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Jun-Young Seo

Yonsei University · Medicine

About the Lab

Professor Jun-Young Seo's research lab focuses on the multifaceted roles of the host restriction factor viperin in viral infection, cellular metabolism, and metabolic disease. The lab investigates how viruses like human cytomegalovirus subvert host defense mechanisms by manipulating viperin to rewire cellular metabolism—particularly fatty acid oxidation and ATP production—thereby promoting viral replication. A central theme is the dual function of viperin: as an antiviral protein and a metabolic regulator, with emerging roles in adipose tissue thermogenesis and systemic metabolic homeostasis. The lab also explores viperin's intrinsic functions in immune cells and its implications in cancer progression and inflammation.

viperinviral immune evasionmetabolic reprogrammingmitochondrial metabolismadipose thermogenesis

Research Overview

Papers
53
Total Citations
1,326
Papers (5y)
27
Primary Field
Medicine

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
27total
2020
2022
2023
2024
2025
Citations per year (5y)
213total
20202022202320242025

Selected Papers

15
1
Review|261 citations·2011
Viperin: A Multifunctional, Interferon-Inducible Protein that Regulates Virus Replication
Jun-Young Seo, Rakina Yaneva, Peter Cresswell
SJR Q1Cell Host & MicrobeOA
EpidemiologyMedicine
2
Article|230 citations·2011
Human Cytomegalovirus Directly Induces the Antiviral Protein Viperin to Enhance Infectivity
Jun-Young Seo, Rakina Yaneva, Ella R. Hinson, Peter Cresswell
SJR Q1ScienceOA

Viperin is an interferon-inducible protein that is directly induced in cells by human cytomegalovirus (HCMV) infection. Why HCMV would induce viperin, which has antiviral activity, is unknown. We show that HCMV-induced viperin disrupts cellular metabolism to enhance the infectious process. Viperin interaction with the viral protein vMIA resulted in viperin relocalization from the endoplasmic reticulum to the mitochondria. There, viperin interacted with the mitochondrial trifunctional protein tha

EpidemiologyMedicine
3
Article|115 citations·2013
Viperin Regulates Cellular Lipid Metabolism during Human Cytomegalovirus Infection
Jun-Young Seo, Peter Cresswell
SJR Q1PLoS PathogensOA

Human cytomegalovirus (HCMV) has been shown to induce increased lipogenesis in infected cells, and this is believed to be required for proper virion envelopment. We show here that this increase is a consequence of the virus-induced redistribution of the host protein viperin to mitochondria and its capacity to interact with and block the function of the mitochondrial trifunctional protein (TFP), the enzyme that mediates fatty acid-β-oxidation. The resulting decrease in cellular ATP levels activat

EpidemiologyMedicine
4
Article|74 citations·2009
Kalopanaxsaponin A inhibits PMA-induced invasion by reducing matrix metalloproteinase-9 via PI3K/Akt- and PKC -mediated signaling in MCF-7 human breast cancer cells
S. K. Park, Young Sun Hwang, K.-K. Park, HUN‐JUN PARK, Jun-Young Seo, Won‐Yoon Chung
SJR Q1CarcinogenesisOA

Induction of matrix metalloproteinase (MMP)-9 is particularly important for the invasiveness of breast cancers. We investigated the inhibitory effect of kalopanaxsaponin A (KPS-A) on cell invasion and MMP-9 activation in phorbol 12-myristate 13-acetate (PMA)-treated MCF-7 human breast cancer cells. KPS-A inhibited PMA-induced cell proliferation and invasion. PMA-induced cell invasion was blocked in the presence of a primary antibody of MMP-9, and KPS-A suppressed the increased expression and/or

BiomaterialsMaterials Science
5
Article|68 citations·2019
Intrinsic expression of viperin regulates thermogenesis in adipose tissues
John Eom, Jeong Jin Kim, Seul Gi Yoon, Haengdueng Jeong, Soojin Son, Jae-Bong Lee, Jihye Yoo, Hyun‐Ju Seo, Yejin Cho, Ku Sul Kim, Kyung Mi Choi, Il Yong Kim
SJR Q1Proceedings of the National Academy of SciencesOA

