Giltsu Choi

Publication List Details

Period

1997 - 2008

Number

22

Co-Authors

Reciprocal Regulation of Arabidopsis UGT78D2 and BANYULS Is Critical for Regulation of the Metabolic Flux of Anthocyanidins to Condensed Tannins in Developing Seed Coats (2008)

Lee, Yeon, Yoon, Hye Ryon, Paik, Yong Sook, Liu, Jang Ryul, Chung, Won-Il, Choi, Giltsu

Anthocyanins are major color pigments in plants. Their biosynthetic pathways are well established, and the majority of these biosynthetic enzymes have been identified in model plants such as...

Modulation of flower colour by rationally designed dominant-negative chalcone synthase (2007)

Hanumappa, Mamatha, Choi, Goh, Ryu, Sunhyo, Choi, Giltsu

The intensity of flower colour, mainly determined by the amount of anthocyanin, is an important horticultural trait. To modulate flower colour intensity, post-transcriptional gene silencing...

Structural basis for the conformational integrity of the Arabidopsis thaliana HY5 leucine zipper homodimer (2007)

Yoon, Mi-Kyung, Kim, Ho-Min, Choi, Giltsu, Lee, Jie-Oh, Choi, Byong-Seok

The leucine zipper (LZ) domain of the HY5 transcription factor from Arabidopsis thaliana has unique primary structural properties, including major occupation by the Leu residues as well as two buried...

LONGIFOLIA1 and LONGIFOLIA2, two homologous genes, regulate longitudinal cell elongation in Arabidopsis (2006)

Lee, Young Koung, Kim, Gyung-Tae, Kim, In-Jung, Park, Jeongmoo, Kwak, Sang-Soo, Choi, Giltsu, ...

Plants have diversified their leaf morphologies to adapt to diverse ecological niches. The molecular components responsible for regulating leaf morphology, however, have not been fully elucidated. By...

A Possible Role of NDPK2 in the Regulation of Auxin Mediated Responses for Plant Growth and Development (2005)

Choi, Goh, Kim, Jeong-Il, Hong, Suk-Whan, Shin, Byoungchul, Choi, Giltsu, Blakeslee, Joshua J., ...

Auxin plays many crucial roles in the course of plant growth and development, such as hook opening, leaf expansion and inhibition of mesocotyl elongation. Although its mechanism of action has not...

A Possible Role of NDPK2 in the Regulation of Auxin Mediated Responses for Plant Growth and Development (2005)

Choi, Goh, Kim, Jeong-Il, Hong, Suk-Whan, Shin, Byoungchul, Choi, Giltsu, Blakeslee, Joshua J., ...

Auxin plays many crucial roles in the course of plant growth and development, such as hook opening, leaf expansion and inhibition of mesocotyl elongation. Although its mechanism of action has not...

A Possible Role of NDPK2 in the Regulation of Auxin Mediated Responses for Plant Growth and Development (2005)

Choi, Goh, Kim, Jeong-Il, Hong, Suk-Whan, Shin, Byoungchul, Choi, Giltsu, Blakeslee, Joshua J., ...

Auxin plays many crucial roles in the course of plant growth and development, such as hook opening, leaf expansion and inhibition of mesocotyl elongation. Although its mechanism of action has not...

A Possible Role for NDPK2 in the Regulation of Auxin-mediated Responses for Plant Growth and Development (2005)

Choi, Goh, Kim, Jeong-Il, Hong, Suk-Whan, Shin, Byoungchul, Choi, Giltsu, Blakeslee, Joshua J., ...

Auxin plays many crucial roles in the course of plant growth and development, such as hook opening, leaf expansion and inhibition of mesocotyl elongation. Although its mechanism of action has not...

A Possible Role of NDPK2 in the Regulation of Auxin Mediated Responses for Plant Growth and Development (2005)

Choi, Goh, Kim, Jeong-Il, Hong, Suk-Whan, Shin, Byoungchul, Choi, Giltsu, Blakeslee, Joshua J., ...

Auxin plays many crucial roles in the course of plant growth and development, such as hook opening, leaf expansion and inhibition of mesocotyl elongation. Although its mechanism of action has not...

A Possible Role of NDPK2 in the Regulation of Auxin Mediated Responses for Plant Growth and Development (2005)

Choi, Goh, Kim, Jeong-Il, Hong, Suk-Whan, Shin, Byoungchul, Choi, Giltsu, Blakeslee, Joshua J., ...

Auxin plays many crucial roles in the course of plant growth and development, such as hook opening, leaf expansion and inhibition of mesocotyl elongation. Although its mechanism of action has not...

A Possible Role of NDPK2 in the Regulation of Auxin Mediated Responses for Plant Growth and Development (2005)

Choi, Goh, Kim, Jeong-Il, Hong, Suk-Whan, Shin, Byoungchul, Choi, Giltsu, Blakeslee, Joshua J., ...

