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Wan-young Jung

Korea University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Wan-young Jung's research lab focuses on the biomechanics of the cytoskeleton and the immunological mechanisms underlying autoimmune and infectious diseases. The lab investigates actomyosin contractility in disordered actin networks using advanced biomimetic models to understand collective force generation and structural reorganization. In parallel, the lab explores humoral immune responses in demyelinating diseases like MOGAD and infectious diseases such as tuberculosis and HPV, with an emphasis on identifying immune signatures and correlates of protection. These interdisciplinary efforts integrate biophysics, systems immunology, and translational medicine to uncover fundamental mechanisms and develop diagnostic and therapeutic strategies.

cytoskeleton mechanicsactomyosin contractilitysystems immunologyautoimmune diseaseimmune correlates of protection

Research Overview

Papers
48
Total Citations
659
Papers (5y)
29
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
29total
2022
2023
2024
2025
2026
Citations per year (5y)
287total
20222023202420252026

Selected Papers

15
1
Article|159 citations·2016
Disordered actomyosin networks are sufficient to produce cooperative and telescopic contractility
Ian Linsmeier, Shiladitya Banerjee, Patrick W. Oakes, Wonyeong Jung, Taeyoon Kim, Michael P. Murrell
SJR Q1Nature CommunicationsOA

While the molecular interactions between individual myosin motors and F-actin are well established, the relationship between F-actin organization and actomyosin forces remains poorly understood. Here we explore the accumulation of myosin-induced stresses within a two-dimensional biomimetic model of the disordered actomyosin cytoskeleton, where myosin activity is controlled spatiotemporally using light. By controlling the geometry and the duration of myosin activation, we show that contraction of

Cell BiologyBiochemistry, Genetics and Molecular Biology
2
Article|63 citations·2017
Morphological Transformation and Force Generation of Active Cytoskeletal Networks
Tamara C. Bidone, Wonyeong Jung, Daniel P. Maruri, Carlos Borau, Roger D. Kamm, Taeyoon Kim
SJR Q1PLoS Computational BiologyOA

Cells assemble numerous types of actomyosin bundles that generate contractile forces for biological processes, such as cytokinesis and cell migration. One example of contractile bundles is a transverse arc that forms via actomyosin-driven condensation of actin filaments in the lamellipodia of migrating cells and exerts significant forces on the surrounding environments. Structural reorganization of a network into a bundle facilitated by actomyosin contractility is a physiologically relevant and

Cell BiologyBiochemistry, Genetics and Molecular Biology
3
Article|60 citations·2022
Weak catch bonds make strong networks
Yuval Mulla, Mario J. Avellaneda, Antoine Roland, Lucia Baldauf, Wonyeong Jung, Taeyoon Kim, Sander J. Tans, Gijsje H. Koenderink
SJR Q1Nature MaterialsOA
Cell BiologyBiochemistry, Genetics and Molecular Biology
4
Article|41 citations·2015
F-actin cross-linking enhances the stability of force generation in disordered actomyosin networks
Wonyeong Jung, Michael P. Murrell, Taeyoon Kim
SJR Q1Computational Particle MechanicsOA
Cell BiologyBiochemistry, Genetics and Molecular Biology
5
Article|35 citations·2022
Defining Discriminatory Antibody Fingerprints in Active and Latent Tuberculosis
Nadege Nziza, Deniz Cizmeci, Leela Davies, Edward B. Irvine, Wonyeong Jung, Brooke A. Fenderson, Marwou de Kock, Willem A. Hanekom, Kees L. M. C. Franken, Cheryl L. Day, Tom H. M. Ottenhoff, Galit Alter
SJR Q1Frontiers in ImmunologyOA

(Mtb), that results either in a latent or active form of disease, the latter associated with Mtb spread. In the absence of an effective vaccine, epidemiologic modeling suggests that aggressive treatment of individuals with active TB (ATB) may curb spread. Yet, clinical discrimination between latent (LTB) and ATB remains a challenge. While antibodies are widely used to diagnose many infections, the utility of antibody-based tests to diagnose ATB has only regained significant traction recently. Sp

