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"Hae-Ahm Lee"

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"Hae-Ahm Lee"

Original Articles
Characterization of a Peptide Antibody Specific to the Adenylyl Cyclase-Associated Protein of Acanthamoeba castellanii
Min-Jeong Kim, Hae-Ahm Lee, Fu-Shi Quan, Hyun-Hee Kong, Eun-Kyung Moon
Korean J Parasitol 2022;60(1):7-14.
Published online February 23, 2022
DOI: https://doi.org/10.3347/kjp.2022.60.1.7
Acanthamoeba keratitis (AK) is a rare infectious disease and accurate diagnosis has remained arduous as clinical manifestations of AK were similar to keratitis of viral, bacterial, or fungal origins. In this study, we described the production of a polyclonal peptide antibody against the adenylyl cyclase-associated protein (ACAP) of A. castellanii, and evaluated its differential diagnostic potential. Enzyme-linked immunosorbent assay revealed high titers of A. castellanii-specific IgG and IgA antibodies being present in low dilutions of immunized rabbit serum. Western blot analysis revealed that the ACAP antibody specifically interacted with A. castellanii, while not interacting with human corneal epithelial (HCE) cells and other causes of keratitis such as Fusarium solani, Pseudomonas aeruginosa, and Staphylococcus aureus. Immunocytochemistry (ICC) results confirmed the specific detection of trophozoites and cysts of A. castellanii co-cultured with HCE cells. The ACAP antibody also specifically interacted with the trophozoites and cysts of 5 other Acanthamoeba species. These results indicate that the ACAP antibody of A. castellanii can specifically detect multiple AK-causing members belonging to the genus Acanthamoeba and may be useful for differentially diagnosing Acanthamoeba infections.

Citations

Citations to this article as recorded by  Crossref logo
  • The pathogenesis, risk factors, diagnosis and treatment of Acanthamoeba keratitis
    Mingliang Bao, Hai Bao, Shuqing Wang, Hongyan Zhou
    Frontiers in Medicine.2025;[Epub]     CrossRef
  • A chorismate mutase-targeted, core-shell nanoassembly-activated SERS immunoassay platform for rapid non-invasive detection of Acanthamoeba infection
    Hyerin Lee, Min-Jeong Kim, Junkyu Chung, Wansun Kim, Hye-Jeong Jo, Tae Gi Kim, Jae-Ho Shin, Gi-Ja Lee, Fu-Shi Quan, Hyun-Hee Kong, Sang Woong Moon, Eun-Kyung Moon, Samjin Choi
    Nano Today.2024; 59: 102506.     CrossRef
  • Evaluating the Diagnostic Potential of Chorismate Mutase Poly-Clonal Peptide Antibody for the Acanthamoeba Keratitis in an Animal Model
    Min-Jeong Kim, Hye-Jeong Jo, Hae-Jin Sohn, Ho-Joon Shin, Fu-Shi Quan, Hyun-Hee Kong, Eun-Kyung Moon
    Pathogens.2023; 12(4): 526.     CrossRef
  • New Frontiers in Acanthamoeba Keratitis Diagnosis and Management
    Omar Shareef, Sana Shareef, Hajirah N. Saeed
    Biology.2023; 12(12): 1489.     CrossRef
  • Detection of Acanthamoeba from Acanthamoeba Keratitis Mouse Model Using Acanthamoeba-Specific Antibodies
    Min-Jeong Kim, A-Jeong Ham, A-Young Park, Hae-Jin Sohn, Ho-Joon Shin, Fu-Shi Quan, Hyun-Hee Kong, Eun-Kyung Moon
    Microorganisms.2022; 10(9): 1711.     CrossRef
  • 4,767 View
  • 179 Download
  • 5 Web of Science
  • Crossref
DNA Methylation of Gene Expression in Acanthamoeba castellanii Encystation
Eun-Kyung Moon, Yeonchul Hong, Hae-Ahm Lee, Fu-Shi Quan, Hyun-Hee Kong
Korean J Parasitol 2017;55(2):115-120.
Published online April 30, 2017
DOI: https://doi.org/10.3347/kjp.2017.55.2.115
Encystation mediating cyst specific cysteine proteinase (CSCP) of Acanthamoeba castellanii 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 Acanthamoeba. To evaluate methylation as a potential mechanism involved in the regulation of CSCP expression, we first investigated the correlation between promoter methylation status of CSCP gene and its expression. A 2,878 bp of promoter sequence of CSCP gene was amplified by PCR. Three CpG islands (island 1-3) were detected in this sequence using bioinformatics tools. Methylation of CpG island in trophozoites and cysts was measured by bisulfite sequence PCR. CSCP promoter methylation of CpG island 1 (1,633 bp) was found in 8.2% of trophozoites and 7.3% of cysts. Methylation of CpG island 2 (625 bp) was observed in 4.2% of trophozoites and 5.8% of cysts. Methylation of CpG island 3 (367 bp) in trophozoites and cysts was both 3.6%. These results suggest that DNA methylation system is present in CSCP gene expression of Acanthamoeba. In addition, the expression of encystation mediating CSCP is correlated with promoter CpG island 1 hypomethylation.

