Junmo Yang
Sungkyunkwan University · Medicine
About the Lab
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.
Research Overview
Research Output Trend
Figures are computed from collected data and may differ slightly.
Selected Papers
15Th2-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
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
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
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
Research Areas
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