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최성화 교수

Sung-hwa Choi

서울대학교 · 농업·생명과학

연구실 소개

최성화 교수의 연구실은 식물에서의 스테로이드 호르몬인 브라시노스테로이드(BR) 생합성 및 신호전달 경로를 중심으로 연구를 진행하고 있습니다. 특히 BR 생합성에 관여하는 유전자들(예: DWF4, DWF5, DWF7 등)의 기능 규명과, 이들의 변형이 식물 생장에 미치는 영향을 분자생물학적·대사 추적 기법을 통해 규명하고 있습니다. 또한 BR 수용체 및 신호전달 단백질의 기능 분석을 통해 식물의 생장 조절 메커니즘을 밝혀내는 데 초점을 맞추고 있습니다.

브라시노스테로이드식물 호르몬유전자 기능 분석생합성 경로대사 추적

연구 현황

논문 수
121
총 인용 수
7,774
최근 5년 논문
14
주요 분야
농업·생명과학

연구 성과 추이

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

5개년 연도별 논문 게재 수
14총합
2021
2022
2023
2024
2025
5개년 연도별 피인용 수
146총합
20212022202320242025

주요 논문

15
1
논문|인용수 485·1998
The <i>DWF4</i> Gene of Arabidopsis Encodes a Cytochrome P450 That Mediates Multiple 22α-Hydroxylation Steps in Brassinosteroid Biosynthesis
Sunghwa Choe, Brian P. Dilkes, Shozo Fujioka, Suguru Takatsuto, Akira Sakurai, Kenneth A. Feldmann
SJR Q1FWCI 37.0The Plant CellOA

dwarf4 (dwf4) mutants of Arabidopsis display a dwarfed phenotype due to a lack of cell elongation. Dwarfism could be rescued by the application of brassinolide, suggesting that DWF4 plays a role in brassinosteroid (BR) biosynthesis. The DWF4 locus is defined by four mutant alleles. One of these is the result of a T-DNA insertion. Plant DNA flanking the insertion site was cloned and used as a probe to isolate the entire DWF4 gene. Sequence analysis revealed that DWF4 encodes a cytochrome P450 mon

Plant ScienceAgricultural and Biological Sciences
2
논문|인용수 338·2001
Overexpression of <i>DWARF4</i> in the brassinosteroid biosynthetic pathway results in increased vegetative growth and seed yield in <i>Arabidopsis</i>
Sunghwa Choe, Shozo Fujioka, Takahiro Noguchi, Suguru Takatsuto, Shigeo Yoshida, Kenneth A. Feldmann
SJR Q1FWCI 15.8The Plant JournalOA

Plants unable to synthesize or perceive brassinosteroids (BRs) are dwarfs. Arabidopsis dwf4 was shown to be defective in a steroid 22alpha hydroxylase (CYP90B1) step that is the putative rate-limiting step in the BR biosynthetic pathway. To better understand the role of DWF4 in BR biosynthesis, transgenic Arabidopsis plants ectopically overexpressing DWF4 (AOD4) were generated, using the cauliflower mosaic virus 35S promoter, and their phenotypes were characterized. The hypocotyl length of both

Plant ScienceAgricultural and Biological Sciences
3
논문|인용수 255·1999
The Arabidopsis <i>dwarf1</i> Mutant Is Defective in the Conversion of 24-Methylenecholesterol to Campesterol in Brassinosteroid Biosynthesis1
Sunghwa Choe, Brian P. Dilkes, Brian D. Gregory, Amanda S. Ross, Heng Yuan, Takahiro Noguchi, Shozo Fujioka, Suguru Takatsuto, Atsushi Tanaka, Shigeo Yoshida, Frans E. Tax, Kenneth A. Feldmann
SJR Q1FWCI 21.5PLANT PHYSIOLOGYOA

Since the isolation and characterization of dwarf1-1 (dwf1-1) from a T-DNA insertion mutant population, phenotypically similar mutants, including deetiolated2 (det2), constitutive photomorphogenesis and dwarfism (cpd), brassinosteroid insensitive1 (bri1), and dwf4, have been reported to be defective in either the biosynthesis or the perception of brassinosteroids. We present further characterization of dwf1-1 and additional dwf1 alleles. Feeding tests with brassinosteroid-biosynthetic intermedia

Plant ScienceAgricultural and Biological Sciences
4
논문|인용수 239·1999
The Arabidopsis dwf7/ste1 mutant is defective in the delta7 sterol C-5 desaturation step leading to brassinosteroid biosynthesis.
Sunghwa Choe, Takahiro Noguchi, Shozo Fujioka, Suguru Takatsuto, Christophe P. Tissier, Brian D. Gregory, Amanda S. Ross, Atsushi Tanaka, Shigeo Yoshida, Frans E. Tax, Kenneth A. Feldmann
FWCI 30.4PubMedOA

Lesions in brassinosteroid (BR) biosynthetic genes result in characteristic dwarf phenotypes in plants. Understanding the regulation of BR biosynthesis demands continued isolation and characterization of mutants corresponding to the genes involved in BR biosynthesis. Here, we present analysis of a novel BR biosynthetic locus, dwarf7 (dwf7). Feeding studies with BR biosynthetic intermediates and analysis of endogenous levels of BR and sterol biosynthetic intermediates indicate that the defective

