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"Kwon-Soo Ha"

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"Kwon-Soo Ha"

Original Articles
Characterization of Caveola-Vesicle Complexes (CVCs) Protein, PHIST/CVC-8195 in Plasmodium vivax
Bo Wang, Feng Lu, Jin-Hee Han, Seong-Kyun Lee, Yang Cheng, Myat Htut Nyunt, Kwon-Soo Ha, Seok-Ho Hong, Won Sun Park, Eun-Taek Han
Korean J Parasitol 2016;54(6):725-732.
Published online December 31, 2016
DOI: https://doi.org/10.3347/kjp.2016.54.6.725
Plasmodium vivax produces numerous caveola-vesicle complex (CVC) structures beneath the membrane of infected erythrocytes. Recently, a member helical interspersed subtelomeric (PHIST) superfamily protein, PcyPHIST/CVC-8195, was identified as CVCs-associated protein in Plasmodium cynomolgi and essential for survival of this parasite. Very little information has been documented to date about PHIST/CVC-8195 protein in P. vivax. In this study, the recombinant PvPHIST/CVC-8195 N and C termini were expressed, and immunoreactivity was assessed using confirmed vivax malaria patients sera by protein microarray. The subcellular localization of PvPHIST/CVC-8195 N and C termini in blood stage parasites was also determined. The antigenicity of recombinant PvPHIST/CVC-8195 N and C terminal proteins were analyzed by using serum samples from the Republic of Korea. The results showed that immunoreactivities to these proteins had 61% and 43% sensitivity and 96.9% and 93.8% specificity, respectively. The N terminal of PvPHIST/CVC-8195 which contains transmembrane domain and export motif (PEXEL; RxLxE/Q/D) produced CVCs location throughout the erythrocytic-stage parasites. However, no fluorescence was detected with antibodies against C terminal fragment of PvPHIST/CVC-8195. These results suggest that the PvPHIST/CVC-8195 is localized on the CVCs and may be immunogenic in natural infection of P. vivax.