Citations

Citations to this article as recorded by  Crossref logo
  • DNA methylation modification: Dawn of research on cornea-related diseases
    Quanhao Pan, Xiaoning Ge, Di Wang, Yuxi He
    Life Sciences.2025; 376: 123757.     CrossRef
  • Proteases of Acanthamoeba
    Behroz Mahdavi Poor, Jalil Rashedi, Vahid Asgharzadeh, Amirali Mirmazhary, Nazila Gheitarani
    Parasitology Research.2024;[Epub]     CrossRef
  • Acanthamoeba keratitis: new hopes for potential interventions for a curable but often refractory disease
    Bader Saleem Alawfi, Naveed Ahmed Khan, David Lloyd, Ruqaiyyah Siddiqui
    Expert Review of Ophthalmology.2024; 19(4): 271.     CrossRef
  • Biological characteristics and pathogenicity of Acanthamoeba
    Yuehua Wang, Linzhe Jiang, Yitong Zhao, Xiaohong Ju, Le Wang, Liang Jin, Ryan D. Fine, Mingguang Li
    Frontiers in Microbiology.2023;[Epub]     CrossRef
  • Coevolution of the CDCA7-HELLS ICF-related nucleosome remodeling complex and DNA methyltransferases
    Hironori Funabiki, Isabel E Wassing, Qingyuan Jia, Ji-Dung Luo, Thomas Carroll
    eLife.2023;[Epub]     CrossRef
  • Coevolution of the CDCA7-HELLS ICF-related nucleosome remodeling complex and DNA methyltransferases
    Hironori Funabiki, Isabel E Wassing, Qingyuan Jia, Ji-Dung Luo, Thomas Carroll
    eLife.2023;[Epub]     CrossRef
  • Antiproliferation and Antiencystation Effect of Class II Histone Deacetylase Inhibitors on Acanthamoeba castellanii
    Ki-Back Chu, Hae-Ahm Lee, Marc Pflieger, Fabian Fischer, Yodita Asfaha, Leandro A. Alves Avelar, Alexander Skerhut, Matthias U. Kassack, Finn K Hansen, Andrea Schöler, Thomas Kurz, Min-Jeong Kim, Eun-Kyung Moon, Fu-Shi Quan
    ACS Infectious Diseases.2022; 8(2): 271.     CrossRef
  • Stimulation of Acanthamoeba castellanii excystment by enzyme treatment and consequences on trophozoite growth
    Zineb Fechtali-Moute, Philippe M. Loiseau, Sébastien Pomel
    Frontiers in Cell and Developmental Biology.2022;[Epub]     CrossRef
  • Aspergillus niger trehalase enzyme induced morphological and protein alterations on Acanthamoeba cyst and molecular docking studies
    H. Fatimah, R. Siti Aisyah, N. L. Ma, Nurhidayana M. Rased, Nor F. A. C. Mohamad, F. Nur Syakinah Nafisa, A. Azila, Hazlina A. Zakeri
    Journal of Parasitic Diseases.2021; 45(2): 459.     CrossRef
  • Epigenetics as Driver of Adaptation and Diversification in Microbial Eukaryotes
    Agnes K. M. Weiner, Laura A. Katz
    Frontiers in Genetics.2021;[Epub]     CrossRef
  • Infectious Keratitis: An Update on Role of Epigenetics
    Sudhir Verma, Aastha Singh, Akhil Varshney, R. Arun Chandru, Manisha Acharya, Jyoti Rajput, Virender Singh Sangwan, Amit K. Tiwari, Tuhin Bhowmick, Anil Tiwari
    Frontiers in Immunology.2021;[Epub]     CrossRef
  • aCLS cancers: Genomic and epigenetic changes transform the cell of origin of cancer into a tumorigenic pathogen of unicellular organization and lifestyle
    Vladimir F. Niculescu
    Gene.2020; 726: 144174.     CrossRef
  • New insights into the mechanical properties of Acanthamoeba castellanii cysts as revealed by phonon microscopy
    Fernando Pérez-Cota, Richard J. Smith, Hany M. Elsheikha, Matt Clark
    Biomedical Optics Express.2019; 10(5): 2399.     CrossRef
  • Cytopathic Change and Inflammatory Response of Human Corneal Epithelial Cells Induced by Acanthamoeba castellanii Trophozoites and Cysts
    Hae-Jin Sohn, Ga-Eun Seo, Jae-Ho Lee, A-Jeong Ham, Young-Hwan Oh, Heekyoung Kang, Ho-Joon Shin
    The Korean Journal of Parasitology.2019; 57(3): 217.     CrossRef
  • 7,976 View
  • 171 Download
  • 11 Web of Science
  • Crossref
Identification and Characterization of Protein Arginine Methyltransferase 1 in Acanthamoeba castellanii
Eun-Kyung Moon, Hyun-Hee Kong, Yeonchul Hong, Hae-Ahm Lee, Fu-Shi Quan
Korean J Parasitol 2017;55(2):109-114.
Published online April 30, 2017
DOI: https://doi.org/10.3347/kjp.2017.55.2.109
Protein arginine methyltransferase (PRMT) is an important epigenetic regulator in eukaryotic cells. During encystation, an essential process for Acanthamoeba survival, the expression of a lot of genes involved in the encystation process has to be regulated in order to be induced or inhibited. However, the regulation mechanism of these genes is yet unknown. In this study, the full-length 1,059 bp cDNA sequence of Acanthamoeba castellanii PRMT1 (AcPRMT1) was cloned for the first time. The AcPRMT1 protein comprised of 352 amino acids with a SAM-dependent methyltransferase PRMT-type domain. The expression level of AcPRMT1 was highly increased during encystation of A. castellanii. The EGFPAcPRMT1 fusion protein was distributed over the cytoplasm, but it was mainly localized in the nucleus of Acanthamoeba. Knock down of AcPRMT1 by synthetic siRNA with a complementary sequence failed to form mature cysts. These findings suggested that AcPRMT1 plays a critical role in the regulation of encystation of A. castellanii. The target gene of AcPRMT1 regulation and the detailed mechanisms need to be investigated by further studies.

