1International Journal of Radiation Oncology*Biology*Physics
Radiology, Nuclear Medicine and ImagingMedicine
9
Article|46 citations·2018
Regulating BRCA1 protein stability by cathepsin S-mediated ubiquitin degradation
Seoyoung Kim, Hee Kyung Jin, H R Seo, Hae June Lee, Yun‐Sil Lee
SJR Q1Cell Death and DifferentiationOA

Cathepsin S (CTSS) is a cysteine protease that is thought to play a role in many physiological and pathological processes including tumor growth, angiogenesis, and metastasis; it has been identified as a radiation response gene. Here, we examined the role of CTSS in regulating the DNA damage response in breast cancer cells. Activating CTSS (producing the cleavage form of the protein) by radiation induced proteolytic degradation of BRCA1, which ultimately suppressed DNA double-strand break repair

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|45 citations·2011
The effects of simultaneous combined exposure to CDMA and WCDMA electromagnetic fields on rat testicular function
Hae‐June Lee, Yeung Bae Jin, Tae‐Hong Kim, Jeong‐Ki Pack, Nam Kim, Hyung‐Do Choi, Jae‐Seon Lee, Yun‐Sil Lee
SJR Q3Bioelectromagnetics

Wireless mobile phones and other telecommunication devices are used extensively in daily life. We therefore examined the effects of combined exposure to radiofrequency electromagnetic fields (RF-EMF) on rat testicular function, specifically with respect to sensitive processes such as spermatogenesis. Male rats were exposed to single code division multiple access (CDMA) and wideband code division multiple access (WCDMA) RF signals for 12 weeks. The RF exposure schedule comprised 45 min/day, 5 day

BiophysicsBiochemistry, Genetics and Molecular Biology
11
Article|45 citations·2018
Identification of molecular signatures involved in radiation-induced lung fibrosis
Hee Kyung Jin, Ga-Young Kang, Seulgi Jeon, Jin-Mo Kim, You Na Park, Jaeho Cho, Yun‐Sil Lee
SJR Q1Journal of Molecular MedicineOA

In radiotherapy, radiation (IR)-induced lung fibrosis has severe and dose-limiting side effects. To elucidate the molecular effects of IR fibrosis, we examined the fibrosis process in irradiated mouse lung tissues. High focal IR (90 Gy) was exposed to a 3-mm volume of the left lung in C57BL6 mice. In the diffused irradiation, 20 Gy dose delivered with a 7-mm collimator almost covered the entire left lung. Histological examination for lung tissues of both irradiated and neighboring regions was do

Radiology, Nuclear Medicine and ImagingMedicine
12
Article|42 citations·2018
Di-2-ethylhexylphthalate promotes thyroid cell proliferation and DNA damage through activating thyrotropin-receptor-mediated pathways in vitro and in vivo
Seoyoung C. Kim, Ga-Young Park, Young Jo Yoo, Ji Seong Jeong, Ki Taek Nam, Sun Ha Jee, Kyung‐Min Lim, Yun‐Sil Lee
SJR Q1Food and Chemical ToxicologyOA
Health, Toxicology and MutagenesisEnvironmental Science
13
Article|41 citations·2015
Muscle hypertrophy induced by myostatin inhibition accelerates degeneration in dysferlinopathy
Yun‐Sil Lee, Adam Lehar, Suzanne M. Sebald, Min Liu, Kayleigh A. Swaggart, C. Conover Talbot, Peter Pytel, Elisabeth R. Barton, Elizabeth M. McNally, Se‐Jin Lee
SJR Q1Human Molecular GeneticsOA

Myostatin is a secreted signaling molecule that normally acts to limit muscle growth. As a result, there is extensive effort directed at developing drugs capable of targeting myostatin to treat patients with muscle loss. One potential concern with this therapeutic approach in patients with muscle degenerative diseases like muscular dystrophy is that inducing hypertrophy may increase stress on dystrophic fibers, thereby accelerating disease progression. To investigate this possibility, we examine

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|40 citations·2018
Impact of Long-Term RF-EMF on Oxidative Stress and Neuroinflammation in Aging Brains of C57BL/6 Mice
Ye Ji Jeong, Yeonghoon Son, Na-Kyung Han, Hyung‐Do Choi, Jeong‐Ki Pack, Nam Kim, Yun‐Sil Lee, Hae‐June Lee
SJR Q1International Journal of Molecular SciencesOA

The expansion of mobile phone use has raised questions regarding the possible biological effects of radiofrequency electromagnetic field (RF-EMF) exposure on oxidative stress and brain inflammation. Despite accumulative exposure of humans to radiofrequency electromagnetic fields (RF-EMFs) from mobile phones, their long-term effects on oxidative stress and neuroinflammation in the aging brain have not been studied. In the present study, middle-aged C57BL/6 mice (aged 14 months) were exposed to 19

BiophysicsBiochemistry, Genetics and Molecular Biology
15
Article|39 citations·2014
2,4-Bis(4-hydroxybenzyl)phenol Inhibits Heat Shock Transcription Factor 1 and Sensitizes Lung Cancer Cells to Conventional Anticancer Modalities
Taesook Yoon, Ga-Young Kang, Ah‐Reum Han, Eun Kyoung Seo, Yun‐Sil Lee
SJR Q1Journal of Natural Products

Heat shock factor 1 (HSF1) is a transcription factor that regulates expression of heat shock protein (HSP) genes in response to stress. HSPs are expressed at high levels in a wide range of tumors. It has been reported that HSF1 and HSPs are associated closely in tumorigenesis. In the present study, a screen was performed using a luciferase reporter under the control of a heat shock element to find inhibitors of HSF1 activity, and 2,4-bis(4-hydroxybenzyl)phenol (1), isolated from the rhizomes of

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyBiophysicsRadiology, Nuclear Medicine and ImagingCancer ResearchPulmonary and Respiratory MedicineImmunology

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