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Jisoo Park

Korea University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Jisoo Park's research lab specializes in systems biology and computational biology, focusing on deciphering the molecular mechanisms of viral infections and cancer through integrative analysis of protein-protein interaction networks. The lab develops advanced computational methods—such as diffusion state distance (DSD) and its extensions—to model functional relationships in biological networks with high resolution, incorporating network topology, confidence scores, and pathway information. A central theme is the identification of host factors and cancer-specific protein systems under mutational selection, enabling mechanistic insights into diseases like COVID-19 and breast cancer. The lab also bridges biological discovery with design innovation through technology biographies that inform human-centered technology development.

protein-protein interactionssystems biologycancer genomicsnetwork diffusionfunctional annotation

Research Overview

Papers
44
Total Citations
2,305
Papers (5y)
16
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
16total
2021
2023
2024
2025
2026
Citations per year (5y)
488total
20212023202420252026

Selected Papers

15
1
Article|813 citations·2020
Comparative host-coronavirus protein interaction networks reveal pan-viral disease mechanisms
David E. Gordon, Joseph Hiatt, Mehdi Bouhaddou, Veronica V. Rezelj, Svenja Ulferts, Hannes Braberg, Alexander S. Jureka, Kirsten Obernier, Jeffrey Guo, Jyoti Batra, Robyn M. Kaake, Andrew R. Weckstein
SJR Q1ScienceOA

The COVID-19 pandemic, caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), is a grave threat to public health and the global economy. SARS-CoV-2 is closely related to the more lethal but less transmissible coronaviruses SARS-CoV-1 and Middle East respiratory syndrome coronavirus (MERS-CoV). Here, we have carried out comparative viral-human protein-protein interaction and viral protein localization analyses for all three viruses. Subsequent functional genetic screening identif

Infectious DiseasesMedicine
2
Article|525 citations·2020
Predicting Drug Response and Synergy Using a Deep Learning Model of Human Cancer Cells
Brent M. Kuenzi, Jisoo Park, Samson Fong, Kyle S. Sanchez, John J. Y. Lee, Jason F. Kreisberg, Jianzhu Ma, Trey Ideker
SJR Q1Cancer CellOA
Computational Theory and MathematicsComputer Science
3
Article|162 citations·2021
A protein interaction landscape of breast cancer
Minkyu Kim, Jisoo Park, Mehdi Bouhaddou, Kyumin Kim, Ajda Rojc, Maya Modak, Margaret Soucheray, Michael McGregor, Patrick C. O’Leary, Denise M. Wolf, Erica Stevenson, Tzeh Keong Foo
SJR Q1ScienceOA

Cancers have been associated with a diverse array of genomic alterations. To help mechanistically understand such alterations in breast-invasive carcinoma, we applied affinity purification–mass spectrometry to delineate comprehensive biophysical interaction networks for 40 frequently altered breast cancer (BC) proteins, with and without relevant mutations, across three human breast cell lines. These networks identify cancer-specific protein-protein interactions (PPIs), interconnected and enriche

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|147 citations·2013
Going the Distance for Protein Function Prediction: A New Distance Metric for Protein Interaction Networks
Mengfei Cao, Hao Zhang, Jisoo Park, Noah M. Daniels, Mark Crovella, Lenore Cowen, Benjamin Hescott
SJR Q1PLoS ONEOA

In protein-protein interaction (PPI) networks, functional similarity is often inferred based on the function of directly interacting proteins, or more generally, some notion of interaction network proximity among proteins in a local neighborhood. Prior methods typically measure proximity as the shortest-path distance in the network, but this has only a limited ability to capture fine-grained neighborhood distinctions, because most proteins are close to each other, and there are many ties in prox

Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|130 citations·2014
New directions for diffusion-based network prediction of protein function: incorporating pathways with confidence
Mengfei Cao, Christopher Michael Pietras, Xian Zhang Feng, Kathryn J Doroschak, Thomas Schaffner, Jisoo Park, Hao Zhang, Lenore Cowen, Benjamin Hescott
SJR Q1BioinformaticsOA

MOTIVATION: It has long been hypothesized that incorporating models of network noise as well as edge directions and known pathway information into the representation of protein-protein interaction (PPI) networks might improve their utility for functional inference. However, a simple way to do this has not been obvious. We find that diffusion state distance (DSD), our recent diffusion-based metric for measuring dissimilarity in PPI networks, has natural extensions that incorporate confidence, dir

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|88 citations·2002
Technology biographies
Mark Blythe, Andrew Monk, Jisoo Park

The technology biography combines and adapts a number of qualitative data collection techniques to focus on past, present and possible future domestic technologies. Processes, concerns and problems of domestic life are identified in order to develop illustrative product suggestions to inspire or provoke designers.

