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Tae-Young No

Ewha Womans University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Tae-Young No's research lab focuses on epigenetic regulation of gene expression, particularly in immune cells such as T cells, with an emphasis on histone modifications like H3 lysine acetylation and methylation. The lab employs high-resolution genomics techniques, including ChIP-Seq and genome-wide mapping, to decipher the functional roles of epigenetic marks in transcriptional regulation, chromatin dynamics, and disease mechanisms. Recent work also extends into the microbiome's role in human disease and the interplay between extracellular vesicles and endothelial cell activation in cancer progression. The lab integrates multi-omics approaches to uncover molecular mechanisms underlying immune cell identity, genome stability, and disease pathogenesis.

epigeneticsT cell biologyhistone modificationsgut microbiomeextracellular vesicles

Research Overview

Papers
115
Total Citations
20,086
Papers (5y)
23
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
23total
2021
2022
2023
2024
2025
Citations per year (5y)
241total
20212022202320242025

Selected Papers

15
1
Article|498 citations·2006
The genomic landscape of histone modifications in human T cells
Tae‐Young Roh, Suresh Cuddapah, Kairong Cui, Keji Zhao
SJR Q1Proceedings of the National Academy of SciencesOA

To understand the molecular basis that supports the dynamic gene expression programs unique to T cells, we investigated the genomic landscape of activating histone modifications, including histone H3 K9/K14 diacetylation (H3K9acK14ac), H3 K4 trimethylation (H3K4me3), and the repressive histone modification H3 K27 trimethylation (H3K27me3) in primary human T cells. We show that H3K9acK14ac and H3K4me3 are associated with active genes required for T cell function and development, whereas H3K27me3

Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|462 citations·2005
Active chromatin domains are defined by acetylation islands revealed by genome-wide mapping
Tae‐Young Roh, Suresh Cuddapah, Keji Zhao
SJR Q1Genes & DevelopmentOA

The identity and developmental potential of a human cell is specified by its epigenome that is largely defined by patterns of chromatin modifications including histone acetylation. Here we report high-resolution genome-wide mapping of diacetylation of histone H3 at Lys 9 and Lys 14 in resting and activated human T cells by genome-wide mapping technique (GMAT). Our data show that high levels of the H3 acetylation are detected in gene-rich regions. The chromatin accessibility and gene expression o

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|254 citations·2020
Creation of bladder assembloids mimicking tissue regeneration and cancer
Eunjee Kim, Seoyoung Choi, Byunghee Kang, JungHo Kong, Yubin Kim, Woong Yoon, Hwa Rim Lee, Sung Eun Kim, Hyo‐Min Kim, Hye Sun Lee, Chorong Yang, You Jeong Lee
SJR Q1Nature
Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|204 citations·2004
High-resolution genome-wide mapping of histone modifications
Tae‐Young Roh, Wing Chi Abby Ngau, Kairong Cui, David Landsman, Keji Zhao
SJR Q1Nature Biotechnology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|127 citations·2006
Genome-wide prediction of conserved and nonconserved enhancers by histone acetylation patterns
Tae‐Young Roh, Gang Wei, Catherine M. Farrell, Keji Zhao
SJR Q1Genome ResearchOA

Comparative genomic studies have been useful in identifying transcriptional regulatory elements in higher eukaryotic genomes, but many important regulatory elements cannot be detected by such analyses due to evolutionary variations and alignment tool limitations. Therefore, in this study we exploit the highly conserved nature of epigenetic modifications to identify potential transcriptional enhancers. By using a high-resolution genome-wide mapping technique, which combines the chromatin immunopr

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|112 citations·2016
Z-DNA-forming sites identified by ChIP-Seq are associated with actively transcribed regions in the human genome
So-I. Shin, Seokjin Ham, Jihwan Park, Seong Hye Seo, Chae Hyun Lim, Hyeongrin Jeon, Jounghyun Huh, Tae‐Young Roh
SJR Q1DNA ResearchOA

Z-DNA, a left-handed double helical DNA is structurally different from the most abundant B-DNA. Z-DNA has been known to play a significant role in transcription and genome stability but the biological meaning and positions of Z-DNA-forming sites (ZFSs) in the human genome has not been fully explored. To obtain genome-wide map of ZFSs, Zaa with two Z-DNA-binding domains was used for ChIP-Seq analysis. A total of 391 ZFSs were found and their functions were examined in vivo. A large portion of ZFS

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|69 citations·2020
Opportunistic detection of Fusobacterium nucleatum as a marker for the early gut microbial dysbiosis
Ji-Won Huh, Tae‐Young Roh
SJR Q1BMC MicrobiologyOA

BACKGROUND: The essential roles of gut microbiome have been emphasized in modulating human health and disease. Fusobacterium nucleatum (F. nucleatum), an obligate Gram-negative microorganism residing in oral cavity, gastrointestinal tract and elsewhere, has been recently considered as a potential oncobacterium associated with human cancers. However, the consequence of its enrichment was not extensively explored in terms of microbial homeostasis and stability at the early stage of disease develop

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|51 citations·2014
Egr-1 Activation by Cancer-Derived Extracellular Vesicles Promotes Endothelial Cell Migration via ERK1/2 and JNK Signaling Pathways
Yae Jin Yoon, Dae‐Kyum Kim, Chang Min Yoon, Jaesung Park, Yoon-Keun Kim, Tae‐Young Roh, Yong Song Gho
SJR Q1PLoS ONEOA

