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최규하 교수

Gyu-Ha Choi

포항공과대학교 생명과학과 · 생화학·유전·분자생물학

연구실 소개

최규하 교수의 연구실은 식물의 꽃 피우기 시기 조절과 유전적 재조합 메커니즘을 중심으로, FLC 및 FRI를 핵심 유전자로 삼아 꽃 피는 시기 조절 네트워크를 규명하고 있습니다. 특히, 전사 조절 복합체(FRI-C)와 스위치 단백질(SWR1C 복합체)의 기능을 통해 발달 이상과 유전자 발현 조절의 분자 기전을 탐구하고 있으며, meiotic 재조합의 핵심 요소인 DNA 이중균열과 교차형성의 기전을 유전체적·표현체계적으로 분석하고 있습니다. 이 연구들은 식물의 생식 발달, 유전적 다양성 유지 및 육종 기술 개선에 기여합니다.

꽃 피우기 조절meiotic 재조합FLC 발현 조절전사 조절 복합체유전자 발현 조절

연구 현황

논문 수
67
총 인용 수
3,751
최근 5년 논문
16
주요 분야
생화학·유전·분자생물학

연구 성과 추이

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

5개년 연도별 논문 게재 수
16총합
2021
2022
2023
2024
2025
5개년 연도별 피인용 수
209총합
20212022202320242025

주요 논문

15
1
논문|인용수 404·2013
Arabidopsis meiotic crossover hot spots overlap with H2A.Z nucleosomes at gene promoters
Kyuha Choi, Xiaohui Zhao, Krystyna A. Kelly, Oliver Venn, James D. Higgins, Nataliya E. Yelina, Thomas J. Hardcastle, Piotr A. Ziółkowski, Gregory P. Copenhaver, F. Chris H. Franklin, Gil McVean, Ian R. Henderson
SJR Q1Nature GeneticsOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
논문|인용수 381·2011
The FRIGIDA Complex Activates Transcription of FLC, a Strong Flowering Repressor in Arabidopsis, by Recruiting Chromatin Modification Factors
Kyuha Choi, Juhyun Kim, Hyun‐Ju Hwang, Sanghee Kim, Chulmin Park, Sang Yeol Kim, Ilha Lee
SJR Q1The Plant CellOA

The flowering of Arabidopsis thaliana winter annuals is delayed until the subsequent spring by the strong floral repressor FLOWERING LOCUS C (FLC). FRIGIDA (FRI) activates the transcription of FLC, but the molecular mechanism remains elusive. The fri mutation causes early flowering with reduced FLC expression similar to frl1, fes1, suf4, and flx, which are mutants of FLC-specific regulators. Here, we report that FRI acts as a scaffold protein interacting with FRL1, FES1, SUF4, and FLX to form a

Plant ScienceAgricultural and Biological Sciences
3
논문|인용수 238·2018
Nucleosomes and DNA methylation shape meiotic DSB frequency in Arabidopsis thaliana transposons and gene regulatory regions
Kyuha Choi, Xiaohui Zhao, Andrew J. Tock, Christophe Lambing, Charles J. Underwood, Thomas J. Hardcastle, Heïdi Serra, Juhyun Kim, Hyun Seob Cho, Jaeil Kim, Piotr A. Ziółkowski, Nataliya E. Yelina
SJR Q1Genome ResearchOA

Meiotic recombination initiates from DNA double-strand breaks (DSBs) generated by SPO11 topoisomerase-like complexes. Meiotic DSB frequency varies extensively along eukaryotic chromosomes, with hotspots controlled by chromatin and DNA sequence. To map meiotic DSBs throughout a plant genome, we purified and sequenced Arabidopsis thaliana SPO11-1-oligonucleotides. SPO11-1-oligos are elevated in gene promoters, terminators, and introns, which is driven by AT-sequence richness that excludes nucleoso

Plant ScienceAgricultural and Biological Sciences
4
논문|인용수 205·2007
Arabidopsishomologs of components of the SWR1 complex regulate flowering and plant development
Kyuha Choi, Chulmin Park, Jungeun Lee, Mi‐Jin Oh, Bosl Noh, Ilha Lee
SJR Q1Development

