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이승희 교수

Seung Hee Lee

서울대학교 의학교육학과 · 생화학·유전·분자생물학

연구실 소개

이승희 교수의 연구실은 신경세포 분화와 세밀한 세포 결정 과정을 규명하는 데 초점을 맞추고 있습니다. 특히, 전사 인자인 Isl1-Lhx3 복합체와 microRNA인 miR-218이 신경세포 특성 결정에 어떻게 상호작용하는지, 그리고 ASC-2와 MLL3/4 복합체가 전사 조절을 통해 신경세포의 기능적 특성 형성에 기여하는 메커니즘을 연구하고 있습니다. 또한, 뇌간과 시상하부의 신경세포 서열 형성에 관여하는 전사 인자 네트워크의 조절 원리를 규명함으로써, 줄기세포를 특정 신경세포로 유도하는 데 응용 가능한 기초 지식을 제공하고자 합니다.

신경세포 분화전사 인자miR-218ASC-2/MLL 복합체줄기세포 유도

연구 현황

논문 수
127
총 인용 수
4,075
최근 5년 논문
28
주요 분야
생화학·유전·분자생물학

연구 성과 추이

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

5개년 연도별 논문 게재 수
28총합
2022
2023
2024
2025
2026
5개년 연도별 피인용 수
71총합
20222023202420252026

주요 논문

15
1
논문|인용수 256·2011
UTX, a Histone H3-Lysine 27 Demethylase, Acts as a Critical Switch to Activate the Cardiac Developmental Program
Seunghee Lee, Jae W. Lee, Soo‐Kyung Lee, Soo‐Kyung Lee, Soo‐Kyung Lee
SJR Q1Developmental CellOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
논문|인용수 165·2006
Coactivator as a target gene specificity determinant for histone H3 lysine 4 methyltransferases
Seunghee Lee, Dong-Kee Lee, Yali Dou, Jeongkyung Lee, Bora Lee, Eunyee Kwak, Young‐Yun Kong, Soo‐Kyung Lee, Robert G. Roeder, Jae W. Lee
SJR Q1Proceedings of the National Academy of SciencesOA

Activating signal cointegrator-2 (ASC-2), a coactivator of multiple transcription factors that include retinoic acid receptor (RAR), associates with histone H3-K4 methyltranferases (H3K4MTs) MLL3 and MLL4 in mixed-lineage leukemia. Here, we show that mice expressing a SET domain mutant of MLL3 share phenotypes with isogenic ASC2+/- mice and that expression and H3-K4 trimethylation of RAR target gene RAR-beta2 are impaired in ASC-2-null mouse embryo fibroblasts (MEFs) or in MEFs expressing siRNAs

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
논문|인용수 119·2014
Isl1 Directly Controls a Cholinergic Neuronal Identity in the Developing Forebrain and Spinal Cord by Forming Cell Type-Specific Complexes
Hyong-Ho Cho, Francesca Cargnin, Yu‐Jin Kim, Bora Lee, Ryuk-Jun Kwon, Heejin Nam, Rongkun Shen, Anthony P. Barnes, Jae W. Lee, Seunghee Lee, Soo‐Kyung Lee
SJR Q1PLoS GeneticsOA

The establishment of correct neurotransmitter characteristics is an essential step of neuronal fate specification in CNS development. However, very little is known about how a battery of genes involved in the determination of a specific type of chemical-driven neurotransmission is coordinately regulated during vertebrate development. Here, we investigated the gene regulatory networks that specify the cholinergic neuronal fates in the spinal cord and forebrain, specifically, spinal motor neurons

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
논문|인용수 110·2008
A Regulatory Network to Segregate the Identity of Neuronal Subtypes
Seunghee Lee, Seunghee Lee, Bora Lee, Kaumudi Joshi, Samuel L. Pfaff, Jae W. Lee, Soo‐Kyung Lee, Soo‐Kyung Lee
SJR Q1Developmental CellOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
논문|인용수 106·2009
Retinoid Signaling and Neurogenin2 Function Are Coupled for the Specification of Spinal Motor Neurons through a Chromatin Modifier CBP
Seunghee Lee, Seunghee Lee, Bora Lee, Jae W. Lee, Soo-Kyung Lee, Soo-Kyung Lee
SJR Q1NeuronOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
논문|인용수 98·2008
Activating Signal Cointegrator-2 Is an Essential Adaptor to Recruit Histone H3 Lysine 4 Methyltransferases MLL3 and MLL4 to the Liver X Receptors
Seunghee Lee, Jeongkyung Lee, Jeongkyung Lee, Soo-Kyung Lee, Jae W. Lee, Jae W. Lee
Molecular EndocrinologyOA

