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유주연 교수

Joo‐Yeon Yoo

포항공과대학교 생명과학과 · 생화학·유전·분자생물학

연구실 소개

유주연 교수의 연구실은 면역 반응 조절, 바이러스 감염 메커니즘, 그리고 생체 모방 조직 공학을 중심으로 한 다학제적 연구를 수행하고 있습니다. 특히 RIG-I 기반의 인터페론 반응 조절, 바이러스 복제 억제를 위한 세포 내 분해 경로의 기능, 그리고 3D 생체 인쇄 기반의 인간 폐 모델 개발을 통해 감염병 및 폐질환의 병태생리를 규명하고자 합니다. 이와 더불어, 만성 염증과 암 발생 간의 분자적 연관성, 특히 FAT10와 p53 간의 상호 억제 메커니즘을 규명하는 데에도 주력하고 있습니다.

바이러스 감염면역 조절3D 생체 인쇄자율형 분해 경로만성 염증-암 연관성

연구 현황

논문 수
55
총 인용 수
2,038
최근 5년 논문
14
주요 분야
생화학·유전·분자생물학

연구 성과 추이

표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.

5개년 연도별 논문 게재 수
14총합
2021
2022
2023
2024
2025
5개년 연도별 피인용 수
236총합
20212022202320242025

주요 논문

15
1
논문|인용수 279·2008
The ABC transporter AtABCB14 is a malate importer and modulates stomatal response to CO2
Mi‐Young Lee, Yongwook Choi, Bo Burla, Yu‐Young Kim, Byeongwook Jeon, Masayoshi Maeshima, Joo‐Yeon Yoo, Enrico Martinoia, Youngsook Lee
SJR Q1Nature Cell BiologyOA
Plant ScienceAgricultural and Biological Sciences
2
논문|인용수 236·2007
Negative Feedback Regulation of RIG-I-Mediated Antiviral Signaling by Interferon-Induced ISG15 Conjugation
Min-Jung Kim, Sunyoung Hwang, Tadaatsu Imaizumi, Joo‐Yeon Yoo
SJR Q1Journal of VirologyOA

RIG-I senses intracellular virus-specific nucleic acid structures and initiates an antiviral response that induces interferon (IFN) production, which, in turn, activates the transcription of RIG-I to increase RIG-I protein levels. Upon intracellular poly(I:C) stimulation, however, the levels of RIG-I protein did not correlate with the expression patterns of RIG-I transcripts. When the ISG15 conjugation system was overexpressed, ISG15 was conjugated to RIG-I and cellular levels of the unconjugate

ImmunologyImmunology and Microbiology
3
논문|인용수 212·2015
Mutations in DDX58, which Encodes RIG-I, Cause Atypical Singleton-Merten Syndrome
Mi‐Ae Jang, Eun Kyoung Kim, Hesung Now, Nhung Nguyen, Woo Jong Kim, Joo‐Yeon Yoo, Jinhyuk Lee, Yun‐Mi Jeong, Cheol‐Hee Kim, Ok‐Hwa Kim, Seongsoo Sohn, Seong-Hyeuk Nam
SJR Q1The American Journal of Human GeneticsOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
논문|인용수 125·2021
All‐Inkjet‐Printed 3D Alveolar Barrier Model with Physiologically Relevant Microarchitecture
Dayoon Kang, Ju An Park, Woojo Kim, Seongju Kim, Hwa‐Rim Lee, Woo Jong Kim, Joo‐Yeon Yoo, Sungjune Jung
SJR Q1Advanced ScienceOA

With the outbreak of new respiratory viruses and high mortality rates of pulmonary diseases, physiologically relevant models of human respiratory system are urgently needed to study disease pathogenesis, drug efficacy, and pharmaceutics. In this paper, a 3D alveolar barrier model fabricated by printing four human alveolar cell lines, namely, type I and II alveolar cells (NCI-H1703 and NCI-H441), lung fibroblasts (MRC5), and lung microvascular endothelial cells (HULEC-5a) is presented. Automated

Biomedical EngineeringEngineering
5
논문|인용수 101·2017
Freeform micropatterning of living cells into cell culture medium using direct inkjet printing
Ju An Park, Sejeong Yoon, Jimin Kwon, Hesung Now, Young Kwon Kim, Woo Jong Kim, Joo‐Yeon Yoo, Sungjune Jung
SJR Q1Scientific ReportsOA

