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이민재 교수

Min Jae Lee

서울대학교 · 의학

연구실 소개

이민재 교수의 연구실은 단백질 분해 체계, 특히 N-끝 규칙 경로와 유비퀴틴 의존성 단백질 분해 메커니즘을 중심으로 연구를 진행하고 있습니다. 특히, N-말단 아르기닌화가 단백질의 안정성과 기능 조절에 미치는 영향을 규명하고 있으며, 심장 발달과 혈관 형성과 관련된 단백질의 조절 메커니즘을 밝혀내고 있습니다. 또한, 타겟 단백질 분해(TPD) 기반의 신약 개발 전략과 광가시성 분자 이미징 기술을 접목한 생물학적 연구도 활발히 수행하고 있습니다.

N-끝 규칙 경로단백질 분해유비퀴틴 시스템타겟 단백질 분해생물학적 이미징

연구 현황

논문 수
265
총 인용 수
8,506
최근 5년 논문
56
주요 분야
의학

연구 성과 추이

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

5개년 연도별 논문 게재 수
56총합
2022
2023
2024
2025
2026
5개년 연도별 피인용 수
418총합
20222023202420252026

주요 논문

15
1
리뷰|인용수 358·2013
Tau degradation: The ubiquitin–proteasome system versus the autophagy-lysosome system
Min Jae Lee, Jung Hoon Lee, David C. Rubinsztein
SJR Q1FWCI 18.3Progress in Neurobiology
EpidemiologyMedicine
2
논문|인용수 266·2005
RGS4 and RGS5 are <i>in vivo</i> substrates of the N-end rule pathway
Min Jae Lee, Takafumi Tasaki, Kayoko Moroi, Jee Young An, Sadao Kimura, Ilia V. Davydov, Yong Tae Kwon
SJR Q1FWCI 8.3Proceedings of the National Academy of SciencesOA

The ATE1-encoded Arg-transferase mediates conjugation of Arg to N-terminal Asp, Glu, and Cys of certain eukaryotic proteins, yielding N-terminal Arg that can act as a degradation signal for the ubiquitin-dependent N-end rule pathway. We have previously shown that mouse ATE1-/- embryos die with defects in heart development and angiogenesis. Here, we report that the ATE1 Arg-transferase mediates the in vivo degradation of RGS4 and RGS5, which are negative regulators of specific G proteins whose fu

GeneticsBiochemistry, Genetics and Molecular Biology
3
리뷰|인용수 238·2010
Trimming of Ubiquitin Chains by Proteasome-associated Deubiquitinating Enzymes
Min Jae Lee, Byung‐Hoon Lee, John Hanna, Randall W. King, Daniel Finley
SJR Q1FWCI 7.8Molecular & Cellular ProteomicsOA

The proteasome generally recognizes substrate via its multiubiquitin chain followed by ATP-dependent unfolding and translocation of the substrate from the regulatory particle into the proteolytic core particle to be degraded. Substrate-bound ubiquitin groups are for the most part not delivered to the core particle and broken down together with substrate but instead recovered as intact free ubiquitin and ubiquitin chains. Substrate deubiquitination on the proteasome is mediated by three distinct

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
논문|인용수 167·2011
Urinary Biomarkers and Renal Recovery in Critically Ill Patients with Renal Support
Nattachai Srisawat, Xiao‐Yan Wen, Min Jae Lee, Lan Kong, Michele Elder, Melinda Carter, Mark L. Unruh, Kevin W. Finkel, Anitha Vijayan, Ramkumar Mohan, Emil Paganini, Kai Singbartl
SJR Q1FWCI 6.8Clinical Journal of the American Society of NephrologyOA

We showed that a panel of urine biomarkers can augment clinical risk prediction for recovery after AKI.

NephrologyMedicine
5
논문|인용수 96·2012
Photoswitchable fluorescent diarylethene in a turn-on mode for live cell imaging
Shichong Pang, Hyesook Hyun, Seungah Lee, Daeun Jang, Min Jae Lee, Seong Ho Kang, Kwang‐Hyun Ahn
SJR Q1FWCI 6.6Chemical Communications

A new diarylethene-derived photochromic compound, with little cytotoxicity, plasma membrane-permeability, and efficient photoswitchability in cells upon alternative UV and visible light irradiation, was synthesized and applied to live cell imaging.

