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Original Articles
Modulated Gene Expression of Toxoplasma gondii Infected Retinal Pigment Epithelial Cell Line (ARPE-19) via PI3K/Akt or mTOR Signal Pathway
Wei Zhou, Juan-Hua Quan, Fei-Fei Gao, Hassan Ahmed Hassan Ahmed Ismail, Young-Ha Lee, Guang-Ho Cha
Korean J Parasitol 2018;56(2):135-145.
Published online April 30, 2018
DOI: https://doi.org/10.3347/kjp.2018.56.2.135
Due to the critical location and physiological activities of the retinal pigment epithelial (RPE) cell, it is constantly subjected to contact with various infectious agents and inflammatory mediators. However, little is known about the signaling events in RPE involved in Toxoplasma gondii infection and development. The aim of the study is to screen the host mRNA transcriptional change of 3 inflammation-related gene categories, PI3K/Akt pathway regulatory components, blood vessel development factors and ROS regulators, to prove that PI3K/Akt or mTOR signaling pathway play an essential role in regulating the selected inflammation-related genes. The selected genes include PH domain and leucine- richrepeat protein phosphatases (PHLPP), casein kinase2 (CK2), vascular endothelial growth factor (VEGF), pigment epithelium-derived factor (PEDF), glutamate-cysteine ligase (GCL), glutathione S-transferase (GST), and NAD(P)H: quinone oxidoreductase (NQO1). Using reverse transcription polymerase chain reaction (RT-PCR) and quantitative real-time reverse transcription polymerase chain reaction (qRT-PCR), we found that T. gondii up-regulates PHLPP2, CK2β, VEGF, GCL, GST, and NQO1 gene expression levels, but down-regulates PHLPP1 and PEDF mRNA transcription levels. PI3K inhibition and mTOR inhibition by specific inhibitors showed that most of these host gene expression patterns were due to activation of PI3K/Akt or mTOR pathways with some exceptional cases. Taken together, our results reveal a new molecular mechanism of these gene expression change dependent on PI3K/Akt or mTOR pathways and highlight more systematical insight of how an intracellular T. gondii can manipulate host genes to avoid host defense.