The SWR1 complex (SWR1C) in yeast catalyzes the replacement of nucleosomal H2A with the H2AZ variant, which ensures full activation of underlying genes. We compared the phenotype of mutants in the homologs of SWR1C components in Arabidopsis thaliana. Mutations in Arabidopsis SWC6 (AtSWC6), SUPPRESSOR OF FRIGIDA 3 (SUF3) and PHOTOPERIOD-INDEPENDENT EARLY FLOWERING 1 (PIE1), homologs of SWC6, ARP6 and SWR1, respectively, caused similar developmental defects, including leaf serration, weak apical d

Plant ScienceAgricultural and Biological Sciences
5
리뷰|인용수 178·2015
Meiotic recombination hotspots – a comparative view
Kyuha Choi, Ian R. Henderson
SJR Q1The Plant JournalOA

During meiosis homologous chromosomes pair and undergo reciprocal genetic exchange, termed crossover. Meiotic recombination has a profound effect on patterns of genetic variation and is an important tool during crop breeding. Crossovers initiate from programmed DNA double-stranded breaks that are processed to form single-stranded DNA, which can invade a homologous chromosome. Strand invasion events mature into double Holliday junctions that can be resolved as crossovers. Extensive variation in t

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
논문|인용수 132·2016
Recombination Rate Heterogeneity within Arabidopsis Disease Resistance Genes
Kyuha Choi, Carsten Reinhard, Heïdi Serra, Piotr A. Ziółkowski, Charles J. Underwood, Xiaohui Zhao, Thomas J. Hardcastle, Nataliya E. Yelina, Catherine Griffin, Matthew Jackson, Christine Mézard, Gil McVean
SJR Q1PLoS GeneticsOA

Meiotic crossover frequency varies extensively along chromosomes and is typically concentrated in hotspots. As recombination increases genetic diversity, hotspots are predicted to occur at immunity genes, where variation may be beneficial. A major component of plant immunity is recognition of pathogen Avirulence (Avr) effectors by resistance (R) genes that encode NBS-LRR domain proteins. Therefore, we sought to test whether NBS-LRR genes would overlap with meiotic crossover hotspots using experi

Plant ScienceAgricultural and Biological Sciences
7
논문|인용수 125·2005
SUPPRESSOR OF FRIGIDA3Encodes a Nuclear ACTIN-RELATED PROTEIN6 Required for Floral Repression inArabidopsis w
Kyuha Choi, Sanghee Kim, Sang Yeol Kim, Minsoo Kim, Y. Hyun, Horim Lee, Sunghwa Choe, Sang‐Gu Kim, Scott D. Michaels, Ilha Lee
SJR Q1The Plant CellOA

Flowering traits in winter annual Arabidopsis thaliana are conferred mainly by two genes, FRIGIDA (FRI) and FLOWERING LOCUS C (FLC). FLC acts as a flowering repressor and is regulated by multiple flowering pathways. We isolated an early-flowering mutant, suppressor of FRIGIDA3 (suf3), which also shows leaf serration, weak apical dominance, and infrequent conversion of the inflorescence shoot to a terminal flower. The suf3 mutation caused a decrease in the transcript level of FLC in both a FRI-co

Plant ScienceAgricultural and Biological Sciences
8
논문|인용수 45·2016
Regulation of microRNA-mediated developmental changes by the SWR1 chromatin remodeling complex in Arabidopsis thaliana
Kyuha Choi, Juhyun Kim, Sebastian Müller, Mi‐Jin Oh, Charles J. Underwood, Ian R. Henderson, Ilha Lee
SJR Q1PLANT PHYSIOLOGYOA

The ATP-dependent SWR1 chromatin remodeling complex (SWR1-C) exchanges the histone H2A-H2B dimer with the H2A.Z-H2B dimer, producing variant nucleosomes. Arabidopsis thaliana SWR1-C contributes to the active transcription of many genes, but also to the repression of genes that respond to environmental and developmental stimuli. Unlike other higher eukaryotic H2A.Z deposition mutants (which are embryonically lethal), Arabidopsis SWR1-C component mutants, including arp6, survive and display a plei

