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김세윤 교수

Seyun Kim

KAIST 생명과학과 · 생화학·유전·분자생물학

연구실 소개

김세윤 교수의 연구실은 인산화된 인오실 대사물질, 특히 이노실 폴리포스페이트와 인오실 피로포스파트(PP-IPs)의 생합성 및 신호전달 기능을 중심으로 연구를 진행하고 있습니다. 특히 IP6 키나제와 IPMK와 같은 효소가 세포의 에너지 대사, 세포 생존 및 성장 신호 경로 조절에 미치는 영향을 분자생물학적·세포생물학적 접근을 통해 규명하고 있습니다. 또한, 이들 대사물질이 암, 대사질환 등 다양한 병리 상태에서 어떻게 기능하는지에 대한 기전 연구도 함께 수행하고 있습니다.

인오실 폴리포스페이트PP-IPsIP6 키나제신호전달대사 조절

연구 현황

논문 수
99
총 인용 수
5,786
최근 5년 논문
32
주요 분야
생화학·유전·분자생물학

연구 성과 추이

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

5개년 연도별 논문 게재 수
32총합
2022
2023
2024
2025
2026
5개년 연도별 피인용 수
265총합
20222023202420252026

주요 논문

15
1
논문|인용수 467·2006
A keratin cytoskeletal protein regulates protein synthesis and epithelial cell growth
Seyun Kim, Pauline Wong, Pierre A. Coulombe
SJR Q1Nature
Cell BiologyBiochemistry, Genetics and Molecular Biology
2
리뷰|인용수 313·2007
Intermediate filament scaffolds fulfill mechanical, organizational, and signaling functions in the cytoplasm
Seyun Kim, Pierre A. Coulombe
SJR Q1Genes & DevelopmentOA

Intermediate filaments (IFs) are cytoskeletal polymers whose protein constituents are encoded by a large family of differentially expressed genes. Owing in part to their properties and intracellular organization, IFs provide crucial structural support in the cytoplasm and nucleus, the perturbation of which causes cell and tissue fragility and accounts for a large number of genetic diseases in humans. A number of additional roles, nonmechanical in nature, have been recently uncovered for IF prote

Cell BiologyBiochemistry, Genetics and Molecular Biology
3
리뷰|인용수 202·2009
Emerging role for the cytoskeleton as an organizer and regulator of translation
Seyun Kim, Pierre A. Coulombe
SJR Q1Nature Reviews Molecular Cell Biology
Cell BiologyBiochemistry, Genetics and Molecular Biology
4
논문|인용수 148·2011
Amino Acid Signaling to mTOR Mediated by Inositol Polyphosphate Multikinase
Seyun Kim, Sangwon F. Kim, David Maag, Micah J. Maxwell, Adam Resnick, Krishna R. Juluri, Anutosh Chakraborty, Michael A. Koldobskiy, Seung Hun, Roxanne K. Barrow, Adele M. Snowman, Solomon H. Snyder
SJR Q1Cell MetabolismOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
논문|인용수 85·2001
Leucine Zipper-mediated Homodimerization of the p21-activated Kinase-interacting Factor, βPix
Seyun Kim, Seung-Hye Lee, Dongeun Park
SJR Q1Journal of Biological ChemistryOA

Pix, a p21-activated kinase-interacting exchange factor, is known to be involved in the regulation of Cdc42/Rac GTPases. The 85-kDa betaPix-a protein contains an Src homology 3 domain, the tandem Dbl homology and Pleckstrin homology domains, a proline-rich region, and a GIT1-binding domain. In addition to those domains, betaPix-a also contains a putative leucine zipper domain at the C-terminal end. In this study, we demonstrate that the previously identified putative leucine zipper domain mediat

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
논문|인용수 59·2007
Interaction between the keratin cytoskeleton and eEF1Bγ affects protein synthesis in epithelial cells
Seyun Kim, Juliane C. Kellner, Chang Hun Lee, Pierre A. Coulombe
SJR Q1Nature Structural & Molecular Biology
Cell BiologyBiochemistry, Genetics and Molecular Biology
7
리뷰|인용수 55·2020
Inositol Pyrophosphates: Signaling Molecules with Pleiotropic Actions in Mammals
Seulgi Lee, Min Kim, Hyoungjoon Ahn, Seyun Kim
SJR Q1MoleculesOA

Inositol pyrophosphates (PP-IPs) such as 5-diphosphoinositol pentakisphosphate (5-IP7) are inositol metabolites containing high-energy phosphoanhydride bonds. Biosynthesis of PP-IPs is mediated by IP6 kinases (IP6Ks) and PPIP5 kinases (PPIP5Ks), which transfer phosphate to inositol hexakisphosphate (IP6). Pleiotropic actions of PP-IPs are involved in many key biological processes, including growth, vesicular remodeling, and energy homeostasis. PP-IPs function to regulate their target proteins th

