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Eun-kyung Moon

Kyung Hee University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Eun-kyung Moon's research lab focuses on the molecular mechanisms underlying encystation and pathogenesis in *Acanthamoeba*, a free-living protozoan parasite responsible for severe infections such as granulomatous amoebic encephalitis and amoebic keratitis. The lab investigates key biological processes including autophagy, cyst wall formation, and the role of specific proteinases and enzymes in cyst development. Using molecular and cellular approaches such as gene expression profiling, RNA interference, and functional characterization of autophagy-related and cell wall-synthesizing proteins, the lab aims to identify novel therapeutic targets for treating drug-resistant *Acanthamoeba* infections. Their work highlights the importance of understanding parasite differentiation and stress resistance mechanisms to develop effective interventions.

Acanthamoeba encystationautophagy in protozoacyst wall formationserine proteinasesdrug resistance mechanisms

Research Overview

Papers
108
Total Citations
1,432
Papers (5y)
28
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
28total
2022
2023
2024
2025
2026
Citations per year (5y)
164total
20222023202420252026

Selected Papers

15
1
Article|78 citations·2008
Characterization of a Serine Proteinase Mediating Encystation of Acanthamoeba
Eun‐Kyung Moon, Dong-Il Chung, Yeonchul Hong, Hyun-Hee Kong
Eukaryotic CellOA

Members of the genus Acanthamoeba, amphizoic protozoan parasites, are causative agents of granulomatous amoebic encephalitis and amoebic keratitis. Proteinases play a role in various biologic actions in Acanthamoeba, including host tissue destruction, pathogenesis, and digestion of phagocytosed food. Interestingly, we found that encystation of Acanthamoeba was inhibited by the serine proteinase inhibitor phenylmethanesulfonyl fluoride. In this study, we characterize a serine proteinase that is i

EndocrinologyBiochemistry, Genetics and Molecular Biology
2
Article|67 citations·2009
Autophagy protein 8 mediating autophagosome in encysting Acanthamoeba
Eun‐Kyung Moon, Dong-Il Chung, Yeonchul Hong, Hyun-Hee Kong
SJR Q3Molecular and Biochemical Parasitology
EpidemiologyMedicine
3
Article|58 citations·2012
Cysteine protease involving in autophagosomal degradation of mitochondria during encystation of Acanthamoeba
Eun‐Kyung Moon, Yeonchul Hong, Dong-Il Chung, Hyun-Hee Kong
SJR Q3Molecular and Biochemical Parasitology
EndocrinologyBiochemistry, Genetics and Molecular Biology
4
Article|43 citations·2014
Down-Regulation of Cellulose Synthase Inhibits the Formation of Endocysts in Acanthamoeba
Eun‐Kyung Moon, Yeonchul Hong, Dong-Il Chung, Youn‐Kyoung Goo, Hyun-Hee Kong
Korean Journal of ParasitologyOA

Acanthamoeba cysts are resistant to unfavorable physiological conditions and various disinfectants. Acanthamoeba cysts have 2 walls containing various sugar moieties, and in particular, one third of the inner wall is composed of cellulose. In this study, it has been shown that down-regulation of cellulose synthase by small interfering RNA (siRNA) significantly inhibits the formation of mature Acanthamoeba castellanii cysts. Calcofluor white staining and transmission electron microscopy revealed

EndocrinologyBiochemistry, Genetics and Molecular Biology
5
Article|41 citations·2015
Autophagy Inhibitors as a Potential Antiamoebic Treatment for Acanthamoeba Keratitis
Eun‐Kyung Moon, So‐Hee Kim, Yeonchul Hong, Dong-Il Chung, Youn‐Kyoung Goo, Hyun-Hee Kong
SJR Q1Antimicrobial Agents and ChemotherapyOA

Acanthamoeba cysts are resistant to extreme physical and chemical conditions. Autophagy is an essential pathway for encystation of Acanthamoeba cells. To evaluate the possibility of an autophagic Acanthamoeba encystation mechanism, we evaluated autophagy inhibitors, such as 3-methyladenine (3MA), LY294002, wortmannin, bafilomycin A, and chloroquine. Among these autophagy inhibitors, the use of 3MA and chloroquine showed a significant reduction in the encystation ratio in Acanthamoeba cells. Wort

EpidemiologyMedicine
6
Article|40 citations·2008
Acanthamoeba castellanii: Gene profile of encystation by ESTs analysis and KOG assignment
Eun‐Kyung Moon, Dong-Il Chung, Yeonchul Hong, Tae In Ahn, Hyun-Hee Kong
SJR Q3Experimental Parasitology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
7
Article|27 citations·2007
Differentially expressed genes of Acanthamoeba castellanii during encystation
Eun‐Kyung Moon, Dong-Il Chung, Yeon-Chul Hong, Hyun-Hee Kong
Korean Journal of ParasitologyOA

To examine the expressed gene profile during encystation of Acanthamoeba castellanii Castellani, we used differentially expressed gene (DGE) screening by RT-PCR with 20 sets of random primers. From this analysis, we found that approximately 16 genes showed upregulation during encystation. We chose 6 genes, which had relatively higher expression levels, for further investigation. Based on homology search in database, DEG2 showed 55% of similarity with xylose isomerase, DEG9 showed 37% of similari