Citations

Citations to this article as recorded by  Crossref logo
  • PTEN regulation in virus-associated cancers
    Shaian Tavakolian, Zahra Shokati Eshkiki, Abolfazl Akbari, Ebrahim Faghihloo, Seidamir Pasha Tabaeian
    Pathology - Research and Practice.2025; 266: 155749.     CrossRef
  • MjTX-II, a Lys49-PLA2 from Bothrops moojeni snake venom, restricts Toxoplasma gondii infection via ROS and VEGF regulation
    Samuel Cota Teixeira, Thales Alves de Melo Fernandes, Guilherme de Souza, Alessandra Monteiro Rosini, Aryani Felixa Fajardo Martínez, Angelica Oliveira Gomes, Rosiane Nascimento Alves, Daiana Silva Lopes, Maria Vitoria da Silva, Emidio Beraldo-Neto, Patrí
    Chemico-Biological Interactions.2025; 409: 111417.     CrossRef
  • Echinococcus multilocularis protoscoleces enhance glycolysis to promote M2 Macrophages through PI3K/Akt/mTOR Signaling Pathway
    Tao Zhang, Yaogang Zhang, Zihan Yang, Yuan Jiang, Li Sun, Dengliang Huang, Meiyuan Tian, Yinhong Shen, Jun Deng, Jing Hou, Yanyan Ma
    Pathogens and Global Health.2023; 117(4): 409.     CrossRef
  • The interplay between toxoplasmosis and host miRNAs: Mechanisms and consequences
    Ahmed S. Doghish, Mohamed A. Ali, Mahmoud A. Elrebehy, Hend H. Mohamed, Reda Mansour, Aml Ghanem, Ahmed Hassan, Mohammed S. Elballal, Ola Elazazy, Ahmed E. Elesawy, Sherif S. Abdel Mageed, Yara A. Nassar, Osama A. Mohammed, Ahmed I. Abulsoud
    Pathology - Research and Practice.2023; 250: 154790.     CrossRef
  • Mammalian Target of Rapamycin Inhibitor Rapamycin Alleviates 7-Ketocholesterol Induced Inflammatory Responses and Vascular Endothelial Growth Factor Elevation by Regulating MAPK Pathway in Human Retinal Pigment Epithelium Cells
    Lin Yang, Peng Yu, Mei Chen, Bo Lei
    Journal of Ocular Pharmacology and Therapeutics.2022; 38(2): 189.     CrossRef
  • The host mTOR pathway and parasitic diseases pathogenesis
    Sajad Rashidi, Reza Mansouri, Mohammad Ali-Hassanzadeh, Zahra Mojtahedi, Reza Shafiei, Amir Savardashtaki, Nasrin Hamidizadeh, Mohammadreza Karimazar, Paul Nguewa, Raúl Manzano-Román
    Parasitology Research.2021; 120(4): 1151.     CrossRef
  • Upregulation of PEDF Predicts a Poor Prognosis and Promotes Esophageal Squamous Cell Carcinoma Progression by Modulating the MAPK/ERK Signaling Pathway
    Zui Chen, Di Che, Xiaoqiong Gu, Jiamin Lin, Jing Deng, Ping Jiang, Kaixiong Xu, Banglao Xu, Ting Zhang
    Frontiers in Oncology.2021;[Epub]     CrossRef
  • Modulation of the mTOR pathway plays a central role in dendritic cell functions after Echinococcus granulosus antigen recognition
    Christian Rodriguez Rodrigues, María Celeste Nicolao, Maia Chop, Natalia Plá, Mora Massaro, Julia Loos, Andrea C. Cumino
    Scientific Reports.2021;[Epub]     CrossRef
  • Ripasudil alleviated the inflammation of RPE cells by targeting the miR-136-5p/ROCK/NLRP3 pathway
    Zhao Gao, Qiang Li, Yunda Zhang, Xiaohong Gao, Haiyan Li, Zhigang Yuan
    BMC Ophthalmology.2020;[Epub]     CrossRef
  • H3 relaxin protects against calcium oxalate crystal‐induced renal inflammatory pyroptosis
    Jiannan Liu, Kelaier Yang, Yinshan Jin, Yadong Liu, Yaodong Chen, Xiaohui Zhang, Shiliang Yu, Erlin Song, Song Chen, Jingbo Zhang, Guanhua Jing, Ruihua An
    Cell Proliferation.2020;[Epub]     CrossRef
  • Dipenyleneiodonium Induces Growth Inhibition of Toxoplasma gondii through ROS Induction in ARPE-19 Cells
    Pu Reum Sun, Fei Fei Gao, Hei Gwon Choi, Wei Zhou, Jae-Min Yuk, Jaeyul Kwon, Young-Ha Lee, Guang-Ho Cha
    The Korean Journal of Parasitology.2019; 57(2): 83.     CrossRef
  • Simultaneous Ribosome Profiling of Human Host Cells Infected with Toxoplasma gondii
    Michael J. Holmes, Premal Shah, Ronald C. Wek, William J. Sullivan, Ira J. Blader
    mSphere.2019;[Epub]     CrossRef
  • 11,255 View
  • 182 Download
  • 12 Web of Science
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Trichomonas vaginalis Metalloproteinase Induces mTOR Cleavage of SiHa Cells
Juan-Hua Quan, In-Wook Choi, Jung-Bo Yang, Wei Zhou, Guang-Ho Cha, Yu Zhou, Jae-Sook Ryu, Young-Ha Lee
Korean J Parasitol 2014;52(6):595-603.
Published online December 23, 2014
DOI: https://doi.org/10.3347/kjp.2014.52.6.595

