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Junmo Yang

Sungkyunkwan University · 医学

研究室紹介

Professor Junmo Yang's research lab focuses on identifying molecular and genetic mechanisms underlying atopic dermatitis (AD), with a strong emphasis on proteomic and genetic analyses. The lab investigates dysregulated proteins and gene-gene interactions in AD-derived cells, particularly fibroblasts and keratinocytes, to uncover biomarkers and pathogenic pathways. Key research directions include the role of cytokines (e.g., IL-4, IL-13), immune-related genes (e.g., SPINK5, ALDH1), and post-translational modifications in disease progression. The lab integrates proteomics, genomics, and molecular biology techniques to translate findings into potential diagnostic and therapeutic targets for AD.

atopic dermatitisproteomicsgene-gene interactioncytokine signalingbiomarker discovery

Research Overview

Papers
297
Total Citations
4,264
Papers (5y)
25
Primary Field
医学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
25total
2019
2020
2021
2022
2024
Citations per year (5y)
138total
20192020202120222024

Selected Papers

15
1
Article|67 citations·2011
Association of polymorphisms in genes encoding IL-4, IL-13 and their receptors with atopic dermatitis in a Korean population
Junghyun Namkung, Jong-Eun Lee, Eugene Kim, Hyun Je Kim, Eun–Young Seo, Hye-Yoon Jang, Eun‐Soon Shin, Eunyoung Cho, Jun‐Mo Yang
SJR Q1Experimental DermatologyOA

Th2-dominated immune responses are believed to contribute to the pathogenesis of atopic dermatitis (AD). IL-4 and IL-13 are typical pleiotropic Th2 cytokines that play a central role in IgE-dependent inflammatory reactions. Single-nucleotide polymorphisms (SNPs) in IL-4 and IL-13 have been reported in patients with allergic disease from numerous countries. Gene-gene interactions among genes have been identified in patients with asthma, although negative results have been reported. To investigate

DermatologyMedicine
2
Article|61 citations·2011
An association between IL-9 and IL-9 receptor gene polymorphisms and atopic dermatitis in a Korean population
Junghyun Namkung, Jong-Eun Lee, Eugene Kim, Geon Tae Park, Hee Seung Yang, Hye Yoon Jang, Eun‐Soon Shin, Eunyoung Cho, Jun‐Mo Yang
SJR Q1Journal of Dermatological Science
DermatologyMedicine
3
Article|47 citations·2009
Single nucleotide polymorphisms and the haplotype in the DEFB1 gene are associated with atopic dermatitis in a Korean population
Eugene Kim, Jong-Eun Lee, Junghyun Namkung, Pyoung-Su Kim, Sook Kim, Eun‐Soon Shin, Eunyoung Cho, Jun‐Mo Yang
SJR Q1Journal of Dermatological Science
DermatologyMedicine
4
Article|47 citations·2017
Computational prediction integrating the inhibition kinetics of gallotannin on α-glucosidase
Li-Mei Yue, Jinhyuk Lee, Zheng Li, Yong‐Doo Park, Zhuo-Ming Ye, Jun‐Mo Yang
SJR Q1International Journal of Biological Macromolecules
Endocrinology, Diabetes and MetabolismMedicine
5
Article|46 citations·2010
Association of single nucleotide polymorphisms in the IL-12 (IL-12A and B) and IL-12 receptor (IL-12Rβ1 and β2) genes and gene–gene interactions with atopic dermatitis in Koreans
Junghyun Namkung, Jong-Eun Lee, Eugene Kim, Song Yee Kim, Sook Kim, Eun‐Soon Shin, Eunyoung Cho, Jun‐Mo Yang
SJR Q1Journal of Dermatological Science
DermatologyMedicine
6
Article|45 citations·2004
Towards a proteomic analysis of atopic dermatitis: A two‐dimensional‐polyacrylamide gel electrophoresis/mass spectrometric analysis of cultured patient‐derived fibroblasts
Yong‐Doo Park, So-Yeon Kim, Hee‐Sun Jang, Eun–Young Seo, Junghyun Namkung, Hyung‐Seok Park, Sang Yun Cho, Young‐Ki Paik, Jun‐Mo Yang
SJR Q2PROTEOMICS

Atopic dermatitis (AD) is a chronic relapsing inflammatory skin disease typically characterized by a distribution of eczematous skin lesions with lichenification, pruritic excoriations, and dry skin with wide varieties of pathophysiologic aspects. Recently, AD was divided into extrinsic and intrinsic forms according to the presence or absence of an allergy. We investigated alterations in protein expression in primary cultured AD cells from the patient biopsy samples by two-dimensional gel electr