Viperin is an interferon (IFN)-inducible multifunctional protein. Recent evidence from high-throughput analyses indicates that most IFN-inducible proteins, including viperin, are intrinsically expressed in specific tissues; however, the respective intrinsic functions are unknown. Here we show that the intrinsic expression of viperin regulates adipose tissue thermogenesis, which is known to counter metabolic disease and contribute to the febrile response to pathogen invasion. Viperin knockout mic

ImmunologyImmunology and Microbiology
6
Article|60 citations·2006
Sequence Requirements for Localization of Human Cytomegalovirus Tegument Protein pp28 to the Virus Assembly Compartment and for Assembly of Infectious Virus
Jun-Young Seo, William J. Britt
SJR Q1Journal of VirologyOA

The human cytomegalovirus UL99 open reading frame encodes a 190-amino-acid (aa) tegument protein, pp28, that is myristoylated and phosphorylated. pp28 is essential for assembly of infectious virus, and nonenveloped virions accumulate in the cytoplasm of cells infected with recombinant viruses with a UL99 deletion. pp28 is localized to the endoplasmic reticulum-Golgi intermediate compartment (ERGIC) in transfected cells, while in infected cells, it is localized together with other virion proteins

EpidemiologyMedicine
7
Article|57 citations·2018
Viperin Deficiency Promotes Polarization of Macrophages and Secretion of M1 and M2 Cytokines
John Eom, Jihye Yoo, Jeong Jin Kim, Jae-Bong Lee, Wanho Choi, Chae Gyu Park, Jun-Young Seo
SJR Q1Immune NetworkOA

Viperin is a multifunctional protein that was first identified in human primary macrophages treated with interferon-γ and in human fibroblasts infected with human cytomegalovirus. This protein plays a role as an anti-viral protein and a regulator of cell signaling pathways or cellular metabolism when induced in a variety of cells such as fibroblasts, hepatocytes and immune cells including T cells and dendritic cells. However, the role of viperin in macrophages is unknown. Here, we show that vipe

ImmunologyImmunology and Microbiology
8
Article|54 citations·2007
Cytoplasmic Envelopment of Human Cytomegalovirus Requires the Postlocalization Function of Tegument Protein pp28 within the Assembly Compartment
Jun-Young Seo, William J. Britt
SJR Q1Journal of VirologyOA

The assembly of herpesvirus remains incompletely defined due to the structural complexity of these viruses. Although the assembly of the capsid of these large DNA viruses is well studied and reasonably well conserved for all members of this diverse family of viruses, the cytoplasmic processes of tegumentation and envelopment are not well understood. The virion of the largest human herpesvirus, human cytomegalovirus (HCMV), contains over 70 virus-encoded proteins that are incorporated during a nu

EpidemiologyMedicine
9
Article|50 citations·2019
HCMV-encoded US7 and US8 act as antagonists of innate immunity by distinctively targeting TLR-signaling pathways
Areum Park, Eun A., Taeyun A. Lee, Hyun Jin Choi, Eun Hye Lee, Su‐Jin Kang, Jun-Young Seo, Sungwook Lee, Boyoun Park
SJR Q1Nature CommunicationsOA

The mechanisms by which many human cytomegalovirus (HCMV)-encoded proteins help the virus to evade immune surveillance remain poorly understood. In particular, it is unknown whether HCMV proteins arrest Toll-like receptor (TLR) signaling pathways required for antiviral defense. Here, we report that US7 and US8 as key suppressors that bind both TLR3 and TLR4, facilitating their destabilization by distinct mechanisms. US7 exploits the ER-associated degradation components Derlin-1 and Sec61, promot

EpidemiologyMedicine
10
Article|41 citations·2019
Viperin Differentially Induces Interferon-Stimulated Genes in Distinct Cell Types
Jeong Jin Kim, Ku Sul Kim, John Eom, Jae-Bong Lee, Jun-Young Seo
SJR Q1Immune NetworkOA

Viperin is an IFN-stimulated gene (ISG)-encoded protein that was identified in human primary macrophages treated with IFN- and in human primary fibroblasts infected with cytomegalovirus (CMV). This protein plays multiple roles in various cell types. It inhibits viral replication, mediates signaling pathways, and regulates cellular metabolism. Recent studies have shown that viperin inhibits IFN expression in macrophages, while it enhances TLR7 and TLR9-mediated IFN production in plasmacytoid dend

