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Se Jin Hwang

Hanyang University · 生化学・遺伝学・分子生物学

研究室紹介

Professor Se Jin Hwang's research lab specializes in systems biology and bioinformatics, focusing on the systematic integration of multi-omics data to decipher complex regulatory networks in higher eukaryotes. The lab develops computational and experimental frameworks to map functional modules, protein-protein interactions, and kinase-substrate relationships, with an emphasis on understanding cellular signaling, gene regulation, and retinal glial cell biology. Key research directions include network-based analysis of phosphorylation networks, transcription factor and miRNA regulatory networks, and the identification of functional modules using semantic and topological metrics.

systems biologyregulatory networksprotein-protein interactionsphosphorylation networksfunctional module detection

Research Overview

Papers
91
Total Citations
1,566
Papers (5y)
27
Primary Field
生化学・遺伝学・分子生物学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
27total
2021
2022
2023
2024
2025
Citations per year (5y)
206total
20212022202320242025

Selected Papers

15
1
Article|164 citations·2007
Semantic integration to identify overlapping functional modules in protein interaction networks
Young‐Rae Cho, Woochang Hwang, Murali Ramanathan, Aidong Zhang
SJR Q1BMC BioinformaticsOA

BACKGROUND: The systematic analysis of protein-protein interactions can enable a better understanding of cellular organization, processes and functions. Functional modules can be identified from the protein interaction networks derived from experimental data sets. However, these analyses are challenging because of the presence of unreliable interactions and the complex connectivity of the network. The integration of protein-protein interactions with the data from other sources can be leveraged f

Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
Article|162 citations·2013
Construction of human activity‐based phosphorylation networks
Robert H. Newman, Jianfei Hu, Hee‐Sool Rho, Zhi Xie, Crystal Woodard, John Neiswinger, Christopher L. Cooper, Matthew D. Shirley, Hillary M Clark, Shaohui Hu, Woochang Hwang, Jun Seop Jeong
SJR Q1Molecular Systems BiologyOA

The landscape of human phosphorylation networks has not been systematically explored, representing vast, unchartered territories within cellular signaling networks. Although a large number of in vivo phosphorylated residues have been identified by mass spectrometry (MS)-based approaches, assigning the upstream kinases to these residues requires biochemical analysis of kinase-substrate relationships (KSRs). Here, we developed a new strategy, called CEASAR, based on functional protein microarrays

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Article|114 citations·2016
Lhx2 Is an Essential Factor for Retinal Gliogenesis and Notch Signaling
Jimmy de Melo, Cristina Zibetti, Brian S. Clark, Woochang Hwang, Ana L. Miranda‐Angulo, Jiang Qian, Seth Blackshaw
SJR Q1Journal of NeuroscienceOA

Müller glia (MG) are the only glial cell type produced by the neuroepithelial progenitor cells that generate the vertebrate retina. MG are required to maintain retinal homeostasis and support the survival of retinal neurons. Furthermore, in certain vertebrate classes, MG function as adult stem cells, mediating retinal regeneration in response to injury. However, the mechanisms that regulate MG development are poorly understood because there is considerable overlap in gene expression between reti

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|103 citations·2011
Construction and Analysis of an Integrated Regulatory Network Derived from High-Throughput Sequencing Data
Chao Cheng, Koon‐Kiu Yan, Woochang Hwang, Jiang Qian, Nitin Bhardwaj, Joel Rozowsky, Zhi John Lu, Wei Niu, Pedro Alves, Masaomi Kato, M Snyder, Mark Gerstein
SJR Q1PLoS Computational BiologyOA

We present a network framework for analyzing multi-level regulation in higher eukaryotes based on systematic integration of various high-throughput datasets. The network, namely the integrated regulatory network, consists of three major types of regulation: TF→gene, TF→miRNA and miRNA→gene. We identified the target genes and target miRNAs for a set of TFs based on the ChIP-Seq binding profiles, the predicted targets of miRNAs using annotated 3'UTR sequences and conservation information. Making u

AgingBiochemistry, Genetics and Molecular Biology
5
Article|92 citations·2006
A novel functional module detection algorithm for protein-protein interaction networks
Woochang Hwang, Young‐Rae Cho, Aidong Zhang, Murali Ramanathan
SJR Q2Algorithms for Molecular BiologyOA

BACKGROUND: The sparse connectivity of protein-protein interaction data sets makes identification of functional modules challenging. The purpose of this study is to critically evaluate a novel clustering technique for clustering and detecting functional modules in protein-protein interaction networks, termed STM. RESULTS: STM selects representative proteins for each cluster and iteratively refines clusters based on a combination of the signal transduced and graph topology. STM is found to be eff

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|87 citations·2008
Bridging centrality
Woochang Hwang, Tae Hyong Kim, Murali Ramanathan, Aidong Zhang

Despite the pervasiveness of networks as models for real world systems ranging from the Internet, the World Wide Web to gene regulation and scientific collaborations, only a limited number of metrics capable of characterizing these systems are available. The existing metrics for characterizing networks have broad specificity and lack the selectivity for many applications. The purpose of this paper is to identify and critically evaluate a metric, termed bridging centrality, which is highly select

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|70 citations·2006
Bridging Centrality: Identifying Bridging Nodes in Scale-free Networks
Murali Ramanathan, Aidong Zhang, Young‐Rae Cho, Woochang Hwang