Citations

Citations to this article as recorded by  Crossref logo
  • PRMT5 Inhibitor EPZ015666 Decreases the Viability and Encystment of Entamoeba invadens
    Rigoberto Ortiz-Hernández, Elmer Joel Millán-Casarrubias, Jeni Bolaños, Susana Munguía-Robledo, Carlos Vázquez-Calzada, Elisa Azuara-Licéaga, Jesús Valdés, Mario Alberto Rodríguez
    Molecules.2024; 30(1): 62.     CrossRef
  • Comparative analysis of differentially expressed genes in Acanthamoeba after ingestion of Legionella pneumophila and Escherichia coli
    Eun-Kyung Moon, Min-Jeong Kim, Hae-Ahm Lee, Fu-Shi Quan, Hyun-Hee Kong
    Experimental Parasitology.2022; 232: 108188.     CrossRef
  • Drug Discovery against Acanthamoeba Infections: Present Knowledge and Unmet Needs
    Hany M. Elsheikha, Ruqaiyyah Siddiqui, Naveed Ahmed Khan
    Pathogens.2020; 9(5): 405.     CrossRef
  • Free-living amoebae and squatters in the wild: ecological and molecular features
    Ascel Samba-Louaka, Vincent Delafont, Marie-Hélène Rodier, Estelle Cateau, Yann Héchard
    FEMS Microbiology Reviews.2019; 43(4): 415.     CrossRef
  • 9,989 View
  • 223 Download
  • 4 Web of Science
  • Crossref