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노유선 교수

Yoo-sun Noh

서울대학교 · 농업·생명과학

연구실 소개

노유선 교수의 연구실은 식물의 생장과 발달을 조절하는 분자 메커니즘, 특히 노화와 번식 시기 조절을 중심으로 한 유전자 조절 네트워크를 연구하고 있습니다. 특히 FLC 기반의 봄철 꽃 피우기 조절, 광주기와 저온에 의한 유전자 발현 조절, 그리고 병원균 저항성에서의 염색체 구조 조절 메커니즘을 다룹니다. 고해상도 세포내 분포 분석과 유전자 발현 프로파일링을 통해 식물의 생리적 반응을 분자 수준에서 규명하고 있습니다.

꽃 피우기 조절FLC 발현 조절염색체 구조 조절식물 면역 반응노화 관련 세포소기관

연구 현황

논문 수
44
총 인용 수
4,484
최근 5년 논문
7
주요 분야
농업·생명과학

연구 성과 추이

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

5개년 연도별 논문 게재 수
7총합
2022
2023
2024
2025
2026
5개년 연도별 피인용 수
34총합
20222023202420252026

주요 논문

15
1
논문|인용수 655·2000
Molecular aspects of leaf senescence
Betânia Ferraz Quirino, Yoo‐Sun Noh, Edward Himelblau, Richard M. Amasino
SJR Q1FWCI 11.0Trends in Plant ScienceOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
2
논문|인용수 370·1999
Identification of a promoter region responsible for the senescence-specific expression of SAG12
Yoo‐Sun Noh, Richard M. Amasino
SJR Q1FWCI 9.8Plant Molecular Biology
Plant ScienceAgricultural and Biological Sciences
3
논문|인용수 332·2005
Senescence‐associated vacuoles with intense proteolytic activity develop in leaves of Arabidopsis and soybean
Marisa S. Otegui, Yoo‐Sun Noh, Dana E. Martínez, Martín Vila Petroff, L. Andrew Staehelin, Richard M. Amasino, Juan J. Guiamét
SJR Q1FWCI 5.8The Plant JournalOA

Vacuolar compartments associated with leaf senescence and the subcellular localization of the senescence-specific cysteine-protease SAG12 (senescence-associated gene 12) were studied using specific fluorescent markers, the expression of reporter genes, and the analysis of high-pressure frozen/freeze-substituted samples. Senescence-associated vacuoles (SAVs) with intense proteolytic activity develop in the peripheral cytoplasm of mesophyll and guard cells in Arabidopsis and soybean. The vacuolar

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
논문|인용수 292·2004
Divergent Roles of a Pair of Homologous Jumonji/Zinc-Finger–Class Transcription Factor Proteins in the Regulation of Arabidopsis Flowering Time
Bosl Noh, Seunghee Lee, Hyun‐Jin Kim, Gibum Yi, Eun-Ah Shin, Mirha Lee, Kyung-Ja Jung, Mark R. Doyle, Richard M. Amasino, Yoo‐Sun Noh
SJR Q1FWCI 10.8The Plant CellOA

Flowering in Arabidopsis thaliana is controlled by multiple pathways, including the photoperiod pathway and the FLOWERING LOCUS C (FLC)-dependent pathway. Here, we report that a pair of related jumonji-class transcription factors, EARLY FLOWERING 6 (ELF6) and RELATIVE OF EARLY FLOWERING 6 (REF6), play divergent roles in the regulation of Arabidopsis flowering. ELF6 acts as a repressor in the photoperiod pathway, whereas REF6, which has the highest similarity to ELF6, is an FLC repressor. Ectopic

Plant ScienceAgricultural and Biological Sciences
5
논문|인용수 284·2003
<i>PIE1</i> , an ISWI Family Gene, Is Required for <i>FLC</i> Activation and Floral Repression in Arabidopsis
Yoo‐Sun Noh, Richard M. Amasino
SJR Q1FWCI 23.0The Plant CellOA