Materials ChemistryMaterials Science
6
논문|인용수 80·2007
Synthetic heterovalent inhibitors targeting recognition E3 components of the N-end rule pathway
Min Jae Lee, Krishnendu Pal, Takafumi Tasaki, Sayantani Roy, Yonghua Jiang, Jee Young An, Rintu Banerjee‬‬‬‬‬‬‬‬‬, Yong Tae Kwon
SJR Q1FWCI 1.7Proceedings of the National Academy of SciencesOA

Multivalent binding allows high selectivity and affinity in a ligand–protein interaction. The N-end rule pathway is a ubiquitin (Ub)-dependent proteolytic system in which specific E3s, called N-recognins, mediate ubiquitylation through the recognition of types 1 and 2, destabilizing N-terminal residues of substrates. We recently identified a set of E3 Ub ligases (named UBR1–UBR7) containing the 70-residue UBR box, and we demonstrated that UBR1, UBR2, UBR4, and UBR5 can bind to destabilizing N-te

Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
리뷰|인용수 78·2024
Targeted protein degradation directly engaging lysosomes or proteasomes
Jiseong Kim, Insuk Byun, Do Young Kim, Hyunhi Joh, Hak Joong Kim, Min Jae Lee
SJR Q1FWCI 18.2Chemical Society ReviewsOA

Targeted protein degradation (TPD) has been established as a viable alternative to attenuate the function of a specific protein of interest in both biological and clinical contexts. The unique TPD mode-of-action has allowed previously undruggable proteins to become feasible targets, expanding the landscape of "druggable" properties and "privileged" target proteins. As TPD continues to evolve, a range of innovative strategies, which do not depend on recruiting E3 ubiquitin ligases as in proteolys

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
논문|인용수 65·2020
Aggresomal sequestration and STUB1-mediated ubiquitylation during mammalian proteaphagy of inhibited proteasomes
Won Hoon Choi, Yejin Yun, Seoyoung Park, Jun Hyoung Jeon, Jeeyoung Lee, Jung Hoon Lee, Su‐A Yang, Nak-Kyoon Kim, Chan Hoon Jung, Yong Tae Kwon, Dohyun Han, Sang Min Lim
SJR Q1FWCI 4.0Proceedings of the National Academy of SciencesOA

The 26S proteasome, a self-compartmentalized protease complex, plays a crucial role in protein quality control. Multiple levels of regulatory systems modulate proteasomal activity for substrate hydrolysis. However, the destruction mechanism of mammalian proteasomes is poorly understood. We found that inhibited proteasomes are sequestered into the insoluble aggresome via HDAC6- and dynein-mediated transport. These proteasomes colocalized with the autophagic receptor SQSTM1 and cleared through sel

Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
리뷰|인용수 52·2016
Exosomes as the source of biomarkers of metabolic diseases
Min Jae Lee, Dong-Ho Park, Ju‐Hee Kang
SJR Q1FWCI 3.7Annals of Pediatric Endocrinology & MetabolismOA

Exosomes are extracellular vesicles that contain molecules that regulate the metabolic functions of adjacent or remote cells. Recent <i>in vitro</i>, <i>in vivo</i> and clinical studies support the hypothesis that exosomes released from various cell types play roles in the progression of metabolic disorders including type 2 diabetes. Based on this concept and advances in other diseases, the proteins, mRNA, microRNA and lipids in exosomes isolated from biological fluids have been proposed as biom

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
논문|인용수 51·2012
Characterization of Arginylation Branch of N-end Rule Pathway in G-protein-mediated Proliferation and Signaling of Cardiomyocytes
Min Jae Lee, Dong‐Eun Kim, Adriana Zakrzewska, Young Dong Yoo, Su Hyeon Kim, Sung Tae Kim, Jai Wha Seo, Young Sook Lee, Gerald W. Dorn, U. T. Oh, Bo Yeon Kim, Yong Tae Kwon
SJR Q1FWCI 1.7Journal of Biological ChemistryOA