ImmunologyImmunology and Microbiology
11
Article|40 citations·2016
Targeting ODC1 inhibits tumor growth through reduction of lipid metabolism in human hepatocellular carcinoma
Yunseon Choi, Sang Taek Oh, Min-Ah Won, Kyung Mi Choi, Min Ji Ko, Daekwan Seo, Tae-Won Jeon, In Hye Baik, Sang‐Kyu Ye, Keon Uk Park, In‐Chul Park, Byeong-Churl Jang
SJR Q2Biochemical and Biophysical Research CommunicationsOA
BiochemistryBiochemistry, Genetics and Molecular Biology
12
Article|37 citations·2022
The interferon-inducible protein viperin controls cancer metabolic reprogramming to enhance cancer progression
Kyung Mi Choi, Jeong Jin Kim, Jihye Yoo, Ku Sul Kim, Youngeun Gu, John Eom, Haengdueng Jeong, Kyungeun Kim, Ki Taek Nam, Young Soo Park, Joon‐Yong Chung, Jun-Young Seo
SJR Q1Journal of Clinical InvestigationOA

Metabolic reprogramming is an important cancer hallmark. However, the mechanisms driving metabolic phenotypes of cancer cells are unclear. Here, we show that the interferon-inducible (IFN-inducible) protein viperin drove metabolic alteration in cancer cells. Viperin expression was observed in various types of cancer and was inversely correlated with the survival rates of patients with gastric, lung, breast, renal, pancreatic, or brain cancer. By generating viperin knockdown or stably expressing

ImmunologyImmunology and Microbiology
13
Article|28 citations·2008
Multimerization of Tegument Protein pp28 within the Assembly Compartment Is Required for Cytoplasmic Envelopment of Human Cytomegalovirus
Jun-Young Seo, William J. Britt
SJR Q1Journal of VirologyOA

Human cytomegalovirus (HCMV) UL99-encoded pp28 is an essential tegument protein required for envelopment and production of infectious virus. Nonenveloped virions accumulate in the cytoplasm of cells infected with recombinant viruses with the UL99 gene deleted. Previous results have suggested that a key function of pp28 in the envelopment of infectious HCMV is expressed after the protein localizes in the assembly compartment (AC). In this study, we investigated the potential role of pp28 multimer

EpidemiologyMedicine
14
Article|16 citations·2022
Broad humoral and cellular immunity elicited by one-dose mRNA vaccination 18 months after SARS-CoV-2 infection
Chang Kyung Kang, Hyun Mu Shin, Pyoeng Gyun Choe, Jiyoung Park, Jisu Hong, Jung Seon Seo, Yung Hie Lee, Euijin Chang, Nam Joong Kim, Minji Kim, Yong-Woo Kim, Hang‐Rae Kim
SJR Q1BMC MedicineOA

BACKGROUND: Practical guidance is needed regarding the vaccination of coronavirus disease 2019 (COVID-19) convalescent individuals in resource-limited countries. It includes the number of vaccine doses that should be given to unvaccinated patients who experienced COVID-19 early in the pandemic. METHODS: We recruited COVID-19 convalescent individuals who received one or two doses of an mRNA vaccine within 6 or around 18 months after a diagnosis of severe acute respiratory syndrome-coronavirus-2 (

Infectious DiseasesMedicine
15
Article|7 citations·2020
Phosphorylation of tegument protein pp28 contributes to trafficking to the assembly compartment in human cytomegalovirus infection
Jun-Young Seo, Jin Ah Heo, William J. Britt
SJR Q2The Journal of MicrobiologyOA

Human cytomegalovirus (HCMV) UL99 encodes a late tegument protein pp28 that is essential for envelopment and production of infectious virus. This protein is localized to the endoplasmic reticulum-Golgi intermediate compartment (ERGIC) in transfected cells but it localizes to the cytoplasmic assembly compartment (AC) in HCMV-infected cells. Trafficking of pp28 to the AC is required for the assembly of infectious virus. The N-terminal domain (aa 1-61) of pp28 is sufficient for trafficking and func

EpidemiologyMedicine

Research Areas

EpidemiologyInfectious DiseasesImmunologyMolecular BiologyBiomaterialsBiochemistry

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