Trichomonas vaginalis secretes a number of proteases which are suspected to be the cause of pathogenesis; however, little is understood how they manipulate host cells. The mammalian target of rapamycin (mTOR) regulates cell growth, cell proliferation, cell motility, cell survival, protein synthesis, and transcription. We detected various types of metalloproteinases including GP63 protein from T. vaginalis trophozoites, and T. vaginalis GP63 metalloproteinase was confirmed by sequencing and western blot. When SiHa cells were stimulated with live T. vaginalis, T. vaginalis excretory-secretory products (ESP) or T. vaginalis lysate, live T. vaginalis and T. vaginalis ESP induced the mTOR cleavage in both time- and parasite load-dependent manner, but T. vaginalis lysate did not. Pretreatment of T. vaginalis with a metalloproteinase inhibitor, 1,10-phenanthroline, completely disappeared the mTOR cleavage in SiHa cells. Collectively, T. vaginalis metallopeptidase induces host cell mTOR cleavage, which may be related to survival of the parasite.

Citations

Citations to this article as recorded by  Crossref logo
  • Chromatin accessibility and gene expression in the parasite Trichomonas vaginalis
    Agustina Prat, Daniela Muñoz, Ayelen Lizarraga, Julieta Seifert-Gorzycki, Estefania Sanchez-Vazquez, Patricia J. Johnson, Pablo H. Strobl-Mazzulla, Natalia de Miguel
    BMC Infectious Diseases.2025;[Epub]     CrossRef
  • Metallopeptidases as Key Virulence Attributes of Clinically Relevant Protozoa: New Discoveries, Perspectives, and Frontiers of Knowledge
    Graziela Vargas Rigo, Fernanda Gomes Cardoso, Giulia Bongiorni Galego, Deisiane Fernanda da Rosa, André Luis Souza dos Santos, Tiana Tasca
    Current Protein & Peptide Science.2023; 24(4): 307.     CrossRef
  • VPS32, a member of the ESCRT complex, modulates adherence to host cells in the parasite Trichomonas vaginalis by affecting biogenesis and cargo sorting of released extracellular vesicles
    Nehuén Salas, Veronica M. Coceres, Tuanne dos Santos Melo, Antonio Pereira-Neves, Vanina G. Maguire, Tania M. Rodriguez, Bruna Sabatke, Marcel I. Ramirez, Jihui Sha, James A. Wohlschlegel, Natalia de Miguel
    Cellular and Molecular Life Sciences.2022;[Epub]     CrossRef
  • Adherent Bacteria and Parasiticidal Secretion Products of Human Cervicovaginal Microbiota-Associated Lactobacillus gasseri Confer Non-Identical Cell Protection against Trichomonas vaginalis-Induced Cell Detachment
    Bénédicte Pradines, Séverine Domenichini, Vanessa Lievin-Le Moal
    Pharmaceuticals.2022; 15(11): 1350.     CrossRef
  • The 50 kDa metalloproteinase TvMP50 is a zinc-mediated Trichomonas vaginalis virulence factor
    Jonathan Puente-Rivera, José Luis Villalpando, Alma Villalobos-Osnaya, Laura Isabel Vázquez-Carrillo, Gloria León-Ávila, María Dolores Ponce-Regalado, César López-Camarillo, Jose Miguel Elizalde-Contreras, Eliel Ruiz-May, Rossana Arroyo, María Elizbeth Al
    Molecular and Biochemical Parasitology.2017; 217: 32.     CrossRef
  • Regulation of exosomes released from normal ovarian epithelial cells and ovarian cancer cells
    Wei Zhang, Jiaxin Yang, Dongyan Cao, Yan You, Keng Shen, Peng Peng
    Tumor Biology.2016; 37(12): 15763.     CrossRef
  • Involvement of PI3K/AKT and MAPK Pathways for TNF-α Production in SiHa Cervical Mucosal Epithelial Cells Infected with <i>Trichomonas vaginalis</i>
    Jung-Bo Yang, Juan-Hua Quan, Ye-Eun Kim, Yun-Ee Rhee, Byung-Hyun Kang, In-Wook Choi, Guang-Ho Cha, Jae-Min Yuk, Young-Ha Lee
    The Korean Journal of Parasitology.2015; 53(4): 371.     CrossRef
  • 11,574 View
  • 103 Download
  • 7 Web of Science
  • Crossref