Microfabrication methods have widely been used to control the local cellular environment on a micron scale. However, accurately mimicking the complexity of the in vivo tissue architecture while maintaining the freedom of form and design is still a challenge when co-culturing multiple types of cells on the same substrate. For the first time, we present a drop-on-demand inkjet printing method to directly pattern living cells into a cell-friendly liquid environment. High-resolution control of cell

Biomedical EngineeringEngineering
6
논문|인용수 99·2018
Formyl-methionine as an N-degron of a eukaryotic N-end rule pathway
Jeong‐Mok Kim, Ok-Hee Seok, Shinyeong Ju, Jieun Heo, Jeonghun Yeom, Dasom Kim, Joo‐Yeon Yoo, Alexander Varshavsky, Cheolju Lee, Cheol‐Sang Hwang
SJR Q1ScienceOA

In bacteria, nascent proteins bear the pretranslationally generated N-terminal (Nt) formyl-methionine (fMet) residue. Nt-fMet of bacterial proteins is a degradation signal, termed fMet/N-degron. By contrast, proteins synthesized by cytosolic ribosomes of eukaryotes were presumed to bear unformylated Nt-Met. Here we found that the yeast formyltransferase Fmt1, although imported into mitochondria, could also produce Nt-formylated proteins in the cytosol. Nt-formylated proteins were strongly up-reg

OncologyMedicine
7
논문|인용수 97·2016
Interferon-inducible protein SCOTIN interferes with HCV replication through the autolysosomal degradation of NS5A
Nari Kim, Min‐Jung Kim, Pil Soo Sung, Yong Chul Bae, Eui‐Cheol Shin, Joo‐Yeon Yoo
SJR Q1Nature CommunicationsOA

Hepatitis C virus (HCV) utilizes autophagy to promote its propagation. Here we show the autophagy-mediated suppression of HCV replication via the endoplasmic reticulum (ER) protein SCOTIN. SCOTIN overexpression inhibits HCV replication and infectious virion production in cells infected with cell culture-derived HCV. HCV nonstructural 5A (NS5A) protein, which is a critical factor for HCV RNA replication, interacts with the IFN-β-inducible protein SCOTIN, which transports NS5A to autophagosomes fo

EpidemiologyMedicine
8
논문|인용수 83·2017
Mitochondrial chaperone HSP‐60 regulates anti‐bacterial immunity via p38 MAP kinase signaling
Dae‐Eun Jeong, Dong-Yeop Lee, Sunyoung Hwang, Yujin Lee, Jee‐Eun Lee, Mihwa Seo, Wooseon Hwang, Keunhee Seo, Ara B. Hwang, Murat Artan, Heehwa G. Son, Jay‐Hyun Jo
SJR Q1The EMBO JournalOA
AgingBiochemistry, Genetics and Molecular Biology
9
논문|인용수 73·2014
NFκB and STAT3 synergistically activate the expression of FAT10, a gene counteracting the tumor suppressor p53
Yongwook Choi, Jong Kim, Joo‐Yeon Yoo
SJR Q1Molecular OncologyOA

Chronic inflammation is one of the main causes of cancer, yet the molecular mechanism underlying this effect is not fully understood. In this study, we identified FAT10 as a potential target gene of STAT3, the expression of which is synergistically induced by NFκB co-stimulation. STAT3 binding stabilizes NFκB on the FAT10 promoter and leads to maximum induction of FAT10 gene expression. Increased FAT10 represses the transcriptional activity of the tumor suppressor p53, a protein that accelerates

OncologyMedicine
10
논문|인용수 72·2011
5′-Triphosphate-RNA-independent activation of RIG-I via RNA aptamer with enhanced antiviral activity
Sunyoung Hwang, Hwa-Young Sun, Kwang-Hoon Lee, Byung‐Ha Oh, Yu Jin, Byeang Hyean Kim, Joo‐Yeon Yoo
SJR Q1Nucleic Acids ResearchOA

RIG-I is a cytosolic receptor for non-self RNA that mediates immune responses against viral infections through IFNα/β production. In an attempt to identify novel tools that modulate IFNα/β production, we used SELEX technology to screen RNA aptamers that specifically target RIG-I protein. Most of the selected RIG-I aptamers contained polyU motifs in the second half regions that played critical roles in the activation of RIG-I-mediated IFNβ production. Unlike other known ligands, RIG-I aptamer bou

