Skip to main content

Kyung-Jin Kim

Korea University · 神経科学

研究室紹介

Professor Kyung-Jin Kim's research lab specializes in enzymatic biodegradation of recalcitrant plastics, particularly polyethylene terephthalate (PET), with a focus on protein engineering and structural biology to enhance enzyme stability and activity. The lab investigates key enzymes such as IsPETase, MHETase, and CaPETase, aiming to develop efficient biocatalysts for sustainable PET recycling. Additionally, the lab explores circadian clock regulation through the study of BMAL1 isoforms and post-translational modifications, linking molecular mechanisms to physiological rhythms. Their work bridges synthetic biology, structural enzymology, and environmental biotechnology to address plastic pollution and metabolic regulation.

PET degradationenzyme engineeringstructural biologycircadian clockbiocatalysis

Research Overview

Papers
169
Total Citations
4,739
Papers (5y)
36
Primary Field
神経科学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
36total
2022
2023
2024
2025
2026
Citations per year (5y)
146total
20222023202420252026

Selected Papers

15
1
Review|296 citations·2011
Circadian rhythm of adrenal glucocorticoid: Its regulation and clinical implications
Sooyoung Chung, Gi Hoon Son, Kyungjin Kim
SJR Q1Biochimica et Biophysica Acta (BBA) - Molecular Basis of Disease
Endocrine and Autonomic SystemsNeuroscience
2
Article|291 citations·2014
Impact of Circadian Nuclear Receptor REV-ERBα on Midbrain Dopamine Production and Mood Regulation
Sooyoung Chung, Eun Jeong Lee, Seongsik Yun, Han Kyoung Choe, Seong‐Beom Park, Hyo Jin Son, Kwangsoo Kim, Dean E. Dluzen, Inah Lee, Onyou Hwang, Gi Hoon Son, Kyungjin Kim
SJR Q1Cell
Endocrine and Autonomic SystemsNeuroscience
3
Article|201 citations·2018
A splice variant of human Bmal1 acts as a negative regulator of the molecular circadian clock
Ji‐Won Lee, Eonyoung Park, Ga Hye Kim, Ilmin Kwon, Kyungjin Kim
SJR Q1Experimental & Molecular MedicineOA

Bmal1 is one of the key molecules that controls the mammalian molecular clock. In humans, two isoforms of Bmal1 are generated by alternative RNA splicing. Unlike the extensively studied hBmal1b, the canonical form of Bmal1 in most species, the expression and/or function of another human-specific isoform, hBmal1a, are poorly understood. Due to the lack of the N-terminal nuclear localization signal (NLS), hBMAL1a does not enter the nucleus as hBMAL1b does. However, despite the lack of the NLS, hBM

Endocrine and Autonomic SystemsNeuroscience
4
Article|160 citations·2008
Dual Modification of BMAL1 by SUMO2/3 and Ubiquitin Promotes Circadian Activation of the CLOCK/BMAL1 Complex
Ji‐Won Lee, Yool Lee, Min-Joo Lee, Eonyoung Park, Sung Hwan Kang, Chin Ha Chung, Kun Ho Lee, Kyungjin Kim
SJR Q2Molecular and Cellular Biology

Heterodimers of BMAL1 and CLOCK drive rhythmic expression of clock-controlled genes, thereby generating circadian physiology and behavior. Posttranslational modifications of BMAL1 play a key role in modulating the transcriptional activity of the CLOCK/BMAL1 complex during the circadian cycle. Recently, we demonstrated that circadian activation of the heterodimeric transcription factor is accompanied by ubiquitin-dependent proteolysis of BMAL1. Here we show that modification by SUMO localizes BMA

Endocrine and Autonomic SystemsNeuroscience
5
Review|133 citations·2011
The adrenal peripheral clock: Glucocorticoid and the circadian timing system
Gi Hoon Son, Sooyoung Chung, Kyungjin Kim
SJR Q1Frontiers in Neuroendocrinology
Endocrine and Autonomic SystemsNeuroscience
6
Article|117 citations·2013
Glucocorticoid-mediated Period2 induction delays the phase of circadian rhythm
Solmi Cheon, Noheon Park, Sehyung Cho, Kyungjin Kim
SJR Q1Nucleic Acids ResearchOA

Glucocorticoid (GC) signaling synchronizes the circadian rhythm of individual peripheral cells and induces the expression of circadian genes, including Period1 (Per1) and Period2 (Per2). However, no GC response element (GRE) has been reported in the Per2 promoter region. Here we report the molecular mechanisms of Per2 induction by GC signaling and its relevance to the regulation of circadian timing. We found that GC prominently induced Per2 expression and delayed the circadian phase. The overlap