Several centrality measures were introduced to identify essential components and compute components’ importance in networks. Majority of these centrality measures are dominated by components’ degree due to their nature of looking at networks’ topology. We propose a novel essential component identification model, bridging centrality, based on information flow and topological locality in scale-free networks. Bridging centrality provides an entirely new way of scrutinizing network structures and me

Statistical and Nonlinear PhysicsPhysics and Astronomy
8
Article|55 citations·1987
Statistical study of strength and fatigue life of composite materials
Woochang Hwang, Kap Su Han
Composites
Mechanics of MaterialsEngineering
9
letter|47 citations·2021
Direct neuronal infection of SARS-CoV-2 reveals cellular and molecular pathology of chemosensory impairment of COVID-19 patients
Kwang‐Soo Lyoo, Hyeon Myeong Kim, Bina Lee, Young Se Hyun, Seong-Jae Kim, Daesub Song, Woochang Hwang, Sun Lee, Jae‐Hoon Park, Woonsung Na, Seung Pil Yun, Yong Jun Kim
SJR Q1Emerging Microbes & InfectionsOA

Patients with recent pandemic coronavirus disease 19 (COVID-19) complain of neurological abnormalities in sensory functions such as smell and taste in the early stages of infection. Determining the cellular and molecular mechanism of sensory impairment is critical to understand the pathogenesis of clinical manifestations, as well as in setting therapeutic targets for sequelae and recurrence. The absence of studies utilizing proper models of human peripheral nerve hampers an understanding of COVI

NeurologyMedicine
10
Article|46 citations·2021
Pattern of inflammatory immune response determines the clinical course and outcome of COVID-19: unbiased clustering analysis
Eunyoung Emily Lee, Kyoung‐Ho Song, Woochang Hwang, Sin Young Ham, Hyeonju Jeong, Jeong Han Kim, Hong Sang Oh, Yu Min Kang, Eun Bong Lee, Nam Joong Kim, Bum Sik Chin, Jin Kyun Park
SJR Q1Scientific ReportsOA

The objective of the study was to identify distinct patterns in inflammatory immune responses of COVID-19 patients and to investigate their association with clinical course and outcome. Data from hospitalized COVID-19 patients were retrieved from electronic medical record. Supervised k-means clustering of serial C-reactive protein levels (CRP), absolute neutrophil counts (ANC), and absolute lymphocyte counts (ALC) was used to assign immune responses to one of three groups. Then, relationships be

Infectious DiseasesMedicine
11
Article|39 citations·2006
CLUSTERING METHODS IN PROTEIN-PROTEIN INTERACTION NETWORK
Chuan Lin, Young‐Rae Cho, Woochang Hwang, Pengjun Pei, Aidong Zhang

With completion of a draft sequence of the human genome, the field of genetics stands on the threshold of significant theoretical and practical advances. Crucial to furthering these investigations is a comprehensive understanding of the expression, function, and regulation of the proteins encoded by an organism. It has been observed that proteins seldom act as single isolated species in the performance of their functions; rather, proteins involved in the same cellular processes often interact wi

Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Article|25 citations·2008
CASCADE: a novel quasi all paths-based network analysis algorithm for clustering biological interactions
Woochang Hwang, Young‐Rae Cho, Aidong Zhang, Murali Ramanathan
SJR Q1BMC BioinformaticsOA

BACKGROUND: Quantitative characterization of the topological characteristics of protein-protein interaction (PPI) networks can enable the elucidation of biological functional modules. Here, we present a novel clustering methodology for PPI networks wherein the biological and topological influence of each protein on other proteins is modeled using the probability distribution that the series of interactions necessary to link a pair of distant proteins in the network occur within a time constant (

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|23 citations·2015
Prediction of promoters and enhancers using multiple DNA methylation-associated features
Woochang Hwang, Verity F. Oliver, Shannath L. Merbs, Heng Zhu, Jiang Qian
SJR Q1BMC GenomicsOA

BACKGROUND: Regulatory regions (e.g. promoters and enhancers) play an essential role in human development and disease. Many computational approaches have been developed to predict the regulatory regions using various genomic features such as sequence motifs and evolutionary conservation. However, these DNA sequence-based approaches do not reflect the tissue-specific nature of the regulatory regions. In this work, we propose to predict regulatory regions using multiple features derived from DNA m

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|21 citations·2012
Fault detection and diagnosis of the electromechanical brake based on observer and parity space
Woochang Hwang, Kyutae Han, Kunsoo Huh
SJR Q2International Journal of Automotive Technology
Automotive EngineeringEngineering
15
Article|9 citations·2012
Dynamics of Regulatory Networks in the Developing Mouse Retina
Woochang Hwang, László Hackler, George Y. Wu, Hongkai Ji, Donald J. Zack, Jiang Qian
SJR Q1PLoS ONEOA

Understanding gene regulation is crucial to dissect the molecular basis of human development and disease. Previous studies on transcription regulatory networks often focused on their static properties. Here we used retinal development as a model system to investigate the dynamics of regulatory networks that are comprised of transcription factors, microRNAs and other protein-coding genes. We found that the active sub-networks are topologically different at early and late stages of retinal develop

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyComputational Theory and MathematicsStatistical and Nonlinear PhysicsMechanics of MaterialsInfectious DiseasesEpidemiology

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