ImmunologyImmunology and Microbiology
11
논문|인용수 56·2010
Inhibition of Hepatitis C Virus Replication by IFN-Mediated ISGylation of HCV-NS5A
Min-Jung Kim, Joo‐Yeon Yoo
SJR Q1The Journal of ImmunologyOA

ISG15 is a ubiquitin-like molecule whose expression is induced by type I IFN (IFN-α/β) or in response to virus or bacterial infection. ISG15 or conjugation of ISG15 to target proteins was reported to play critical roles in the regulation of antiviral responses. IFN restricts replication of hepatitis C virus (HCV). However, molecular mechanism of IFN-α/β that inhibits HCV replication is not clear yet. In the current study, we demonstrated that replication of HCV was inhibited by overexpression of

ImmunologyImmunology and Microbiology
12
논문|인용수 54·2016
Ubiquitin-like modifier FAT10 attenuates RIG-I mediated antiviral signaling by segregating activated RIG-I from its signaling platform
Nhung Nguyen, Hesung Now, Woo Jong Kim, Nari Kim, Joo‐Yeon Yoo
SJR Q1Scientific ReportsOA

RIG-I is a key cytosolic RNA sensor that mediates innate immune defense against RNA virus. Aberrant RIG-I activity leads to severe pathological states such as autosomal dominant multi-system disorder, inflammatory myophathies and dermatomyositis. Therefore, identification of regulators that ensure efficient defense without harmful immune-pathology is particularly critical to deal with RIG-I-associated diseases. Here, we presented the inflammatory inducible FAT10 as a novel negative regulator of

ImmunologyImmunology and Microbiology
13
리뷰|인용수 43·2024
Interplay between membranes and biomolecular condensates in the regulation of membrane-associated cellular processes
Nari Kim, Hyeri Yun, Ho‐Jin Lee, Joo‐Yeon Yoo
SJR Q1Experimental & Molecular MedicineOA

Liquid‒liquid phase separation (LLPS) has emerged as a key mechanism for organizing cellular spaces independent of membranes. Biomolecular condensates, which assemble through LLPS, exhibit distinctive liquid droplet-like behavior and can exchange constituents with their surroundings. The regulation of condensate phases, including transitions from a liquid state to gel or irreversible aggregates, is important for their physiological functions and for controlling pathological progression, as obser

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
논문|인용수 33·2013
Biphasic RLR–IFN-β Response Controls the Balance between Antiviral Immunity and Cell Damage
Sunyoung Hwang, Kye-Yeon Hur, Jeong‐Rae Kim, Kwang‐Hyun Cho, Seunghwan Kim, Joo‐Yeon Yoo
SJR Q1The Journal of Immunology

In RNA virus-infected cells, retinoic acid-inducible gene-I-like receptors (RLRs) sense foreign RNAs and activate signaling cascades to produce IFN-α/β. However, not every infected cell produces IFN-α/β that exhibits cellular heterogeneity in antiviral immune responses. Using the IFN-β-GFP reporter system, we observed bimodal IFN-β production in the uniformly stimulated cell population with intracellular dsRNA. Mathematical simulation proposed the strength of autocrine loop via RLR as one of the

ImmunologyImmunology and Microbiology
15
논문|인용수 17·2015
Protein Degradation of RNA Polymerase II-Association Factor 1(PAF1) Is Controlled by CNOT4 and 26S Proteasome
Hwa-Young Sun, Nari Kim, Cheol‐Sang Hwang, Joo‐Yeon Yoo
SJR Q1PLoS ONEOA

The PAF complex (PAFc) participates in various steps of the transcriptional process, from initiation to termination, by interacting with and recruiting various proteins to the proper locus for each step. PAFc is an evolutionarily conserved, multi-protein complex comprising PAF1, CDC73, CTR9, LEO1, yRTF1 and, in humans, hSKI8. These components of PAFc work together, and their protein levels are closely interrelated. In the present study, we investigated the mechanism of PAF1 protein degradation.

Molecular BiologyBiochemistry, Genetics and Molecular Biology

대표 연구 분야

ImmunologyMolecular BiologyEpidemiologyOncologyBiomedical EngineeringAging

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