Proper control of the floral transition is critical for reproductive success in flowering plants. In Arabidopsis, FLOWERING LOCUS C (FLC) is a floral repressor upon which multiple floral regulatory pathways converge. Mutations in PHOTOPERIOD-INDEPENDENT EARLY FLOWERING1 (PIE1) suppress the FLC-mediated delay of flowering as a result of the presence of FRIGIDA or of mutations in autonomous pathway genes. PIE1 is required for high levels of FLC expression in the shoot apex, but it is not required

Plant ScienceAgricultural and Biological Sciences
6
논문|인용수 271·2009
Crosstalk between Cold Response and Flowering in <i>Arabidopsis</i> Is Mediated through the Flowering-Time Gene <i>SOC1</i> and Its Upstream Negative Regulator <i>FLC</i>
Eun-Joo Seo, Horim Lee, Jin Pyeong Jeon, Hanna Park, Jungmook Kim, Yoo‐Sun Noh, Ilha Lee
SJR Q1FWCI 13.1The Plant CellOA

The appropriate timing of flowering is pivotal for reproductive success in plants; thus, it is not surprising that flowering is regulated by complex genetic networks that are fine-tuned by endogenous signals and environmental cues. The Arabidopsis thaliana flowering-time gene SUPPRESSOR OF OVEREXPRESSION OF CONSTANS1 (SOC1) encodes a MADS box transcription factor and is one of the key floral activators integrating multiple floral inductive pathways, namely, long-day, vernalization, autonomous, a

Plant ScienceAgricultural and Biological Sciences
7
논문|인용수 235·2005
Establishment of the Vernalization-Responsive, Winter-Annual Habit in<i>Arabidopsis</i>Requires a Putative Histone H3 Methyl Transferase[W]
Sang Yeol Kim, Yuehui He, Yannick Jacob, Yoo‐Sun Noh, Scott D. Michaels, Richard M. Amasino
SJR Q1FWCI 18.6The Plant CellOA

Winter-annual accessions of Arabidopsis thaliana are often characterized by a requirement for exposure to the cold of winter to initiate flowering in the spring. The block to flowering prior to cold exposure is due to high levels of the flowering repressor FLOWERING LOCUS C (FLC). Exposure to cold promotes flowering through a process known as vernalization that epigenetically represses FLC expression. Rapid-cycling accessions typically have low levels of FLC expression and therefore do not requi

Plant ScienceAgricultural and Biological Sciences
8
논문|인용수 193·2012
HDA19 is required for the repression of salicylic acid biosynthesis and salicylic acid‐mediated defense responses in Arabidopsis
Sun‐Mee Choi, Hae‐Ryong Song, Soon‐Ki Han, Muho Han, Chi‐Yeol Kim, Jaejin Park, Yong‐Hwan Lee, Jong‐Seong Jeon, Yoo‐Sun Noh, Bosl Noh
SJR Q1FWCI 14.1The Plant JournalOA

To cope with a lifetime of exposure to a variety of pathogens, plants have developed exquisite and refined defense mechanisms that vary depending on the type of attacking pathogen. Defense-associated transcriptional reprogramming is a central part of plant defense mechanisms. Chromatin modification has recently been shown to be another layer of regulation for plant defense mechanisms. Here, we show that the RPD3/HDA1-class histone deacetylase HDA19 is involved in the repression of salicylic acid

Plant ScienceAgricultural and Biological Sciences
9
논문|인용수 181·2012
Control of Seed Germination by Light-Induced Histone Arginine Demethylation Activity
Jungnam Cho, Jee-Youn Ryu, Young‐Min Jeong, Jihye Park, Ji‐Joon Song, Richard M. Amasino, Bosl Noh, Yoo‐Sun Noh
SJR Q1FWCI 4.8Developmental CellOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
논문|인용수 175·2009
Repression of FLOWERING LOCUS T Chromatin by Functionally Redundant Histone H3 Lysine 4 Demethylases in Arabidopsis
Juhee Jeong, Hae-Ryong Song, Jonghyun Ko, Young‐Min Jeong, Young Eun Kwon, Jae Hong Seol, Richard M. Amasino, Bosl Noh, Yoo‐Sun Noh
SJR Q1FWCI 13.9PLoS ONEOA