Infectious DiseasesMedicine
6
Article|32 citations·2023
Humoral signatures of MOG-antibody-associated disease track with age and disease activity
Marianna Spatola, Omar Chuquisana, Wonyeong Jung, Joseph A. Lopez, Eva‐Maria Wendel, Sudarshini Ramanathan, Christian W. Keller, Tim Hahn, Edgar Meinl, Markus Reindl, Russell C. Dale, Heinz Wiendl
SJR Q1Cell Reports MedicineOA

Myelin oligodendrocyte glycoprotein (MOG)-antibody (Ab)-associated disease (MOGAD) is an inflammatory demyelinating disease of the CNS. Although MOG is encephalitogenic in different mammalian species, the mechanisms by which human MOG-specific Abs contribute to MOGAD are poorly understood. Here, we use a systems-level approach combined with high-dimensional characterization of Ab-associated immune features to deeply profile humoral immune responses in 123 patients with MOGAD. We show that age is

Radiology, Nuclear Medicine and ImagingMedicine
7
Article|29 citations·2019
Dynamic motions of molecular motors in the actin cytoskeleton
Wonyeong Jung, A. Pasha Tabatabai, J. Jaworek Thomas, S. M. Ali Tabei, Michael P. Murrell, Taeyoon Kim
SJR Q2CytoskeletonOA

During intracellular transport, cellular cargos, such as organelles, vesicles, and proteins, are transported within cells. Intracellular transport plays an important role in diverse cellular functions. Molecular motors walking on the cytoskeleton facilitate active intracellular transport, which is more efficient than diffusion-based passive transport. Active transport driven by kinesin and dynein walking on microtubules has been studied well during recent decades. However, mechanisms of active t

Atomic and Molecular Physics, and OpticsPhysics and Astronomy
8
Article|27 citations·2023
Differences in HPV-specific antibody Fc-effector functions following Gardasil® and Cervarix® vaccination
Vicky Roy, Wonyeong Jung, Caitlyn Linde, Emily E. Coates, Julie E. Ledgerwood, Pamela Costner, Galina V. Yamshchikov, Hendrik Streeck, Boris D. Juelg, Douglas A. Lauffenburger, Galit Alter
SJR Q1npj VaccinesOA

Gardasil® (Merck) and Cervarix® (GlaxoSmithKline) both provide protection against infection with Human Papillomavirus 16 (HPV16) and Human Papillomavirus 18 (HPV18), that account for around 70% of cervical cancers. Both vaccines have been shown to induce high levels of neutralizing antibodies and are known to protect against progression beyond cervical intraepithelial neoplasia grade 2 (CIN2+), although Cervarix® has been linked to enhanced protection from progression. However, beyond the transm

Radiology, Nuclear Medicine and ImagingMedicine
9
Review|25 citations·2020
Nonlinear Elastic and Inelastic Properties of Cells
Wonyeong Jung, Jing Li, Ovijit Chaudhuri, Taeyoon Kim
SJR Q3Journal of Biomechanical EngineeringOA

Mechanical forces play an important role in various physiological processes, such as morphogenesis, cytokinesis, and migration. Thus, in order to illuminate mechanisms underlying these physiological processes, it is crucial to understand how cells deform and respond to external mechanical stimuli. During recent decades, the mechanical properties of cells have been studied extensively using diverse measurement techniques. A number of experimental studies have shown that cells are far from linear

Cell BiologyBiochemistry, Genetics and Molecular Biology
10
Article|24 citations·2016
F-Actin Fragmentation Induces Distinct Mechanisms of Stress Relaxation in the Actin Cytoskeleton
Wonyeong Jung, Michael P. Murrell, Taeyoon Kim
SJR Q1ACS Macro Letters

The diverse mechanical properties of the F-actin cytoskeleton mediate essential physical behaviors of the cells, including cell division, migration, and shape change. These properties include strain stiffening and stress relaxation that limit cell shape change and determine its rate. To date, stress relaxation has been mainly attributed to the transient nature of cross-linkers that connect F-actins. By contrast, the potential impacts of rich F-actin dynamics to the stress relaxation have been ne