Plant ScienceAgricultural and Biological Sciences
5
논문|인용수 191·2000
Lesions in the sterol Δ<sup>7</sup> reductase gene of Arabidopsis cause dwarfism due to a block in brassinosteroid biosynthesis
Sunghwa Choe, Atsushi Tanaka, Takahiro Noguchi, Shozo Fujioka, Suguru Takatsuto, Amanda S. Ross, Frans E. Tax, Shigeo Yoshida, Kenneth A. Feldmann
SJR Q1FWCI 19.7The Plant JournalOA

The brassinosteroid (BR) biosynthetic pathway, and the sterol pathway which is prerequisite to the BR pathway, are rapidly being characterized because of the availability of a large number of characteristic dwarf mutants in Arabidopsis. Here we show that the Arabidopsis dwarf5 mutants are disrupted in a sterol Delta7 reduction step. dwf5 plants display the characteristic dwarf phenotype typical of other BR mutants. This phenotype includes small, round, dark-green leaves, and short stems, pedicel

Plant ScienceAgricultural and Biological Sciences
6
논문|인용수 190·2002
Arabidopsis Brassinosteroid-Insensitive<i>dwarf12</i>Mutants Are Semidominant and Defective in a Glycogen Synthase Kinase 3β-Like Kinase
Sunghwa Choe, Robert J. Schmitz, Shozo Fujioka, Suguru Takatsuto, Mi‐Ok Lee, Shigeo Yoshida, Kenneth A. Feldmann, Frans E. Tax
SJR Q1FWCI 10.5PLANT PHYSIOLOGYOA

Mutants defective in the biosynthesis or signaling of brassinosteroids (BRs), plant steroid hormones, display dwarfism. Loss-of-function mutants for the gene encoding the plasma membrane-located BR receptor BRI1 are resistant to exogenous application of BRs, and characterization of this protein has contributed significantly to the understanding of BR signaling. We have isolated two new BR-insensitive mutants (dwarf12-1D and dwf12-2D) after screening Arabidopsis ethyl methanesulfonate mutant popu

Plant ScienceAgricultural and Biological Sciences
7
논문|인용수 165·2011
Auxin stimulates <i>DWARF4</i> expression and brassinosteroid biosynthesis in Arabidopsis
Yuhee Chung, Puna Maya Maharjan, Oksun Lee, Shozo Fujioka, Suyoun Jang, Bokyung Kim, Suguru Takatsuto, Masafumi Tsujimoto, Hobang Kim, Seoae Cho, Taesung Park, Hyunwoo Cho
SJR Q1FWCI 20.9The Plant Journal

Brassinosteroids (BRs) are growth-promoting steroidal hormones. Despite the importance of BRs in plant biology, the signal that initiates BR biosynthesis remains unknown. Among the enzymes involved in BR biosynthesis in Arabidopsis (Arabidopsis thaliana), DWARF4 catalyzes the rate-determining step. Through both the histochemical analysis of DWF4pro:GUS plants and the direct measurement of endogenous BR content, we discovered that BR biosynthesis is stimulated by auxin. When DWF4pro:GUS was subje

Plant ScienceAgricultural and Biological Sciences
8
논문|인용수 136·2012
Propiconazole Is a Specific and Accessible Brassinosteroid (BR) Biosynthesis Inhibitor for Arabidopsis and Maize
Thomas Hartwig, Claudia Corvalán, Norman B. Best, Joshua S. Budka, Jia‐Ying Zhu, Sunghwa Choe, Burkhard Schulz
SJR Q1FWCI 14.9PLoS ONEOA

Brassinosteroids (BRs) are steroidal hormones that play pivotal roles during plant development. In addition to the characterization of BR deficient mutants, specific BR biosynthesis inhibitors played an essential role in the elucidation of BR function in plants. However, high costs and limited availability of common BR biosynthetic inhibitors constrain their key advantage as a species-independent tool to investigate BR function. We studied propiconazole (Pcz) as an alternative to the BR inhibito

Plant ScienceAgricultural and Biological Sciences
9
논문|인용수 106·2014
Darkness and <i>gulliver2</i>/<i>phy<scp>B</scp></i> mutation decrease the abundance of phosphorylated <scp>BZR</scp>1 to activate brassinosteroid signaling in <scp>A</scp>rabidopsis
Bokyung Kim, Yu Jeong Jeong, Claudia Corvalán, Shozo Fujioka, Seoae Cho, Taesung Park, Sunghwa Choe
SJR Q1FWCI 10.3The Plant JournalOA

Light is essential for plant survival; as such, plants flexibly adjust their growth and development to best harvest light energy. Brassinosteroids (BRs), plant growth-promoting steroid hormones, are essential for this plasticity of development. However, the precise mechanisms underlying BR-mediated growth under different light conditions remain largely unknown. Here, we show that darkness increases the activity of the BR-specific transcription factor, BZR1, by decreasing the phosphorylated (inac