FLOWERING LOCUS T (FT) plays a key role as a mobile floral induction signal that initiates the floral transition. Therefore, precise control of FT expression is critical for the reproductive success of flowering plants. Coexistence of bivalent histone H3 lysine 27 trimethylation (H3K27me3) and H3K4me3 marks at the FT locus and the role of H3K27me3 as a strong FT repression mechanism in Arabidopsis have been reported. However, the role of an active mark, H3K4me3, in FT regulation has not been add

Plant ScienceAgricultural and Biological Sciences
11
논문|인용수 142·2018
Epigenetic reprogramming by histone acetyltransferase HAG1/AtGCN5 is required for pluripotency acquisition in <i>Arabidopsis</i>
Ji Yun Kim, Woorim Yang, Joachim Forner, Jan U. Lohmann, Bosl Noh, Yoo‐Sun Noh
SJR Q1FWCI 17.9The EMBO JournalOA
Plant ScienceAgricultural and Biological Sciences
12
논문|인용수 112·2018
Salicylic acid-induced transcriptional reprogramming by the HAC–NPR1–TGA histone acetyltransferase complex in Arabidopsis
Hongshi Jin, Sun‐Mee Choi, Min‐Jeong Kang, Se-Hun Yun, Dong-Jin Kwon, Yoo‐Sun Noh, Bosl Noh
SJR Q1FWCI 11.2Nucleic Acids ResearchOA

Plant immunity depends on massive expression of pathogenesis-related genes (PRs) whose transcription is de-repressed by pathogen-induced signals. Salicylic acid (SA) acts as a major signaling molecule in plant immunity and systemic acquired resistance triggered by bacterial or viral pathogens. SA signal results in the activation of the master immune regulator, Nonexpressor of pathogenesis-related genes 1 (NPR1), which is thought to be recruited by transcription factors such as TGAs to numerous d

Plant ScienceAgricultural and Biological Sciences
13
논문|인용수 111·1995
Characterization of two rice MADS box genes homologous to GLOBOSA
Yong-Yoon Chung, Seong‐Ryong Kim, Hong‐Gyu Kang, Yoo‐Sun Noh, Min‐Chul Park, David Finkel, Gynheung An
SJR Q1FWCI 4.5Plant Science
Plant ScienceAgricultural and Biological Sciences
14
논문|인용수 99·2006
Role of plant <i>CBP</i>/<i>p300‐like</i> genes in the regulation of flowering time
Soon‐Ki Han, Ju‐Dong Song, Yoo‐Sun Noh, Bosl Noh
SJR Q1FWCI 6.2The Plant JournalOA

CREB-binding protein (CBP) and its homolog p300 possess histone acetyltransferase activity and function as key transcriptional co-activators in the regulation of gene expression that controls differentiation and development in animals. However, the role of CBP/p300-like genes in plants has not yet been elucidated. Here, we show that Arabidopsis CBP/p300-like genes promote flowering by affecting the expression of a major floral repressor FLOWERING LOCUS C (FLC). Although animal CBP and p300 gener

Plant ScienceAgricultural and Biological Sciences
15
논문|인용수 97·2010
Growth habit determination by the balance of histone methylation activities in Arabidopsis
Jonghyun Ko, Irina Mitina, Yosuke Tamada, Y. Hyun, Yeonhee Choi, Richard M. Amasino, Bosl Noh, Yoo‐Sun Noh
SJR Q1FWCI 13.2The EMBO JournalOA
Plant ScienceAgricultural and Biological Sciences

대표 연구 분야

Plant ScienceMolecular BiologyInsect Science

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