Citations

Citations to this article as recorded by  Crossref logo
  • A novel micronemal protein MP38 is involved in the invasion of merozoites into erythrocytes
    Tuyet-Kha Nguyen, Sy-Thau Nguyen, Van-Truong Nguyen, Sung-Hun Na, Robert W. Moon, Jetsumon Sattabongkot, Yee Ling Lau, Won-Sun Park, Wan-Joo Chun, Feng Lu, Seong-Kyun Lee, Jin-Hee Han, Eun-Taek Han, L. David Sibley, Niraj Harish Tolia
    mBio.2025;[Epub]     CrossRef
  • Caveola-vesicle complexes of Plasmodium vivax and Plasmodium cynomolgi: large-scale aggregation and structure of PHIST-positive vesicles in late schizont-infected red blood cells
    Lawrence H. Bannister, Anton R. Dluzewski, Esmeralda V. S. Meyer, Stacey A. Lapp, Mary R. Galinski
    Malaria Journal.2025;[Epub]     CrossRef
  • Identification of a non-exported Plasmepsin V substrate that functions in the parasitophorous vacuole of malaria parasites
    Aline Fréville, Margarida Ressurreição, Christiaan van Ooij, John C. Boothroyd
    mBio.2024;[Epub]     CrossRef
  • Novel secretory organelles of parasite origin ‐ at the center of host‐parasite interaction
    Viktor Bekić, Nicole Kilian
    BioEssays.2023;[Epub]     CrossRef
  • Comparative spatial proteomics of Plasmodium-infected erythrocytes
    Anthony Siau, Jing Wen Ang, Omar Sheriff, Regina Hoo, Han Ping Loh, Donald Tay, Ximei Huang, Xue Yan Yam, Soak Kuan Lai, Wei Meng, Irene Julca, Sze Siu Kwan, Marek Mutwil, Peter R. Preiser
    Cell Reports.2023; 42(11): 113419.     CrossRef
  • Molecular characterization of Plasmodium falciparum PHISTb proteins as potential targets of naturally-acquired immunity against malaria
    Tony I. Isebe, Joel L. Bargul, Bonface M. Gichuki, James M. Njunge, James Tuju, Martin K. Rono
    Wellcome Open Research.2021; 5: 136.     CrossRef
  • Familial Hyperckemia and Calf Hypertrophy Secondary to a Caveolin-3 Mutation
    Eduardo Otero-Loperena, Ana Ortiz-Santiago, Edwardo Ramos
    American Journal of Physical Medicine & Rehabilitation.2021; 100(7): e101.     CrossRef
  • Molecular characterization of Plasmodium falciparum PHISTb proteins as potential targets of naturally-acquired immunity against malaria
    Tony I. Isebe, Joel L. Bargul, Bonface M. Gichuki, James M. Njunge, James Tuju, Martin K. Rono
    Wellcome Open Research.2020; 5: 136.     CrossRef
  • 10,026 View
  • 132 Download
  • 6 Web of Science
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Characterization of Pv92, a Novel Merozoite Surface Protein of Plasmodium vivax
Seong-Kyun Lee, Bo Wang, Jin-Hee Han, Myat Htut Nyunt, Fauzi Muh, Patchanee Chootong, Kwon-Soo Ha, Won Sun Park, Seok-Ho Hong, Jeong-Hyun Park, Eun-Taek Han
Korean J Parasitol 2016;54(4):385-391.
Published online August 31, 2016
DOI: https://doi.org/10.3347/kjp.2016.54.4.385
The discovery and understanding of antigenic proteins are essential for development of a vaccine against malaria. In Plasmodium falciparum, Pf92 have been characterized as a merozoite surface protein, and this protein is expressed at the late schizont stage, but no study of Pv92, the orthologue of Pf92 in P. vivax, has been reported. Thus, the protein structure of Pv92 was analyzed, and the gene sequence was aligned with that of other Plasmodium spp. using bioinformatics tools. The recombinant Pv92 protein was expressed and purified using bacterial expression system and used for immunization of mice to gain the polyclonal antibody and for evaluation of antigenicity by protein array. Also, the antibody against Pv92 was used for subcellular analysis by immunofluorescence assay. The Pv92 protein has a signal peptide and a sexual stage s48/45 domain, and the cysteine residues at the N-terminal of Pv92 were completely conserved. The N-terminal of Pv92 was successfully expressed as soluble form using a bacterial expression system. The antibody raised against Pv92 recognized the parasites and completely merged with PvMSP1-19, indicating that Pv92 was localized on the merozoite surface. Evaluation of the human humoral immune response to Pv92 indicated moderate antigenicity, with 65% sensitivity and 95% specificity by protein array. Taken together, the merozoite surface localization and antigenicity of Pv92 implicate that it might be involved in attachment and invasion of a merozoite to a new host cell or immune evasion during invasion process.

Citations

Citations to this article as recorded by  Crossref logo
  • Merozoite surface protein 1 paralog is involved in the human erythrocyte invasion of a zoonotic malaria, Plasmodium knowlesi
    Seong-Kyun Lee, Tuyet Kha Nguyen, Franziska Mohring, Jin-Hee Han, Egy Rahman Firdaus, Sung-Hun Na, Won-Sun Park, Robert W. Moon, Eun-Taek Han
    Frontiers in Cellular and Infection Microbiology.2023;[Epub]     CrossRef
  • A novel platform for peptide-mediated affinity capture and LC-MS/MS identification of host receptors involved in Plasmodium invasion
    Jessica Molina-Franky, David Fernando Plaza, Carmen Merali, Salim Merali, Carlos Barrero, Gabriela Arévalo-Pinzón, Manuel Elkin Patarroyo, Manuel Alfonso Patarroyo
    Journal of Proteomics.2021; 231: 104002.     CrossRef
  • Inhibition of parasite invasion by monoclonal antibody against epidermal growth factor-like domain of Plasmodium vivax merozoite surface protein 1 paralog
    Jin-Hee Han, Yang Cheng, Fauzi Muh, Md Atique Ahmed, Jee-Sun Cho, Myat Htut Nyunt, Hye-Yoon Jeon, Kwon-Soo Ha, Sunghun Na, Won Sun Park, Seok-Ho Hong, Ho-Joon Shin, Bruce Russell, Eun-Taek Han
    Scientific Reports.2019;[Epub]     CrossRef
  • Plasmodium vivax in vitro continuous culture: the spoke in the wheel
    Maritza Bermúdez, Darwin Andrés Moreno-Pérez, Gabriela Arévalo-Pinzón, Hernando Curtidor, Manuel Alfonso Patarroyo
    Malaria Journal.2018;[Epub]     CrossRef
  • 10,535 View
  • 257 Download
  • 4 Web of Science
  • Crossref