Various mammalian cells, including cancer cells, shed extracellular vesicles (EVs), also known as exosomes and microvesicles, into surrounding tissues. These EVs play roles in tumor growth and metastasis by promoting angiogenesis. However, the detailed mechanism of how cancer-derived EVs elicit endothelial cell activation remains unknown. Here, we provide evidence that early growth response-1 (Egr-1) activation in endothelial cells is involved in the angiogenic activity of colorectal cancer cell

Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|45 citations·2023
DDM1-mediated gene body DNA methylation is associated with inducible activation of defense-related genes in Arabidopsis
Seung‐Chul Lee, Jaemyung Choi, Jihwan Park, Chang Pyo Hong, Daeseok Choi, Soeun Han, Kyuha Choi, Tae‐Young Roh, Daehee Hwang, Ildoo Hwang
SJR Q1Genome biologyOA

BACKGROUND: Plants memorize previous pathogen attacks and are "primed" to produce a faster and stronger defense response, which is critical for defense against pathogens. In plants, cytosines in transposons and gene bodies are reported to be frequently methylated. Demethylation of transposons can affect disease resistance by regulating the transcription of nearby genes during defense response, but the role of gene body methylation (GBM) in defense responses remains unclear. RESULTS: Here, we fin

Plant ScienceAgricultural and Biological Sciences
10
Article|37 citations·2019
Epigenetic analysis in rheumatoid arthritis synoviocytes
Seokjin Ham, Jae‐Bum Bae, Suman Lee, Bong‐Jo Kim, Bok‐Ghee Han, Seung‐Ki Kwok, Tae‐Young Roh
SJR Q1Experimental & Molecular MedicineOA

Rheumatoid arthritis (RA) is a complex chronic systematic disease with progressive destruction of the joints by invasive synoviocytes. To characterize the key regulators involved in the development of RA, we obtained multilayer epigenomics data including DNA methylation by whole-genome bisulfite sequencing, miRNA profiles, genetic variations by whole-exome sequencing, and mRNA profiles from synoviocytes of RA and osteoarthritis (OA) patients. The overall DNA methylation patterns were not much di

Cancer ResearchBiochemistry, Genetics and Molecular Biology
11
Article|35 citations·2013
Twist1 is essential in maintaining mesenchymal state and tumor-initiating properties in synovial sarcoma
Keun‐Woo Lee, Nam Kyung Lee, Seokjin Ham, Tae‐Young Roh, Seok‐Hyung Kim
SJR Q1Cancer Letters
Pulmonary and Respiratory MedicineMedicine
12
Article|34 citations·2014
Genome-wide analysis of histone modifications in latently HIV-1 infected T cells
Jihwan Park, Chae Hyun Lim, Seokjin Ham, Sung Soon Kim, Byeong‐Sun Choi, Tae‐Young Roh
SJR Q1AIDSOA

The transcriptional regulation by epigenetic memory should play a key role in the evolution and maintenance of HIV-1 latency accompanied by modulation of signalling molecules in the host cells.

VirologyImmunology and Microbiology
13
Article|33 citations·2012
Functional elements demarcated by histone modifications in breast cancer cells
Moon Kyung Choe, Chang Pyo Hong, Jihwan Park, Seong Hye Seo, Tae‐Young Roh
SJR Q2Biochemical and Biophysical Research CommunicationsOA

Histone modifications are regarded as one of markers to identify regulatory elements which are DNA segments modulating gene transcription. Aberrant changes of histone modification levels are frequently observed in cancer. We have employed ChIP-Seq to identify regulatory elements in human breast cancer cell line, MCF-7 by comparing histone modification patterns of H3K4me1, H3K4me3, and H3K9/14ac to those in normal mammary epithelial cell line, MCF-10A. The genome-wide analysis shows that H3K4me3

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|24 citations·2019
Transcription-dependent targeting of Hda1C to hyperactive genes mediates H4-specific deacetylation in yeast
So Dam Ha, Seokjin Ham, Min Young Kim, Ji Hyun Kim, Insoon Jang, Bo Bae Lee, Min Kyung Lee, Jin-Taek Hwang, Tae‐Young Roh, Tae Soo Kim
SJR Q1Nature CommunicationsOA

In yeast, Hda1 histone deacetylase complex (Hda1C) preferentially deacetylates histones H3 and H2B, and functionally interacts with Tup1 to repress transcription. However, previous studies identified global increases in histone H4 acetylation in cells lacking Hda1, a component of Hda1C. Here, we find that Hda1C binds to hyperactive genes, likely via the interaction between the Arb2 domain of Hda1 and RNA polymerase II. Additionally, we report that Hda1C specifically deacetylates H4, but not H3,

Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Article|19 citations·2020
Indoor dust extracellular vesicles promote cancer lung metastasis by inducing tumour necrosis factor‐α
Nhung Thi Hong Dinh, Jae‐Wook Lee, Jaemin Lee, Sang Soo Kim, Gyeongyun Go, Seoyoon Bae, Ye In Jun, Yae Jin Yoon, Tae‐Young Roh, Yong Song Gho
SJR Q1Journal of Extracellular VesiclesOA

ABSTRACT Indoor pollutants are important problems to public health. Among indoor pollutants, indoor dust contains extracellular vesicles (EVs), which are associated with pulmonary inflammation. However, it has not been reported whether indoor dust EVs affect the cancer lung metastasis. In this study, we isolated indoor dust EVs and investigated their roles in cancer lung metastasis. Upon intranasal administration, indoor dust EVs enhanced mouse melanoma lung metastasis in a dose‐dependent manner

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyVirologyPhysiologyOncologyImmunologyMicrobiology

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