Cell BiologyBiochemistry, Genetics and Molecular Biology
8
리뷰|인용수 50·2024
The inositol phosphate signalling network in physiology and disease
Seyun Kim, Rashna Bhandari, Charles A. Brearley, Adolfo Saiardi
SJR Q1Trends in Biochemical SciencesOA
SurgeryMedicine
9
리뷰|인용수 45·2022
Drug discovery inspired by bioactive small molecules from nature
Seyun Kim, Seol-Wa Lim, Jiyeon Choi
SJR Q1Animal Cells and SystemsOA

Natural products (NPs) have greatly contributed to the development of novel treatments for human diseases such as cancer, metabolic disorders, and infections. Compared to synthetic chemical compounds, primary and secondary metabolites from medicinal plants, fungi, microorganisms, and our bodies are promising resources with immense chemical diversity and favorable properties for drug development. In addition to the well-validated significance of secondary metabolites, endogenous small molecules d

PharmacologyMedicine
10
논문|인용수 42·2000
Molecular Cloning of Neuronally Expressed Mouse βPix Isoforms
Seyun Kim, Taeho Kim, Deok‐Sun Lee, Sun-Hwa Park, Hyun Kim, Dongeun Park
SJR Q2Biochemical and Biophysical Research Communications
Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
리뷰|인용수 41·2015
IPMK: A versatile regulator of nuclear signaling events
Eunha Kim, Jiyoon Beon, Seulgi Lee, Jina Park, Seyun Kim
SJR Q2Advances in Biological Regulation
Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
리뷰|인용수 38·2017
The Expanding Significance of Inositol Polyphosphate Multikinase as a Signaling Hub
Eunha Kim, Hyoungjoon Ahn, Min Kim, Haein Lee, Seyun Kim
SJR Q1Molecules and CellsOA

The inositol polyphosphates are a group of multifunctional signaling metabolites whose synthesis is catalyzed by a family of inositol kinases that are evolutionarily conserved from yeast to humans. Inositol polyphosphate multikinase (IPMK) was first identified as a subunit of the arginine-responsive transcription complex in budding yeast. In addition to its role in the production of inositol tetrakis- and pentakisphosphates (IP<sub>4</sub> and IP<sub>5</sub>), IPMK also exhibits phosphatidylinos

Cell BiologyBiochemistry, Genetics and Molecular Biology
13
논문|인용수 35·2017
Prediction of drug-induced immune-mediated hepatotoxicity using hepatocyte-like cells derived from human embryonic stem cells
Dong Eon Kim, Mi‐Jin Jang, Young Ran Kim, Jooyoung Lee, Eun Byul Cho, Eunha Kim, Ye-Ji Kim, Mi Young Kim, Won‐Il Jeong, Seyun Kim, Yong‐Mahn Han, Seung‐Hyo Lee
SJR Q1Toxicology
HepatologyMedicine
14
리뷰|인용수 33·2021
Inositol Polyphosphate Multikinase Signaling: Multifaceted Functions in Health and Disease
Boah Lee, Seung Ju Park, Se-Hoon Hong, Kyunghan Kim, Seyun Kim
SJR Q1Molecules and CellsOA

Inositol phosphates are water-soluble intracellular signaling molecules found in eukaryotes from yeasts to mammals, which are synthesized by a complex network of enzymes including inositol phosphate kinases. Among these, inositol polyphosphate multikinase (IPMK) is a promiscuous enzyme with broad substrate specificity, which phosphorylates multiple inositol phosphates, as well as phosphatidylinositol 4,5-bisphosphate. In addition to its catalytic actions, IPMK is known to non-catalytically contr

Cell BiologyBiochemistry, Genetics and Molecular Biology
15
논문|인용수 30·2022
Lomitapide, a cholesterol-lowering drug, is an anticancer agent that induces autophagic cell death via inhibiting mTOR
Boah Lee, Seung Ju Park, Seulgi Lee, Jin Wook Lee, Eunbeol Lee, Eun-Seon Yoo, Won‐Suk Chung, Jong‐Woo Sohn, Byung‐Chul Oh, Seyun Kim
SJR Q1Cell Death and DiseaseOA

Autophagy is a biological process that maintains cellular homeostasis and regulates the internal cellular environment. Hyperactivating autophagy to trigger cell death has been a suggested therapeutic strategy for cancer treatment. Mechanistic target of rapamycin (mTOR) is a crucial protein kinase that regulates autophagy; therefore, using a structure-based virtual screen analysis, we identified lomitapide, a cholesterol-lowering drug, as a potential mTOR complex 1 (mTORC1) inhibitor. Our results

EpidemiologyMedicine

대표 연구 분야

Molecular BiologyCell BiologySurgeryPhysiologyImmunologyPharmacology

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