The N-end rule pathway is a proteolytic system in which destabilizing N-terminal amino acids of short lived proteins are recognized by recognition components (N-recognins) as an essential element of degrons, called N-degrons. In eukaryotes, the major way to generate N-degrons is through arginylation by ATE1 arginyl-tRNA-protein transferases, which transfer Arg from aminoacyl-tRNA to N-terminal Asp and Glu (and Cys as well in mammals). We have shown previously that ATE1-deficient mice die during

Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
리뷰|인용수 49·2020
Docosahexaenoic Acid, a Potential Treatment for Sarcopenia, Modulates the Ubiquitin–Proteasome and the Autophagy–Lysosome Systems
Jung Hoon Lee, Jun Hyoung Jeon, Min Jae Lee
SJR Q1FWCI 2.9NutrientsOA

One of the characteristic features of aging is the progressive loss of muscle mass, a nosological syndrome called sarcopenia. It is also a pathologic risk factor for many clinically adverse outcomes in older adults. Therefore, delaying the loss of muscle mass, through either boosting muscle protein synthesis or slowing down muscle protein degradation using nutritional supplements could be a compelling strategy to address the needs of the world's aging population. Here, we review the recently ide

Cell BiologyBiochemistry, Genetics and Molecular Biology
12
논문|인용수 45·2002
Optimal salt concentration of vehicle for plasmid DNA enhances gene transfer mediated by electroporation
Min Jae Lee, Soon-Shin Cho, Hyung-Suk Jang, Young Shin Lim, Ji‐Ran You, Jangwon Park, Hearan Suh, Jeong‐a Kim, Jong-Sang Park, Duk‐Kyung Kim
SJR Q1FWCI 2.9Experimental & Molecular MedicineOA

In vivo electroporation has emerged as a leading technology for developing nonviral gene therapies, and the various technical parameters governing electroporation efficiency have been optimized by both theoretical and experimental analysis. However, most electroporation parameters focused on the electric conditions and the preferred vehicle for plasmid DNA injections has been normal saline. We hypothesized that salts in vehicle for plasmid DNA must affect the efficiency of DNA transfer because c

BiotechnologyBiochemistry, Genetics and Molecular Biology
13
논문|인용수 44·2013
Coarse mesh finite difference formulation for accelerated Monte Carlo eigenvalue calculation
Min Jae Lee, Han Gyu Joo, Deokjung Lee, Kord Smith
SJR Q1FWCI 75.3Annals of Nuclear Energy
Aerospace EngineeringEngineering
14
논문|인용수 42·2002
Intraperitoneal gene delivery mediated by a novel cationic liposome in a peritoneal disseminated ovarian cancer model
Min Jae Lee, S. S. Cho, J-R You, Yan Lee, B-D Kang, Joon Sig Choi, J-W Park, Y.‐L. Suh, J-A Kim, D-K Kim, J-S Park
SJR Q1FWCI 0.8Gene Therapy
Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
논문|인용수 40·2022
The Cys-N-degron pathway modulates pexophagy through the N-terminal oxidation and arginylation of ACAD10
Sang Mi Shim, Ha Rim Choi, Soon Chul Kwon, Hye Yeon Kim, Ki Woon Sung, Eui Jung Jung, Su Ran Mun, Tae‐Hyun Bae, Dong Hyun Kim, Yeon Sung Son, Chan Hoon Jung, Jihoon Lee
SJR Q1FWCI 3.0AutophagyOA

In the N-degron pathway, N-recognins recognize cognate substrates for degradation via the ubiquitin (Ub)-proteasome system (UPS) or the autophagy-lysosome system (hereafter autophagy). We have recently shown that the autophagy receptor SQSTM1/p62 (sequestosome 1) is an N-recognin that binds the N-terminal arginine (Nt-Arg) as an N-degron to modulate autophagic proteolysis. Here, we show that the N-degron pathway mediates pexophagy, in which damaged peroxisomal fragments are degraded by autophagy

Molecular BiologyBiochemistry, Genetics and Molecular Biology

대표 연구 분야

Molecular BiologyMaterials ChemistryPhysiologyEpidemiologyOncologyNeurology

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