EndocrinologyBiochemistry, Genetics and Molecular Biology
8
Article|27 citations·2011
Atg3-Mediated Lipidation of Atg8 Is Involved in Encystation ofAcanthamoeba
Eun‐Kyung Moon, Dong-Il Chung, Yeonchul Hong, Hyun-Hee Kong
Korean Journal of ParasitologyOA

Autophagy is a catabolic process involved in the degradation of a cell's own components for cell growth, development, homeostasis, and the recycling of cellular products. Autophagosome is an essential component in the protozoan parasite during differentiation and encystation. The present study identified and characterized autophagy-related protein (Atg) 3, a member of Atg8 conjugation system, in Acanthamoeba castellanii (AcAtg3). AcAtg3 encoding a 304 amino acid protein showed high similarity wi

EpidemiologyMedicine
9
Article|26 citations·2011
Microarray Analysis of Differentially Expressed Genes between Cysts and Trophozoites ofAcanthamoeba castellanii
Eun‐Kyung Moon, Ying-Hua Xuan, Dong-Il Chung, Yeonchul Hong, Hyun-Hee Kong
Korean Journal of ParasitologyOA

Acanthamoeba infection is difficult to treat because of the resistance property of Acanthamoeba cyst against the host immune system, diverse antibiotics, and therapeutic agents. To identify encystation mediating factors of Acanthamoeba, we compared the transcription profile between cysts and trophozoites using microarray analysis. The DNA chip was composed of 12,544 genes based on expressed sequence tag (EST) from an Acanthamoeba ESTs database (DB) constructed in our laboratory, genetic informat

EndocrinologyBiochemistry, Genetics and Molecular Biology
10
Article|22 citations·2013
Identification of Atg8 Isoform in Encysting Acanthamoeba
Eun‐Kyung Moon, Yeonchul Hong, Dong-Il Chung, Hyun-Hee Kong
Korean Journal of ParasitologyOA

Autophagy-related protein 8 (Atg8) is an essential component of autophagy formation and encystment of cyst-forming parasites, and some protozoa, such as, Acanthamoeba, Entamoeba, and Dictyostelium, have been reported to possess a type of Atg8. In this study, an isoform of Atg8 was identified and characterized in Acanthamoeba castellanii (AcAtg8b). AcAtg8b protein was found to encode 132 amino acids and to be longer than AcAtg8 protein, which encoded 117 amino acids. Real-time PCR analysis showed

EpidemiologyMedicine
11
Article|21 citations·2015
Potential Value of Cellulose Synthesis Inhibitors Combined With PHMB in the Treatment of Acanthamoeba Keratitis
Eun‐Kyung Moon, Yeonchul Hong, Dong-Il Chung, Youn‐Kyoung Goo, Hyun-Hee Kong
SJR Q1Cornea

The combination of cellulose synthesis inhibitors with low concentrations of PHMB reduced the CPE on HCE cells and improved the amebicidal effect on Acanthamoeba by inhibition of encystation.

EndocrinologyBiochemistry, Genetics and Molecular Biology
12
Article|21 citations·2017
DNA Methylation of Gene Expression in Acanthamoeba castellanii Encystation
Eun‐Kyung Moon, Yeonchul Hong, Hae‐Ahm Lee, Fu‐Shi Quan, Hyun-Hee Kong
Korean Journal of ParasitologyOA

Encystation mediating cyst specific cysteine proteinase (CSCP) of <i>Acanthamoeba castellanii</i> is expressed remarkably during encystation. However, the molecular mechanism involved in the regulation of CSCP gene expression remains unclear. In this study, we focused on epigenetic regulation of gene expression during encystation of <i>Acanthamoeba</i>. To evaluate methylation as a potential mechanism involved in the regulation of CSCP expression, we first investigated the correlation between pr

EndocrinologyBiochemistry, Genetics and Molecular Biology
13
Article|20 citations·2012
Protein kinase C signaling molecules regulate encystation of Acanthamoeba
Eun‐Kyung Moon, Dong-Il Chung, Yeonchul Hong, Hyun-Hee Kong
SJR Q3Experimental Parasitology
EndocrinologyBiochemistry, Genetics and Molecular Biology
14
Article|19 citations·2012
Short-Cut Pathway to Synthesize Cellulose of Encysting Acanthamoeba
Eun‐Kyung Moon, Hyun-Hee Kong
Korean Journal of ParasitologyOA

The mature cyst of Acanthamoeba is highly resistant to various antibiotics and therapeutic agents. Cyst wall of Acanthamoeba are composed of cellulose, acid-resistant proteins, lipids, and unidentified materials. Because cellulose is one of the primary components of the inner cyst wall, cellulose synthesis is essential to the process of cyst formation in Acanthamoeba. In this study, we hypothesized the key and short-step process in synthesis of cellulose from glycogen in encysting Acanthamoeba c

EndocrinologyBiochemistry, Genetics and Molecular Biology
15
Article|17 citations·2018
Polyhexamethylene biguanide and chloroquine induce programmed cell death in Acanthamoeba castellanii
Eun‐Kyung Moon, Hyun-Seo Choi, Hyun-Hee Kong, Fu‐Shi Quan
SJR Q3Experimental Parasitology
EndocrinologyBiochemistry, Genetics and Molecular Biology

Research Areas

EndocrinologyEpidemiologyParasitologyPublic Health, Environmental and Occupational HealthMolecular BiologyInfectious Diseases

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