AnthropologySocial Sciences
7
Article|88 citations·2021
Interpretation of cancer mutations using a multiscale map of protein systems
Fan Zheng, Marcus R. Kelly, Dana J. Ramms, Marissa L. Heintschel, Kai Tao, Beril Tutuncuoglu, John J. Y. Lee, Keiichiro Ono, Helene Foussard, Michael Chen, Kari A. Herrington, Erica Silva
SJR Q1ScienceOA

A major goal of cancer research is to understand how mutations distributed across diverse genes affect common cellular systems, including multiprotein complexes and assemblies. Two challenges—how to comprehensively map such systems and how to identify which are under mutational selection—have hindered this understanding. Accordingly, we created a comprehensive map of cancer protein systems integrating both new and published multi-omic interaction data at multiple scales of analysis. We then deve

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|80 citations·2021
A multi-scale map of cell structure fusing protein images and interactions
Yue Qin, Edward L. Huttlin, Casper F. Winsnes, Maya L. Gosztyla, Ludivine Wacheul, Marcus R. Kelly, Steven M. Blue, Fan Zheng, Michael Chen, Leah V. Schaffer, Katherine Licon, Anna Bäckström
SJR Q1NatureOA

The cell is a multi-scale structure with modular organization across at least four orders of magnitude1. Two central approaches for mapping this structure—protein fluorescent imaging and protein biophysical association—each generate extensive datasets, but of distinct qualities and resolutions that are typically treated separately2,3. Here we integrate immunofluorescence images in the Human Protein Atlas4 with affinity purifications in BioPlex5 to create a unified hierarchical map of human cell

Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|75 citations·2021
A protein network map of head and neck cancer reveals PIK3CA mutant drug sensitivity
Danielle L. Swaney, Dana J. Ramms, Zhiyong Wang, Jisoo Park, Yusuke Goto, Margaret Soucheray, Neil E. Bhola, Kyumin Kim, Fan Zheng, Yan Zeng, Michael McGregor, Kari A. Herrington
SJR Q1ScienceOA

We outline a framework for elucidating tumor genetic complexity through multidimensional protein-protein interaction maps and apply it to enhancing our understanding of head and neck squamous cell carcinoma. This network uncovers 771 interactions from cancer and noncancerous cell states, including WT and mutant protein isoforms. Prioritization of cancer-enriched interactions reveals a previously unidentified association of the fibroblast growth factor receptor tyrosine kinase 3 with Daple, a gua

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|35 citations·2023
A multi-scale map of protein assemblies in the DNA damage response
Anton Kratz, Minkyu Kim, Marcus R. Kelly, Fan Zheng, Christopher A. Koczor, Jianfeng Li, Keiichiro Ono, Yue Qin, Christopher Churas, Jing Chen, Rudolf Pillich, Jisoo Park
SJR Q1Cell SystemsOA

The DNA damage response (DDR) ensures error-free DNA replication and transcription and is disrupted in numerous diseases. An ongoing challenge is to determine the proteins orchestrating DDR and their organization into complexes, including constitutive interactions and those responding to genomic insult. Here, we use multi-conditional network analysis to systematically map DDR assemblies at multiple scales. Affinity purifications of 21 DDR proteins, with/without genotoxin exposure, are combined w

Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|32 citations·2021
Enhanced Production of 1-Deoxynojirimycin in Bacillus subtilis subsp. inaquosorum by Random Mutagenesis and Culture Optimization
Khai Ngoc Nguyen, Yunah Kim, Sawarot Maibunkaew, Jisoo Park, Mien Thi Nguyen, Doo‐Byoung Oh, Ohsuk Kwon
SJR Q2Biotechnology and Bioprocess Engineering
Organic ChemistryChemistry
12
Article|18 citations·2013
Correction: Going the Distance for Protein Function Prediction: A New Distance Metric for Protein Interaction Networks
Mengfei Cao, Hao Zhang, Jisoo Park, Noah M. Daniels, Mark Crovella, Lenore Cowen, Benjamin Hescott
SJR Q1PLoS ONEOA

In protein-protein interaction (PPI) networks, functional similarity is often inferred based on the function of directly interacting proteins, or more generally, some notion of interaction network proximity among proteins in a local neighborhood. Prior methods typically measure proximity as the shortest-path distance in the network, but this has only a limited ability to capture fine-grained neighborhood distinctions, because most proteins are close to each other, and there are many ties in prox

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|16 citations·2017
Towards a more molecular taxonomy of disease
Jisoo Park, Benjamin Hescott, Donna K. Slonim
SJR Q2Journal of Biomedical SemanticsOA

Our experiments provide insights about learning relationships between diseases from disease genes alone. Future work should explore the prospect of disease term discovery from molecular data and how best to integrate molecular data with anatomical and clinical knowledge. This study nonetheless suggests that disease gene information has the potential to form an important part of the foundation for future representations of the disease landscape.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|13 citations·2019
Pathway centrality in protein interaction networks identifies putative functional mediating pathways in pulmonary disease
Jisoo Park, Benjamin Hescott, Donna K. Slonim
SJR Q1Scientific ReportsOA

Identification of functional pathways mediating molecular responses may lead to better understanding of disease processes and suggest new therapeutic approaches. We introduce a method to detect such mediating functions using topological properties of protein-protein interaction networks. We define the concept of pathway centrality, a measure of communication between disease genes and differentially expressed genes. Using pathway centrality, we identify mediating pathways in three pulmonary disea

Pulmonary and Respiratory MedicineMedicine
15
Article|12 citations·2014
Finding Novel Molecular Connections between Developmental Processes and Disease
Jisoo Park, Heather C. Wick, Daniel E. Kee, Keith Noto, Jill L. Maron, Donna K. Slonim
SJR Q1PLoS Computational BiologyOA

Identifying molecular connections between developmental processes and disease can lead to new hypotheses about health risks at all stages of life. Here we introduce a new approach to identifying significant connections between gene sets and disease genes, and apply it to several gene sets related to human development. To overcome the limits of incomplete and imperfect information linking genes to disease, we pool genes within disease subtrees in the MeSH taxonomy, and we demonstrate that such po

Pulmonary and Respiratory MedicineMedicine

Research Areas

Molecular BiologyPulmonary and Respiratory MedicineComputational Theory and MathematicsSociology and Political ScienceInfectious DiseasesAnthropology

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