Activating signal cointegrator-2 (ASC-2), a coactivator of multiple nuclear receptors and transcription factors, including the liver X receptors (LXRs), is associated with histone H3 lysine 4 (H3K4) methyltransferase (H3K4MT) MLL3 or its paralogue MLL4 in a steady-state complex named ASCOM (ASC-2 complex). ASCOM belongs to Set1-like complexes, a conserved family of related H3K4MT complexes. ASC-2 binds to many nuclear receptors in a ligand-dependent manner through its two LXXLL motifs. In partic

SurgeryMedicine
7
논문|인용수 85·2015
miR-218 is essential to establish motor neuron fate as a downstream effector of Isl1–Lhx3
Karen P. Thiebes, Heejin Nam, Xiaolu A. Cambronne, Rongkun Shen, Stacey M. Glasgow, Hyong‐Ho Cho, Ji-Sun Kwon, Richard H. Goodman, Jae W. Lee, Seunghee Lee, Soo‐Kyung Lee
SJR Q1Nature CommunicationsOA

While microRNAs have emerged as an important component of gene regulatory networks, it remains unclear how microRNAs collaborate with transcription factors in the gene networks that determines neuronal cell fate. Here we show that in the developing spinal cord, the expression of miR-218 is directly upregulated by the Isl1–Lhx3 complex, which drives motor neuron fate. Inhibition of miR-218 suppresses the generation of motor neurons in both chick neural tube and mouse embryonic stem cells, suggest

Cancer ResearchBiochemistry, Genetics and Molecular Biology
8
논문|인용수 82·2012
Fusion protein Isl1–Lhx3 specifies motor neuron fate by inducing motor neuron genes and concomitantly suppressing the interneuron programs
Seunghee Lee, James Cuvillier, Bora Lee, Rongkun Shen, Jae W. Lee, Soo‐Kyung Lee
SJR Q1Proceedings of the National Academy of SciencesOA

Combinatorial transcription codes generate the myriad of cell types during development and thus likely provide crucial insights into directed differentiation of stem cells to a specific cell type. The LIM complex composed of Isl1 and Lhx3 directs the specification of spinal motor neurons (MNs) in embryos. Here, we report that Isl1-Lhx3, a LIM-complex mimicking fusion, induces a signature of MN transcriptome and concomitantly suppresses interneuron differentiation programs, thereby serving as a p

Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
논문|인용수 66·2018
Dlx1/2 and Otp coordinate the production of hypothalamic GHRH- and AgRP-neurons
Bora Lee, Jang‐Hyun Kim, Taekyeong An, Sangsoo Kim, Esha Patel, Jacob Raber, Soo‐Kyung Lee, Seunghee Lee, Jae W. Lee
SJR Q1Nature CommunicationsOA

Despite critical roles of the hypothalamic arcuate neurons in controlling the growth and energy homeostasis, the gene regulatory network directing their development remains unclear. Here we report that the transcription factors Dlx1/2 and Otp coordinate the balanced generation of the two functionally related neurons in the hypothalamic arcuate nucleus, GHRH-neurons promoting the growth and AgRP-neurons controlling the feeding and energy expenditure. Dlx1/2-deficient mice show a loss-of-GHRH-neur

Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
논문|인용수 65·2016
Critical Roles of the Histone Methyltransferase MLL4/KMT2D in Murine Hepatic Steatosis Directed by ABL1 and PPARγ2
Dae‐Hwan Kim, Jang‐Hyun Kim, Ji-Sun Kwon, Jaspreet Sandhu, Peter Tontonoz, Soo‐Kyung Lee, Seunghee Lee, Jae W. Lee
SJR Q1Cell ReportsOA

