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Il-ha Lee

Seoul National University · 生化学・遺伝学・分子生物学

研究室紹介

Professor Il-ha Lee's research lab focuses on the molecular mechanisms underlying plant development, particularly the regulation of flowering time in response to environmental cues such as prolonged cold (vernalization) and photoperiod. The lab investigates key regulatory molecules including flowering-promoting genes like FT, small non-coding RNAs (miRNAs and siRNAs), and stress-responsive proteins such as GRP7 and ARP6. By integrating molecular genetics, proteomics, and functional genomics, the lab explores how protein complexes and gene regulatory networks evolve and control developmental transitions in plants like Arabidopsis and chrysanthemum.

flowering timevernalizationsmall RNAsprotein complexesgene regulation

Research Overview

Papers
9
Total Citations
67
Papers (5y)
7
Primary Field
生化学・遺伝学・分子生物学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
7total
2003
2006
2007
2012
2016
Citations per year (5y)
30total
20032006200720122016

Selected Papers

9
1
Article|21 citations·2001
Induction of Haptoglobin by All-trans Retinoic Acid in THP-1 Human Monocytic Cell Line
In-Sook Kim, Il-Ha Lee, Jeong‐Hwa Lee, Soo Young Lee
SJR Q2Biochemical and Biophysical Research Communications
Cell BiologyBiochemistry, Genetics and Molecular Biology
2
Article|16 citations·2002
Upregulation of Haptoglobin in Reactive Astrocytes After Transient Forebrain Ischemia in Rats
Mun‐Yong Lee, Seong-Yun Kim, Jeong‐Sun Choi, Il-Ha Lee, Yun‐Sik Choi, Jong‐Youl Jin, Seon‐Joo Park, Ki-Wug Sung, Myung‐Hoon Chun, In‐Sook Kim
SJR Q1Journal of Cerebral Blood Flow & Metabolism
Cell BiologyBiochemistry, Genetics and Molecular Biology
3
Article|10 citations·2003
The Function of the Flowering Time Gene AGL20 Is Conserved in Crucifers
이일하, Kyung Won Kim, Jun-Hye Shin, Jihyun Moon, 김민수, 이정은, 박민철
4
Article|6 citations·2007
Proteome Analysis of Vernalization-Treated Arabidopsis thaliana by Matrix-Assisted Laser Desorption/Ionization Time-of-Flight Mass Spectrometry
Mi Ran Cho, Kyung Hyeon Lee, 현유봉, 이일하, Hie-Joon Kim*

In order to gain insight into the molecular changes at the protein level in plants exposed to low temperature for a long period of time (vernalization), proteome analyses of vernalization-treated Arabidopsis thaliana have been carried out by two-dimensional gel electrophoresis followed by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry. Fourteen proteins including ATP binding/GTP binding/translation elongation factor and glycine-rich RNA-binding protein 7 (GRP7) show

5
Article|6 citations·2007
Historical Perspective on Breakthroughs in Flowering Field
Mijin Oh, 이일하

Plants have evolved a mechanism to synchronize flowering time in response to environments. How plants recognize specificseasons for flowering has been a long sought question, thus, more than 100 years of research has been focused on this question. Especially in the past two decades, remarkable achievements have been made in identifying the molecular mechanismfor flowering. Here we summarize the breakthroughs made in this field over the past century including discoveries of photoperiodicand verna

6
Article|4 citations·2007
Identification and Characterization of Small RNAs from Vernalized Arabidopsis thaliana
이일하, 이제근, 장병탁

MicroRNAs (miRNAs) and small interfering RNAs (siRNAs) are two major classes of small non-coding RNAs with important roles in the regulation of gene expression, such as mRNA degradation and translational repression, heterochromatin formation, genome defense against transposons and viruses in eukaryotes. MiRNA- and siRNA-directed processes have emerged as a regulatory mechanism for growth and development in both animals and plants. To identify small RNAs that might be involved in vernalization, a

7
Article|2 citations·2012
FT-transgenic spray-type Chrysanthemum (Dendranthema grandiflorum Kitamura) showing early-flowering
Su‐Young Lee, Bong-Hee Han, Eun-Joo Hur, Hak-Kee Shin, Il-Ha Lee, Eunkyung Lee, Seung-Tae Kim, Won-Hee Kim, O-Hyeon Kwon
SJR Q4Journal of Plant BiotechnologyOA

고온에서 발현이 유도되도록 한 개화촉진유전자 HSpro-FT를 국립원예특작과학원에서 육성된 스프레이타입 국화 2품종('Pink PangPang'과 'Pink Pride')에 도입하여 획득한 형질전환체가 고온기에 화아가 분화하고 고온단일조건에서 화아가 발달하게 되는 조건에서 재배되었을 때 개화가 촉진되었다. HSpro-FT 유전자는 pCAMBIA2300에 삽입되어 Agrobacterium tumefaciens C58C1을 통하여 국화로 도입되었다. 아그로박테리움과의 접종 후 재분화 배지(MS + 1.0 mg/L BA + 0.5 mg/L IAA + 0.7% plant agar, pH 5.8)에 10 mg/L 과 20 mg/L kanamycin이 첨가된 1, 2차 선발배지에서 재분화된 신초를 선발하였다. PCR분석에 의해 'Pink PangPang'유래 재분화 신초 117개체와 'Pink Pride'유래 5개체로부터 FT 유전자가 도입되었음을 확인하였다. HSpro-FT 유전자 형질전환

Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|2 citations·2006
An Arabidopsis short root and dwarfism Mutant Defines a Novel Locus That Mediates Both Cell Division and Elongation
Hyun Kyung Lee, 권미, Ji Hyun Jeon, Shozo Fujioka, 김호방, So Young Park, Suguru Takatsuto, Shigeo Yoshida, 이일하, 안정선, 최성화
9
Article|0 citations·2016
Molecular evolution of ACTIN RELATED PROTEIN 6, a component of SWR1 complex in Arabidopsis
서은주, 박철민, 최규하, 이동선, 석차옥, 이일하

To date, it has been assumed that the evolution of a protein complex is different from that of other proteins. However, there have been few evidences to support this assumption. To understand how protein complexes evolve, we analyzed the evolutionary constraints on ACTIN RELATED PROTEIN 6 (ARP6), a component of the SWR1 complex. Interspecies complementation experiments using transgenic plants that ectopically express transARP6s (ARP6s from other organisms) showed that the function of ARP6s is co

Research Areas

Cell BiologyMolecular Biology

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