DermatologyMedicine
7
letter|36 citations·2006
Identification of the Target Genes of Atopic Dermatitis by Real-Time PCR
Eun–Young Seo, Geon Tae Park, Kyu-Mi Lee, Jung‐Ah Kim, Joo‐Heung Lee, Jun‐Mo Yang
SJR Q1Journal of Investigative DermatologyOA
DermatologyMedicine
8
Article|35 citations·2010
Expression of the homeobox gene, HOPX, is modulated by cell differentiation in human keratinocytes and is involved in the expression of differentiation markers
Jun‐Mo Yang, Seon Mi Sim, Hyo-Yeon Kim, Geon Tae Park
SJR Q1European Journal of Cell Biology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|31 citations·2014
Effects of L-Malic Acid on Alpha-Glucosidase: Inhibition Kinetics and Computational Molecular Dynamics Simulations
Lin Gou, Yi Zhan, Jinhyuk Lee, Xuan Li, Zhi-Rong Lü, Hai‐Meng Zhou, Lu Hang, Xiyao Wang, Yong‐Doo Park, Jun‐Mo Yang
SJR Q2Applied Biochemistry and Biotechnology
Endocrinology, Diabetes and MetabolismMedicine
10
Article|25 citations·2005
A new type of uncompetitive inhibition of tyrosinase induced by Cl– binding
Yong‐Doo Park, So-Yeon Kim, You‐Jeong Lyou, Jin-Young Lee, Jun‐Mo Yang
SJR Q2Biochimie
Cell BiologyBiochemistry, Genetics and Molecular Biology
11
Article|25 citations·2012
Effects of macromolecular crowding on refolding of recombinant human brain-type creatine kinase
Yong-Qiang Fan, Hongjian Liu, Chang Li, Yushi Luan, Jun‐Mo Yang, Yulong Wang
SJR Q1International Journal of Biological Macromolecules
Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|24 citations·2006
Two‐dimensional electrophoretic profiling of atopic dermatitis in primary cultured keratinocytes from patients
Yong‐Doo Park, Hee‐Sun Jang, So-Yeon Kim, Sung‐Kyun Ko, You‐Jeong Lyou, Dong‐Youn Lee, Young‐Ki Paik, Jun‐Mo Yang
SJR Q2PROTEOMICS

Recently, we reported altered protein expression in primary cultured fibroblasts from atopic dermatitis (AD) patients. As a sequential study, we conducted proteomic analysis of primary keratinocytes derived from AD patients to further identify AD-related proteins. Three pH ranges, 4-7, 6-9, and 7-11, were used to profile the altered protein expression in AD. We obtained 46 candidate spots from the 2-D gel image analysis: 18 proteins were up-regulated and 27 proteins were down-regulated. Among th

DermatologyMedicine
13
Article|22 citations·2003
Kinetic Inactivation Study of Mushroom Tyrosinase: Intermediate Detection by Denaturants
Yong‐Doo Park, Jaeyong Jung, Do-Won Kim, Won‐Serk Kim, Myong‐Joon Hahn, Jun‐Mo Yang
Journal of Protein Chemistry
Cell BiologyBiochemistry, Genetics and Molecular Biology
14
Article|22 citations·1996
A Novel H1 Mutation in the Keratin 1 Chain in Epidermolytic Hyperkeratosis
Jun‐Mo Yang, Kiebang Nam, Kibeom Park, Won-Serk Kim, Kee‐Chan Moon, Jai Kyoung Koh, Peter M. Steinert, Eil-Soo Lee
SJR Q1Journal of Investigative DermatologyOA
Cell BiologyBiochemistry, Genetics and Molecular Biology
15
Article|21 citations·2010
Hint for association of single nucleotide polymorphisms and haplotype in SPINK5 gene with atopic dermatitis in Koreans
Junghyun Namkung, Jong‐Eun Lee, Eugene Kim, Ji‐Yeon Byun, Sook Kim, Eun‐Soon Shin, Eun Young Cho, Jun‐Mo Yang
SJR Q1Experimental Dermatology

Clinical studies, including twin studies, support the concept that the risk of atopic dermatitis (AD) may be mediated through skin-specific genes, rather than simply through systemic immune or atopy risk genes. The SPINK5 gene is expressed on epithelial surfaces and may provide protection against other allergenic serine proteases. Mutations in the SPINK5 gene result in Netherton syndrome, a disorder characterised by AD, ichthyosis, and elevated serum IgE levels. We genotyped 21 single nucleotide

DermatologyMedicine

Research Areas

Cell BiologyDermatologyMolecular BiologyEpidemiologyEndocrinology, Diabetes and MetabolismOncology

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