The pathophysiologic continuum of non-alcoholic fatty liver disease begins with steatosis. Despite recent advances in our understanding of the gene regulatory program directing steatosis, how it is orchestrated at the chromatin level is unclear. PPARγ2 is a hepatic steatotic transcription factor induced by overnutrition. Here, we report that the histone H3 lysine 4 methyltransferase MLL4/KMT2D directs overnutrition-induced murine steatosis via its coactivator function for PPARγ2. We demonstrate

Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
논문|인용수 50·2016
Chx10 Consolidates V2a Interneuron Identity through Two Distinct Gene Repression Modes
Yoanne M. Clovis, So Yeon Seo, Ji-Sun Kwon, Jennifer Chiyeon Rhee, Sujeong Yeo, Jae W. Lee, Seunghee Lee, Soo‐Kyung Lee
SJR Q1Cell ReportsOA

During development, two cell types born from closely related progenitor pools often express identical transcriptional regulators despite their completely distinct characteristics. This phenomenon implies the need for a mechanism that operates to segregate the identities of the two cell types throughout differentiation after initial fate commitment. To understand this mechanism, we investigated the fate specification of spinal V2a interneurons, which share important developmental genes with motor

Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
논문|인용수 49·2009
Crucial Roles for Interactions between MLL3/4 and INI1 in Nuclear Receptor Transactivation
Seunghee Lee, Dae‐Hwan Kim, Young Hwa Goo, Young Chul Lee, Soo‐Kyung Lee, Jae W. Lee
Molecular EndocrinologyOA

Nuclear receptor (NR) transactivation involves multiple coactivators, and the molecular basis for how these are functionally integrated needs to be determined to fully understand the NR action. Activating signal cointegrator-2 (ASC-2), a transcriptional coactivator of many NRs and transcription factors, forms a steady-state complex, ASCOM (for ASC-2 complex), which contains histone H3-lysine-4 (H3K4) methyltransferase MLL3 or its paralog MLL4. Here, we show that ASCOM requires a functional cross

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
논문|인용수 47·2013
STAT3 promotes motor neuron differentiation by collaborating with motor neuron-specific LIM complex
Seunghee Lee, Rongkun Shen, Hyong-Ho Cho, Ryuk-Jun Kwon, So Yeon Seo, Jae W. Lee, Soo‐Kyung Lee
SJR Q1Proceedings of the National Academy of SciencesOA

The motor neuron (MN)-hexamer complex consisting of LIM homeobox 3, Islet-1, and nuclear LIM interactor is a key determinant of motor neuron specification and differentiation. To gain insights into the transcriptional network in motor neuron development, we performed a genome-wide ChIP-sequencing analysis and found that the MN-hexamer directly regulates a wide array of motor neuron genes by binding to the HxRE (hexamer response element) shared among the target genes. Interestingly, STAT3-binding

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
논문|인용수 41·2014
Crucial roles of mixed‐lineage leukemia 3 and 4 as epigenetic switches of the hepatic circadian clock controlling bile acid homeostasis in mice
Dae‐Hwan Kim, Jennifer Chiyeon Rhee, Sujeong Yeo, Rongkun Shen, Soo‐Kyung Lee, Jae W. Lee, Seunghee Lee
SJR Q1Hepatology

UNLABELLED: The histone H3-lysine-4 methyltransferase mixed-lineage leukemia 3 (MLL3) and its closest homolog, MLL4 (aka KMT2D), belong to two homologous transcriptional coactivator complexes, named MLL3 and MLL4 complexes, respectively. MLL3 plays crucial roles in multiple metabolic processes. However, the physiological roles of MLL4 in metabolism and the relationship between MLL3 and MLL4 in metabolic gene regulation are unclear. To address these issues, we analyzed the phenotypes of newly gen

Endocrine and Autonomic SystemsNeuroscience
15
리뷰|인용수 35·2009
Chapter 10 Roles of Histone H3‐Lysine 4 Methyltransferase Complexes in NR‐Mediated Gene Transcription
Seunghee Lee, Robert G. Roeder, Jae W. Lee
SJR Q4Progress in molecular biology and translational science
Molecular BiologyBiochemistry, Genetics and Molecular Biology

대표 연구 분야

Molecular BiologyCancer ResearchGeneticsPlant ScienceEndocrine and Autonomic SystemsSurgery

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