Plant ScienceAgricultural and Biological Sciences
9
논문|인용수 43·2021
HIGH CROSSOVER RATE1 encodes PROTEIN PHOSPHATASE X1 and restricts meiotic crossovers in Arabidopsis
Divyashree C. Nageswaran, Jaeil Kim, Christophe Lambing, Juhyun Kim, Jihye Park, Eunjung Kim, Hyun Seob Cho, Heejin Kim, Dohwan Byun, Yeong Mi Park, Pallas Kuo, Seung‐Chul Lee
SJR Q1Nature PlantsOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
논문|인용수 42·1988
The dynamic behavior of continuous stirred-bed reactors for the solid catalyzed gas phase polymerization of propylene
Kyuha Choi, W. Harmon Ray
SJR Q1Chemical Engineering Science
Organic ChemistryChemistry
11
논문|인용수 32·2022
Arabidopsis HEAT SHOCK FACTOR BINDING PROTEIN is required to limit meiotic crossovers and HEI10 transcription
Juhyun Kim, Juhyun Kim, Jihye Park, Heejin Kim, Namil Son, Eun‐Jung Kim, Jaeil Kim, Jaeil Kim, Dohwan Byun, Youngkyung Lee, Yeong Mi Park, Divyashree C. Nageswaran
SJR Q1The EMBO JournalOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
리뷰|인용수 28·2017
Advances towards Controlling Meiotic Recombination for Plant Breeding.
Kyuha Choi
PubMedOA

Meiotic homologous recombination generates new combinations of preexisting genetic variation and is a crucial process in plant breeding. Within the last decade, our understanding of plant meiotic recombination and genome diversity has advanced considerably. Innovation in DNA sequencing technology has led to the exploration of high-resolution genetic and epigenetic information in plant genomes, which has helped to accelerate plant breeding practices via high-throughput genotyping, and linkage and

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
논문|인용수 24·2019
DeepTetrad: high‐throughput image analysis of meiotic tetrads by deep learning in Arabidopsis thaliana
Eun‐Cheon Lim, Jae-Il Kim, Jihye Park, Eun‐Jung Kim, Juhyun Kim, Yeong Mi Park, Hyun Seob Cho, Dohwan Byun, Ian R. Henderson, Gregory P. Copenhaver, Ildoo Hwang, Kyuha Choi
SJR Q1The Plant JournalOA

Meiotic crossovers facilitate chromosome segregation and create new combinations of alleles in gametes. Crossover frequency varies along chromosomes and crossover interference limits the coincidence of closely spaced crossovers. Crossovers can be measured by observing the inheritance of linked transgenes expressing different colors of fluorescent protein in Arabidopsis pollen tetrads. Here we establish DeepTetrad, a deep learning-based image recognition package for pollen tetrad analysis that en

Plant ScienceAgricultural and Biological Sciences
14
논문|인용수 17·1986
Kinetics of transesterification of dimethyl terephthalate with 1,4‐butanediol catalyzed by tetrabutyl titanate
John K. Hsu, Kyuha Choi
SJR Q2Journal of Applied Polymer Science

Abstract The kinetics of tetrabutyl titanate catalyzed transesterification of dimethyl terephthalate (DMT) with 1,4‐butanediol (BD) is investigated. Detailed analysis of experimental data indicates that equal reactivity hypothesis for functional groups is valid for [BD]/[DMT] molar ratios greater than 2 up to 75% conversion. Effects of reaction temperature and catalyst concentration are also discussed.

Organic ChemistryChemistry
15
논문|인용수 17·1987
A modeling of semibatch reactors for melt transesterification of dimethyl terephthalate with ethylene glycol
Kyuha Choi
SJR Q2Polymer Engineering and Science

Abstract A mathematical model of a semi batch reactor was developed to investigate the oligomerization reactions in the melt transesterification of dimethyl terephthalate with ethylene glycol catalyzed by metal acetate catalyst. The detailed kinetic scheme based on the molecular species model is used to estimate the conversion of methyl ester groups and the concentrations of various oligomeric species. The numerical simulation of the model shows that the oligomerization reactions lower the overa

Mechanical EngineeringEngineering

대표 연구 분야

Molecular BiologyPlant ScienceOrganic ChemistryGeneticsInorganic ChemistryComputational Mechanics

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