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Il-Do Hwang

Pohang University of Science and Technology · 農学・生物学

研究室紹介

Professor Il-Do Hwang's research lab focuses on plant signal transduction, particularly the molecular mechanisms underlying hormone signaling, stress responses, and developmental regulation in plants. The lab investigates key signaling pathways involving cytokinins, abscisic acid, glucose, and calcium, with a strong emphasis on two-component systems, receptor kinases, and downstream transcriptional regulators. Using genetic, biochemical, and cell biological approaches, the lab uncovers how plants integrate environmental cues with internal developmental programs to maintain homeostasis and adapt to changing conditions. Their work has significantly advanced understanding of hormone signaling networks, especially in regulating processes like leaf senescence, seed dormancy, and stress adaptation.

plant signalinghormone signalingtwo-component systemscalcium signalingabiotic stress

Research Overview

Papers
103
Total Citations
11,954
Papers (5y)
13
Primary Field
農学・生物学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
13total
2022
2023
2024
2025
2026
Citations per year (5y)
260total
20222023202420252026

Selected Papers

15
1
Article|1,161 citations·2003
Role of the Arabidopsis Glucose Sensor HXK1 in Nutrient, Light, and Hormonal Signaling
Brandon d. Moore, Li Zhou, Filip Rolland, Qi Hall, Wan‐Hsing Cheng, Yanxia Liu, Ildoo Hwang, Tamara L. Jones, Jen Sheen
SJR Q1Science

Glucose modulates many vital processes in photosynthetic plants. Analyses of Arabidopsis glucose insensitive2 (gin2) mutants define the physiological functions of a specific hexokinase (HXK1) in the plant glucose-signaling network. HXK1 coordinates intrinsic signals with extrinsic light intensity. HXK1 mutants lacking catalytic activity still support various signaling functions in gene expression, cell proliferation, root and inflorescence growth, and leaf expansion and senescence, thus demonstr

Plant ScienceAgricultural and Biological Sciences
2
Article|996 citations·2001
Two-component circuitry in Arabidopsis cytokinin signal transduction
Ildoo Hwang, Jen Sheen
SJR Q1Nature
Plant ScienceAgricultural and Biological Sciences
3
Review|747 citations·2012
Cytokinin Signaling Networks
Ildoo Hwang, Jen Sheen, Bruno Müller
SJR Q1Annual Review of Plant Biology

Despite long-standing observations on diverse cytokinin actions, the discovery path to cytokinin signaling mechanisms was tortuous. Unyielding to conventional genetic screens, experimental innovations were paramount in unraveling the core cytokinin signaling circuitry, which employs a large repertoire of genes with overlapping and specific functions. The canonical two-component transcription circuitry involves His kinases that perceive cytokinin and initiate signaling, as well as His-to-Asp phos

Plant ScienceAgricultural and Biological Sciences
4
Article|688 citations·2006
Activation of Glucosidase via Stress-Induced Polymerization Rapidly Increases Active Pools of Abscisic Acid
Kwang Hee Lee, Hai Lan Piao, Ho‐Youn Kim, Sang Mi Choi, Fan Jiang, Wolfram Hartung, Ildoo Hwang, June M. Kwak, In‐Jung Lee, Inhwan Hwang, Inhwan Hwang, Inhwan Hwang
SJR Q1CellOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
5
Article|474 citations·2010
The Cytokinin-Activated Transcription Factor ARR2 Promotes Plant Immunity via TGA3/NPR1-Dependent Salicylic Acid Signaling in Arabidopsis
Jaemyung Choi, Sung Un Huh, Mikiko Kojima, Hitoshi Sakakibara, Kyung-Hee Paek, Ildoo Hwang
SJR Q1Developmental CellOA
Plant ScienceAgricultural and Biological Sciences
6
Review|438 citations·2002
Two-Component Signal Transduction Pathways in Arabidopsis
Ildoo Hwang, Huei-Chi Chen, Jen Sheen
SJR Q1PLANT PHYSIOLOGYOA

The two-component system, consisting of a histidine (His) protein kinase that senses a signal input and a response regulator that mediates the output, is an ancient and evolutionarily conserved signaling mechanism in prokaryotes and eukaryotes. The identification of 54 His protein kinases, His-containing phosphotransfer proteins, response regulators, and related proteins in Arabidopsis suggests an important role of two-component phosphorelay in plant signal transduction. Recent studies indicate

Plant ScienceAgricultural and Biological Sciences
7
Article|427 citations·2006
Cytokinin-mediated control of leaf longevity by AHK3 through phosphorylation of ARR2 in Arabidopsis
Hyo Jung Kim, Hojin Ryu, Sung Hyun Hong, Hye Ryun Woo, Pyung Ok Lim, In Chul Lee, Jen Sheen, Hong Gil Nam, Ildoo Hwang
SJR Q1Proceedings of the National Academy of Sciences

Cytokinins are plant hormones with profound roles in growth and development, including control of leaf longevity. Although the cytokinin signal is known to be perceived by histidine kinase receptors, the underlying molecular mechanism and specificity of the receptors leading to delayed leaf senescence have not yet been elucidated. Here, we found that AHK3, one of the three cytokinin receptors in Arabidopsis, plays a major role in controlling cytokinin-mediated leaf longevity through a specific p