Cell BiologyBiochemistry, Genetics and Molecular Biology
11
Article|21 citations·2023
Neurologic sequelae of COVID-19 are determined by immunologic imprinting from previous coronaviruses
Marianna Spatola, Nadège Nziza, Wonyeong Jung, Yixiang Deng, Dansu Yuan, Alessandro Dinoto, Silvia Bozzetti, Vanessa Chiodega, Sérgio Ferrari, Douglas A. Lauffenburger, Sara Mariotto, Galit Alter
SJR Q1BrainOA

Coronavirus disease 2019 (COVID-19), which is caused by the severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), remains a global public health emergency. Although SARS-CoV-2 is primarily a respiratory pathogen, extra-respiratory organs, including the CNS, can also be affected. Neurologic symptoms have been observed not only during acute SARS-CoV-2 infection, but also at distance from respiratory disease, also known as long-COVID or neurological post-acute sequelae of COVID-19 (neuroPAS

NeurologyMedicine
12
Article|18 citations·2020
Collective and contractile filament motions in the myosin motility assay
Wonyeong Jung, Luke A. Fillenwarth, Atsushi Matsuda, Jing Li, Yasuhiro Inoue, Taeyoon Kim
SJR Q2Soft MatterOA

Cells require mechanical forces for their physiological functions. The forces are generated mainly from molecular interactions between actin filaments, cross-linking proteins, and myosin motors in the actin cytoskeleton. To better understand the molecular interactions, many studies employed myosin motility assays with actin filaments propelled by myosin heads fixed on a surface. Various interesting behaviors of actin filaments have been observed in the motility assay experiments. Despite the pop

Cell BiologyBiochemistry, Genetics and Molecular Biology
13
Article|17 citations·2024
Distinctive antibody responses to Mycobacterium tuberculosis in pulmonary and brain infection
Marianna Spatola, Nadège Nziza, Edward B. Irvine, Deniz Cizmeci, Wonyeong Jung, Le Hong Van, Le Thanh Hoang Nhat, Vu Thi Ngoc Ha, Nguyen Hoan Phu, Đặng Trung Nghĩa Hồ, Guy Thwaites, Douglas A. Lauffenburger
SJR Q1BrainOA

Mycobacterium tuberculosis, the causative agent of tuberculosis (TB), remains a global health burden. While M. tuberculosis is primarily a respiratory pathogen, it can spread to other organs, including the brain and meninges, causing TB meningitis (TBM). However, little is known about the immunological mechanisms that lead to differential disease across organs. Attention has focused on differences in T cell responses in the control of M. tuberculosis in the lungs, but emerging data point to a ro

SurgeryMedicine
14
Article|15 citations·2024
Myosin‐induced F‐actin fragmentation facilitates contraction of actin networks
Kyohei Matsuda, Wonyeong Jung, Yusei Sato, Takuya Kobayashi, Masahiko Yamagishi, Taeyoon Kim, Junichiro Yajima
SJR Q2CytoskeletonOA

Mechanical forces play a crucial role in diverse physiological processes, such as cell migration, cytokinesis, and morphogenesis. The actin cytoskeleton generates a large fraction of the mechanical forces via molecular interactions between actin filaments (F-actins) and myosin motors. Recent studies have shown that the common tendency of actomyosin networks to contract into a smaller structure deeply involves F-actin buckling induced by motor activities, fragmentation of F-actins, and the force-

Cell BiologyBiochemistry, Genetics and Molecular Biology
15
Article|14 citations·2024
Compartment-specific antibody correlates of protection to SARS-CoV-2 Omicron in macaques
Xin Tong, Qixin Wang, Wonyeong Jung, Taras M. Chicz, Ross Blanc, Lily J. Parker, Dan H. Barouch, Ryan P. McNamara
SJR Q1iScienceOA

Antibodies represent a primary mediator of protection against respiratory viruses. Serum neutralizing antibodies (NAbs) are often considered a primary correlate of protection. However, detailed antibody profiles including characterization of antibody functions in different anatomic compartments are poorly understood. Here we show that antibody correlates of protection against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) challenge are different in systemic versus mucosal compartme

Infectious DiseasesMedicine

Research Areas

Cell BiologyInfectious DiseasesRadiology, Nuclear Medicine and ImagingVirologyCondensed Matter PhysicsNeurology

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