Auxin plays many crucial roles in the course of plant growth and development, such as hook opening, leaf expansion and inhibition of mesocotyl elongation. Although its mechanism of action has not...

Degradation of Phytochrome Interacting Factor 3 in Phytochrome-Mediated Light Signaling (2004)

Park, Eunae, Kim, Jonghyun, Lee, Yeon, Shin, Jieun, Oh, Eunkyoo, Chung, Won-Il, ...

Plant photoreceptors regulate various developmental processes. Among the photoreceptors, phytochromes, red and far-red light receptors, regulate light responses through many signaling components,...

NDP kinase 2 interacts with two oxidative stress-activated MAPKs to regulate cellular redox state and enhances multiple stress tolerance in transgenic plants

Moon, Haejeong, Lee, Boyoung, Choi, Giltsu, Shin, Dongjin, Prasad, D. Theertha, Lee, Oksun, ...

NDP kinases (NDPKs) are multifunctional proteins that regulate a variety of eukaryotic cellular activities, including cell proliferation, development, and differentiation. However, much less is known...

Functional Characterization of Phytochrome Interacting Factor 3 in Phytochrome-Mediated Light Signal Transduction

Kim, Jonghyun, Yi, Hankuil, Choi, Goh, Shin, Byongchul, Song, Pill-Soon, Choi, Giltsu

Phytochromes regulate various light responses through their interactions with different signaling proteins, such as phytochrome interacting factor 3 (PIF3). However, the physiological functions of...

PIL5, a Phytochrome-Interacting Basic Helix-Loop-Helix Protein, Is a Key Negative Regulator of Seed Germination in Arabidopsis thalianaW⃞

Oh, Eunkyoo, Kim, Jonghyun, Park, Eunae, Kim, Jeong-Il, Kang, Changwon, Choi, Giltsu

The first decision made by an angiosperm seed, whether to germinate or not, is based on integration of various environmental signals such as water and light. The phytochromes (Phys) act as red and...

NDP kinase 2 interacts with two oxidative stress-activated MAPKs to regulate cellular redox state and enhances multiple stress tolerance in transgenic plants

Moon, Haejeong, Lee, Boyoung, Choi, Giltsu, Shin, Dongjin, Prasad, D. Theertha, Lee, Oksun, ...

NDP kinases (NDPKs) are multifunctional proteins that regulate a variety of eukaryotic cellular activities, including cell proliferation, development, and differentiation. However, much less is known...

Functional Characterization of Phytochrome Interacting Factor 3 in Phytochrome-Mediated Light Signal Transduction

Kim, Jonghyun, Yi, Hankuil, Choi, Goh, Shin, Byongchul, Song, Pill-Soon, Choi, Giltsu

Phytochromes regulate various light responses through their interactions with different signaling proteins, such as phytochrome interacting factor 3 (PIF3). However, the physiological functions of...

PIL5, a Phytochrome-Interacting Basic Helix-Loop-Helix Protein, Is a Key Negative Regulator of Seed Germination in Arabidopsis thalianaW⃞

Oh, Eunkyoo, Kim, Jonghyun, Park, Eunae, Kim, Jeong-Il, Kang, Changwon, Choi, Giltsu

The first decision made by an angiosperm seed, whether to germinate or not, is based on integration of various environmental signals such as water and light. The phytochromes (Phys) act as red and...

PIL5, a Phytochrome-Interacting bHLH Protein, Regulates Gibberellin Responsiveness by Binding Directly to the GAI and RGA Promoters in Arabidopsis Seeds[W]

Oh, Eunkyoo, Yamaguchi, Shinjiro, Hu, Jianhong, Yusuke, Jikumaru, Jung, Byunghyuck, Paik, Inyup, ...

Previous work showed that PHYTOCHROME-INTERACTING FACTOR3-LIKE5 (PIL5), a light-labile basic helix-loop-helix protein, inhibits seed germination by repressing GIBBERELLIN 3β-HYDROXYLASE1 (GA3ox1)...

SOMNUS, a CCCH-Type Zinc Finger Protein in Arabidopsis, Negatively Regulates Light-Dependent Seed Germination Downstream of PIL5[W]

Kim, Dong Hwan, Yamaguchi, Shinjiro, Lim, Soohwan, Oh, Eunkyoo, Park, Jeongmu, Hanada, Atsushi, ...

Light absorbed by seed phytochromes of Arabidopsis thaliana modulates abscisic acid (ABA) and gibberellic acid (GA) signaling pathways at least partly via PHYTOCHROME-INTERACTING FACTOR3-LIKE5...

Phytochromes promote seedling light responses by inhibiting four negatively-acting phytochrome-interacting factors

Shin, Jieun, Kim, Keunhwa, Kang, Hyojin, Zulfugarov, Ismayil S., Bae, Gabyong, Lee, Choon-Hwan, ...

PIF3 is a phytochrome-interacting basic helix–loop–helix transcription factor that negatively regulates light responses, including hypocotyl elongation, cotyledon opening, and hypocotyl negative...