Plant ScienceAgricultural and Biological Sciences
8
Article|320 citations·2013
A secreted peptide acts on BIN2-mediated phosphorylation of ARFs to potentiate auxin response during lateral root development
Hyunwoo Cho, Hojin Ryu, Sangchul Rho, Kristine Hill, Stephanie Smith, Dominique Audenaert, Joonghyuk Park, Soeun Han, Tom Beeckman, Malcolm J. Bennett, Daehee Hwang, Ive De Smet
SJR Q1Nature Cell BiologyOA
Plant ScienceAgricultural and Biological Sciences
9
Article|216 citations·2014
Control of early seedling development by BES1/TPL/HDA19-mediated epigenetic regulation of ABI3
Hojin Ryu, Hyunwoo Cho, Wonsil Bae, Ildoo Hwang
SJR Q1Nature CommunicationsOA
Plant ScienceAgricultural and Biological Sciences
10
Article|176 citations·2000
A calcium-dependent protein kinase can inhibit a calmodulin-stimulated Ca 2+ pump (ACA2) located in the endoplasmic reticulum of Arabidopsis
Ildoo Hwang, Heven Sze, Jeffrey F. Harper
SJR Q1Proceedings of the National Academy of SciencesOA

The magnitude and duration of a cytosolic Ca(2+) release can potentially be altered by changing the rate of Ca(2+) efflux. In plant cells, Ca(2+) efflux from the cytoplasm is mediated by H(+)/Ca(2+)-antiporters and two types of Ca(2+)-ATPases. ACA2 was recently identified as a calmodulin-regulated Ca(2+)-pump located in the endoplasmic reticulum. Here, we show that phosphorylation of its N-terminal regulatory domain by a Ca(2+)-dependent protein kinase (CDPK isoform CPK1), inhibits both basal ac

Plant ScienceAgricultural and Biological Sciences
11
Article|131 citations·2013
BLH1 and KNAT3 modulate ABA responses during germination and early seedling development in Arabidopsis
Dachan Kim, Young‐hyun Cho, Hojin Ryu, Yoonhee Kim, Tae‐Houn Kim, Ildoo Hwang
SJR Q1The Plant Journal

The signal transduction pathway governed by the phytohormone abscisic acid (ABA) regulates not only abiotic stress responses but also early developmental programs such as seed dormancy, germination and seedling growth in response to environmental signals. Optimal plant growth and development depend on the integration of environmental stimuli and intrinsic developmental programs. Here, we show that the homeodomain transcription factors BLH1 and KNAT3, previously implicated in embryo sac developme

Plant ScienceAgricultural and Biological Sciences
12
Article|107 citations·2010
Predominant Actions of Cytosolic BSU1 and Nuclear BIN2 Regulate Subcellular Localization of BES1 in Brassinosteroid Signaling
Hojin Ryu, Kangmin Kim, Hyunwoo Cho, Ildoo Hwang
SJR Q1Molecules and CellsOA

During brassinosteroid (BR) signaling in Arabidopsis, BSU1 (bri1 SUPPRESSOR1) phosphatase and BIN2 (BRASSINOSTEROID INSENSITIVE2) kinase regulate the signal intensity by determining the phosphorylation status of the transcription factors BZR1 (BRASSINAZOLE RESISTANT1) and BES1 (bri1 EMS SUPPRESSOR1). Here, we report hat BIN2 and BSU1 are nucleocytoplasmic regulators that modulate the subcellular localization of BES1, with differential activities between the nucleus and the cytosol. In our experi

Plant ScienceAgricultural and Biological Sciences
13
Article|105 citations·2006
Cytokinin biosynthesis and perception
Ildoo Hwang, Hitoshi Sakakibara
SJR Q1Physiologia PlantarumOA

Cytokinin has been considered to be a master regulator of plant growth and development, but only in the past several years has substantial progress been made uncovering the roles of cytokinins at various developmental stages. Recent studies on key metabolic enzymes and signaling components have contributed to understanding the basic mechanism of biosynthesis and perception of cytokinin within a whole plant body. The initial products of de novo cytokinin biosynthesis in higher plants and Agrobact

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|101 citations·2010
Phosphorylation Dependent Nucleocytoplasmic Shuttling of BES1 Is a Key Regulatory Event in Brassinosteroid Signaling
Hojin Ryu, Hyunwoo Cho, Kangmin Kim, Ildoo Hwang
SJR Q1Molecules and CellsOA

Brassinosteroids BRs)play important roles in plant growth and development.BRs modulate the phosphorylation status of two crucial transcription factors, BRI1 EMS SUPPRESSOR1 BES1)and BRASSINAZOLE RESISTANT1 (BZR1).Here we show that BES1 functions as a nucleocytoplasmic signal transmitter, and that its subcellular localization modulates the output intensity of the BR signal.BRASSINOSTEROID INSENSITIVE2 (BIN2)and other group II GLYCOGEN SYNTHASE KINASE 3 GSK3)-like kinases phosphorylate BES1 and in

Molecular BiologyBiochemistry, Genetics and Molecular Biology
15
Article|96 citations·2018
BIL1-mediated MP phosphorylation integrates PXY and cytokinin signalling in secondary growth
Soeun Han, Hyunwoo Cho, Jaegyun Noh, Jiyan Qi, Heejung Jung, Heejae Nam, Seung‐Chul Lee, Daehee Hwang, Thomas Greb, Ildoo Hwang
SJR Q1Nature Plants
Plant ScienceAgricultural and Biological Sciences

Research Areas

Plant ScienceMolecular BiologyOncologyGlobal and Planetary ChangeBiomedical EngineeringOrganic Chemistry

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