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"cellulose synthase"

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"cellulose synthase"

Original Articles
Identification of Protein Arginine Methyltransferase 5 as a Regulator for Encystation of Acanthamoeba
Eun-Kyung Moon, Yeonchul Hong, Dong-Il Chung, Youn-Kyoung Goo, Hyun-Hee Kong
Korean J Parasitol 2016;54(2):133-138.
Published online April 30, 2016
DOI: https://doi.org/10.3347/kjp.2016.54.2.133
Encystation is an essential process for Acanthamoeba survival under nutrient-limiting conditions and exposure to drugs. The expression of several genes has been observed to increase or decrease during encystation. Epigenetic processes involved in regulation of gene expression have been shown to play a role in several pathogenic parasites. In the present study, we identified the protein arginine methyltransferase 5 (PRMT5), a known epigenetic regulator, in Acanthamoeba castellanii. PRMT5 of A. castellanii (AcPRMT5) contained domains found in S-adenosylmethionine-dependent methyltransferases and in PRMT5 arginine-N-methyltransferase. Expression levels of AcPRMT5 were increased during encystation of A. castellanii. The EGFP-PRMT5 fusion protein was mainly localized in the nucleus of trophozoites. A. castellanii transfected with siRNA designed against AcPRMT5 failed to form mature cysts. The findings of this study lead to a better understanding of epigenetic mechanisms behind the regulation of encystation in cyst-forming pathogenic protozoa.

Citations

Citations to this article as recorded by  Crossref logo
  • Encystment and Excystment Processes in Acanthamoeba castellanii: An Emphasis on Cellulose Involvement
    Mathew Choaji, Ascel Samba-Louaka, Zineb Fechtali-Moute, Willy Aucher, Sébastien Pomel
    Pathogens.2025; 14(3): 268.     CrossRef
  • Oxidase enzyme genes are differentially expressed during Acanthamoeba castellanii encystment
    Christian Q. Scheckhuber, Rebeca Damián Ferrara, Jesús Gómez-Montalvo, Sutherland K. Maciver, Alvaro de Obeso Fernández del Valle
    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
  • 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
  • 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
  • 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
  • Encystation: the most prevalent and underinvestigated differentiation pathway of eukaryotes
    Pauline Schaap, Christina Schilde
    Microbiology.2018; 164(5): 727.     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
    The Korean Journal of Parasitology.2017; 55(2): 109.     CrossRef
  • DNA Methylation of Gene Expression in Acanthamoeba castellanii Encystation
    Eun-Kyung Moon, Yeonchul Hong, Hae-Ahm Lee, Fu-Shi Quan, Hyun-Hee Kong
    The Korean Journal of Parasitology.2017; 55(2): 115.     CrossRef
  • 10,217 View
  • 103 Download
  • 10 Web of Science
  • Crossref
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 J Parasitol 2014;52(2):131-135.
Published online April 18, 2014
DOI: https://doi.org/10.3347/kjp.2014.52.2.131

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 that siRNA transfected amoeba failed to form an inner wall during encystation and thus are likely to be more vulnerable. In addition, the expression of xylose isomerase, which is involved in cyst wall formation, was not altered in cellulose synthase down-regulated amoeba, indicating that cellulose synthase is a crucial factor for inner wall formation by Acanthamoeba during encystation.