Plant ScienceAgricultural and Biological Sciences
10
논문|인용수 83·1999
The Arabidopsis <i>dwf7</i>/<i>ste1</i> Mutant Is Defective in the Δ<sup>7</sup> Sterol C-5 Desaturation Step Leading to Brassinosteroid Biosynthesis
Sunghwa Choe, Takahiro Noguchi, Shozo Fujioka, Suguru Takatsuto, Christophe P. Tissier, Brian D. Gregory, Amanda S. Ross, Atsushi Tanaka, Shigeo Yoshida, Frans E. Tax, Kenneth A. Feldmann
SJR Q1FWCI 8.8The Plant CellOA

Lesions in brassinosteroid (BR) biosynthetic genes result in characteristic dwarf phenotypes in plants. Understanding the regulation of BR biosynthesis demands continued isolation and characterization of mutants corresponding to the genes involved in BR biosynthesis. Here, we present analysis of a novel BR biosynthetic locus, dwarf7 ( dwf7 ). Feeding studies with BR biosynthetic intermediates and analysis of endogenous levels of BR and sterol biosynthetic intermediates indicate that the defectiv

Plant ScienceAgricultural and Biological Sciences
11
논문|인용수 73·2014
Antagonistic Regulation of Arabidopsis Growth by Brassinosteroids and Abiotic Stresses
Yuhee Chung, Soon Il Kwon, Sunghwa Choe
SJR Q1FWCI 7.0Molecules and CellsOA

To withstand ever-changing environmental stresses, plants are equipped with phytohormone-mediated stress resistance mechanisms. Salt stress triggers abscisic acid (ABA) signaling, which enhances stress tolerance at the expense of growth. ABA is thought to inhibit the action of growth-promoting hormones, including brassinosteroids (BRs). However, the regulatory mechanisms that coordinate ABA and BR activity remain to be discovered. We noticed that ABA-treated seedlings exhibited small, round leav

Plant ScienceAgricultural and Biological Sciences
12
리뷰|인용수 73·2021
Plant-Based COVID-19 Vaccines: Current Status, Design, and Development Strategies of Candidate Vaccines
Puna Maya Maharjan, Sunghwa Choe
SJR Q1FWCI 9.7VaccinesOA

The prevalence of the coronavirus disease 2019 (COVID-19) pandemic in its second year has led to massive global human and economic losses. The high transmission rate and the emergence of diverse SARS-CoV-2 variants demand rapid and effective approaches to preventing the spread, diagnosing on time, and treating affected people. Several COVID-19 vaccines are being developed using different production systems, including plants, which promises the production of cheap, safe, stable, and effective vac

BiotechnologyBiochemistry, Genetics and Molecular Biology
13
논문|인용수 69·2006
Brassinosteroid biosynthesis and inactivation
Sunghwa Choe
SJR Q1FWCI 4.1Physiologia PlantarumOA

The term brassinosteroids (BRs) refers to the growth‐promoting plant steroidal hormones. Various developmental programs including but not limited to cell elongation, stress tolerance, and skoto‐/photo‐morphogenesis are controlled by subnanomolar concentrations of BRs. Accordingly, BR mutants that are defective in BR biosynthetic or signaling pathways usually display dwarfism. Characterization of numerous BR dwarf mutants isolated from Arabidopsis , pea, tomato, and rice greatly contributed to ou

Plant ScienceAgricultural and Biological Sciences
14
논문|인용수 48·2013
Brassinosteroids Regulate Plant Growth through Distinct Signaling Pathways in Selaginella and Arabidopsis
Jinyeong Cheon, Shozo Fujioka, Brian P. Dilkes, Sunghwa Choe
SJR Q1FWCI 3.2PLoS ONEOA

Brassinosteroids (BRs) are growth-promoting steroid hormones that regulate diverse physiological processes in plants. Most BR biosynthetic enzymes belong to the cytochrome P450 (CYP) family. The gene encoding the ultimate step of BR biosynthesis in Arabidopsis likely evolved by gene duplication followed by functional specialization in a dicotyledonous plant-specific manner. To gain insight into the evolution of BRs, we performed a genomic reconstitution of Arabidopsis BR biosynthetic genes in an

Plant ScienceAgricultural and Biological Sciences
15
논문|인용수 30·2021
Plant-Expressed Receptor Binding Domain of the SARS-CoV-2 Spike Protein Elicits Humoral Immunity in Mice
Puna Maya Maharjan, Jinyeong Cheon, Ji‐Yun Jung, Haerim Kim, Jaewon Lee, Minjeong Song, Gi Uk Jeong, Young‐Chan Kwon, Byoung-Shik Shim, Sunghwa Choe
SJR Q1FWCI 4.0VaccinesOA

The current 15-month coronavirus disease-19 (COVID-19) pandemic caused by SARS-CoV-2 has accounted for 3.77 million deaths and enormous worldwide social and economic losses. A high volume of vaccine production is urgently required to eliminate COVID-19. Inexpensive and robust production platforms will improve the distribution of vaccines to resource-limited countries. Plant species offer such platforms, particularly through the production of recombinant proteins to serve as immunogens. To achiev

BiotechnologyBiochemistry, Genetics and Molecular Biology

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