Endocrine and Autonomic SystemsNeuroscience
7
Article|79 citations·2007
Rapid activation of CLOCK by Ca2+‐dependent protein kinase C mediates resetting of the mammalian circadian clock
Hong Seok Shim, Hyun Jung Kim, Ji‐Won Lee, Gi Hoon Son, Sehyung Cho, Tae Hwan Oh, Sang Hyeon Kang, Dong‐Seung Seen, Kun Ho Lee, Kyungjin Kim
SJR Q1EMBO ReportsOA
Endocrine and Autonomic SystemsNeuroscience
8
Article|78 citations·2015
A synthetic cryptochrome inhibitor induces anti-proliferative effects and increases chemosensitivity in human breast cancer cells
Sung Kook Chun, Sooyoung Chung, Hee-Dae Kim, Ju Hyung Lee, Jaebong Jang, Jeong‐Ah Kim, Doyeon Kim, Gi Hoon Son, Young J. Oh, Young‐Ger Suh, Cheol-Soon Lee, Kyungjin Kim
SJR Q2Biochemical and Biophysical Research Communications
Endocrine and Autonomic SystemsNeuroscience
9
Article|77 citations·2011
Chronic circadian disturbance by a shortened light-dark cycle increases mortality
Noheon Park, Solmi Cheon, Gi Hoon Son, Sehyung Cho, Kyungjin Kim
SJR Q1Neurobiology of Aging
Endocrine and Autonomic SystemsNeuroscience
10
Article|69 citations·2014
Identification and Validation of Cryptochrome Inhibitors That Modulate the Molecular Circadian Clock
Sung Kook Chun, Jaebong Jang, Sooyoung Chung, Hwayoung Yun, Nam‐Jung Kim, Jong‐Wha Jung, Gi Hoon Son, Young‐Ger Suh, Kyungjin Kim
SJR Q1ACS Chemical Biology

Circadian rhythms, biological oscillations with a period of about 24 h, are maintained by a genetically determined innate time-keeping system called the molecular circadian clockwork. Despite the physiological and clinical importance of the circadian clock, the development of small molecule modulators that directly target the core clock machinery has only been recently initiated. In the present study, we aimed to identify novel small molecule modulators influencing the molecular feedback loop of

Endocrine and Autonomic SystemsNeuroscience
11
Article|49 citations·2018
Multimodal Regulation of Circadian Glucocorticoid Rhythm by Central and Adrenal Clocks
Gi Hoon Son, Hyo Kyeong, Sooyoung Chung, Kyungjin Kim
SJR Q2Journal of the Endocrine SocietyOA

Adrenal glucocorticoids (GCs) control a wide range of physiological processes, including metabolism, cardiovascular and pulmonary activities, immune and inflammatory responses, and various brain functions. During stress responses, GCs are secreted through activation of the hypothalamic-pituitary-adrenal axis, whereas circulating GC levels in unstressed states follow a robust circadian oscillation with a peak around the onset of the active period of a day. A recent advance in chronobiological res

Endocrine and Autonomic SystemsNeuroscience
12
Article|49 citations·1988
Testosterone stimulates LH-RH-like mRNA level in the rat hypothalamus
Youngkyu Park, Sang Dai Park, Cho Wan Kyoo, Kyungjin Kim
SJR Q2Brain Research
Social PsychologyPsychology
13
Article|40 citations·2015
Identification of a novel circadian clock modulator controlling BMAL1 expression through a ROR/REV-ERB-response element-dependent mechanism
Ji Yeon Lee, Seungbeom Lee, Sooyoung Chung, Noheon Park, Gi Hoon Son, Hongchan An, Jaebong Jang, Dong-Jo Chang, Young‐Ger Suh, Kyungjin Kim
SJR Q2Biochemical and Biophysical Research CommunicationsOA

Circadian rhythms, biological oscillations with a period of about 24 h, are maintained by an innate genetically determined time-keeping system called the molecular circadian clockwork. Despite the physiological and clinical importance of the circadian clock, development of small molecule modulators targeting the core clock machinery has only recently been initiated. BMAL1, a core clock gene, is controlled by a ROR/REV-ERB-response element (RORE)-dependent mechanism, which plays an important role

Endocrine and Autonomic SystemsNeuroscience
14
Article|35 citations·2016
Korea Brain Initiative: Integration and Control of Brain Functions
Sung‐Jin Jeong, Hae-Jin Lee, Eun‐Mi Hur, Youngshik Choe, Ja Wook Koo, Jong‐Cheol Rah, Kea Joo Lee, Hyun–Ho Lim, Woong Sun, Cheil Moon, Kyungjin Kim
SJR Q1NeuronOA
Cognitive NeuroscienceNeuroscience
15
Article|35 citations·2017
Cooperative roles of the suprachiasmatic nucleus central clock and the adrenal clock in controlling circadian glucocorticoid rhythm
Sooyoung Chung, Eun Jeong Lee, Hyo Kyeong, Jeong‐Ah Kim, Doyeon Kim, Gi Hoon Son, Kyungjin Kim
SJR Q1Scientific ReportsOA

The mammalian circadian timing system consists of the central clock in the hypothalamic suprachiasmatic nucleus (SCN) and subsidiary peripheral clocks in other tissues. Glucocorticoids (GCs) are adrenal steroid hormones with widespread physiological effects that undergo daily oscillations. We previously demonstrated that the adrenal peripheral clock plays a pivotal role in circadian GC rhythm by driving cyclic GC biosynthesis. Here, we show that the daily rhythm in circulating GC levels is contr

Endocrine and Autonomic SystemsNeuroscience

Research Areas

Endocrine and Autonomic SystemsMolecular BiologyCellular and Molecular NeuroscienceReproductive MedicineGeneticsDevelopmental Neuroscience

Kyung-Jin Kimの研究をNubintでさらに深く

この研究室の論文をアプリで開き、AIと共に読み、要約し、引用しましょう。