Citations

Citations to this article as recorded by  Crossref logo
  • Encystment and Excystment Processes in Acanthamoeba castellanii: An Emphasis on Cellulose Involvement
    Mathew Choaji, Ascel Samba-Louaka, Zineb Fechtali-Moute, Willy Aucher, Sébastien Pomel
    Pathogens.2025; 14(3): 268.     CrossRef
  • Genetic manipulation of giant viruses and their host, Acanthamoeba castellanii
    Nadege Philippe, Avi Shukla, Chantal Abergel, Hugo Bisio
    Nature Protocols.2024; 19(1): 3.     CrossRef
  • Oxidase enzyme genes are differentially expressed during Acanthamoeba castellanii encystment
    Christian Q. Scheckhuber, Rebeca Damián Ferrara, Jesús Gómez-Montalvo, Sutherland K. Maciver, Alvaro de Obeso Fernández del Valle
    Parasitology Research.2024;[Epub]     CrossRef
  • Efficacy of propolis extract and eye drop solutions to suppress encystation and excystation of Acanthamoeba triangularis WU19001-T4 genotype
    Suthinee Sangkanu, Abolghasem Siyadatpanah, Roghayeh Norouzi, Julalak Chuprom, Watcharapong Mitsuwan, Sirirat Surinkaew, Rachasak Boonhok, Alok K. Paul, Tooba Mahboob, Imran Sama-ae, Sonia M. R. Oliveira, Tajudeen O. Jimoh, Maria de Lourdes Pereira, Polra
    PeerJ.2024; 12: e16937.     CrossRef
  • Human Conjunctival Transcriptome in Acanthamoeba Keratitis: An Exploratory Study
    Gerami D. Seitzman, Jeremy D. Keenan, Thomas M. Lietman, Kevin Ruder, Lina Zhong, Cindi Chen, YuHeng Liu, Danny Yu, Thomas Abraham, Armin Hinterwirth, Thuy Doan
    Cornea.2024; 43(10): 1272.     CrossRef
  • Evolution of giant pandoravirus revealed by CRISPR/Cas9
    Hugo Bisio, Matthieu Legendre, Claire Giry, Nadege Philippe, Jean-Marie Alempic, Sandra Jeudy, Chantal Abergel
    Nature Communications.2023;[Epub]     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
  • Anti-Acanthamoeba activity of a semi-synthetic mangostin derivative and its ability in removal of Acanthamoeba triangularis WU19001 on contact lens
    Julalak Chuprom, Suthinee Sangkanu, Watcharapong Mitsuwan, Rachasak Boonhok, Wilawan Mahabusarakam, L. Ravithej Singh, Ekachai Dumkliang, Kritamorn Jitrangsri, Alok K. Paul, Sirirat Surinkaew, Polrat Wilairatana, Maria de Lourdes Pereira, Mohammed Rahmatu
    PeerJ.2022; 10: e14468.     CrossRef
  • Peganum harmala Extract Has Antiamoebic Activity to Acanthamoeba triangularis Trophozoites and Changes Expression of Autophagy-Related Genes
    Rachasak Boonhok, Suthinee Sangkanu, Julalak Chuprom, Mayuna Srisuphanunt, Roghayeh Norouzi, Abolghasem Siyadatpanah, Farzaneh Mirzaei, Watcharapong Mitsuwan, Sueptrakool Wisessombat, Maria de Lourdes Pereira, Mohammed Rahmatullah, Polrat Wilairatana, Chr
    Pathogens.2021; 10(7): 842.     CrossRef
  • RNA Sequencing of Medusavirus Suggests Remodeling of the Host Nuclear Environment at an Early Infection Stage
    Ruixuan Zhang, Hisashi Endo, Masaharu Takemura, Hiroyuki Ogata, Samuel K. Campos
    Microbiology Spectrum.2021;[Epub]     CrossRef
  • Paradoxical Pro-inflammatory Responses by Human Macrophages to an Amoebae Host-Adapted Legionella Effector
    Christopher Price, Snake Jones, Mirna Mihelcic, Marina Santic, Yousef Abu Kwaik
    Cell Host & Microbe.2020; 27(4): 571.     CrossRef
  • Encystment Induces Down-Regulation of an Acetyltransferase-Like Gene in Acanthamoeba castellanii
    Steven Rolland, Luce Mengue, Cyril Noël, Stéphanie Crapart, Anne Mercier, Willy Aucher, Yann Héchard, Ascel Samba-Louaka
    Pathogens.2020; 9(5): 321.     CrossRef
  • The role of the Acanthamoeba castellanii Sir2-like protein in the growth and encystation of Acanthamoeba
    So-Young Joo, Ja Moon Aung, Minsang Shin, Eun-Kyung Moon, Hyun-Hee Kong, Youn-Kyoung Goo, Dong-Il Chung, Yeonchul Hong
    Parasites & Vectors.2020;[Epub]     CrossRef
  • Cellulose fibrils formation and organisation of cytoskeleton during encystment are essential for Acanthamoeba cyst wall architecture
    Mária Garajová, Martin Mrva, Naděžda Vaškovicová, Michal Martinka, Janka Melicherová, Andrea Valigurová
    Scientific Reports.2019;[Epub]     CrossRef
  • The most abundant cyst wall proteins of Acanthamoeba castellanii are lectins that bind cellulose and localize to distinct structures in developing and mature cyst walls
    Pamela Magistrado-Coxen, Yousuf Aqeel, Angelo Lopez, John R. Haserick, Breeanna R. Urbanowicz, Catherine E. Costello, John Samuelson, Photini Sinnis
    PLOS Neglected Tropical Diseases.2019; 13(5): e0007352.     CrossRef
  • A review of Acanthamoeba keratitis in the middle East and Iran
    MohammadHossein Feiz Haddad, Azar Shokri, Habib Habibpour, SeyedeManizhe Heidar Neiadi
    Journal of Acute Disease.2019; 8(4): 133.     CrossRef
  • Encystation: the most prevalent and underinvestigated differentiation pathway of eukaryotes
    Pauline Schaap, Christina Schilde
    Microbiology.2018; 164(5): 727.     CrossRef
  • Molecular and biochemical characterization of key enzymes in the cysteine and serine metabolic pathways of Acanthamoeba castellanii
    Duo Wu, Meng Feng, Zhi-xin Wang, Ke Qiao, Hiroshi Tachibana, Xun-jia Cheng
    Parasites & Vectors.2018;[Epub]     CrossRef
  • DNA Methylation of Gene Expression in Acanthamoeba castellanii Encystation
    Eun-Kyung Moon, Yeonchul Hong, Hae-Ahm Lee, Fu-Shi Quan, Hyun-Hee Kong
    The Korean Journal of Parasitology.2017; 55(2): 115.     CrossRef
  • In-vitro development of an effective treatment for Acanthamoeba keratitis
    Á. Ortillés, J. Belloc, E. Rubio, M.T. Fernández, M. Benito, J.Á. Cristóbal, B. Calvo, P. Goñi
    International Journal of Antimicrobial Agents.2017; 50(3): 325.     CrossRef
  • Treatment of Acanthamoeba keratitis
    N. R. Marchenko, Evg. A. Kasparova
    Vestnik oftal'mologii.2016; 132(5): 110.     CrossRef
  • Cellulose degradation: a therapeutic strategy in the improved treatment of Acanthamoeba infections
    Sahreena Lakhundi, Ruqaiyyah Siddiqui, Naveed Ahmed Khan
    Parasites & Vectors.2015;[Epub]     CrossRef
  • An update onAcanthamoebakeratitis: diagnosis, pathogenesis and treatment
    Jacob Lorenzo-Morales, Naveed A. Khan, Julia Walochnik
    Parasite.2015; 22: 10.     CrossRef
  • 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
    Cornea.2015; 34(12): 1593.     CrossRef
  • 11,306 View
  • 127 Download
  • 24 Web of Science
  • Crossref