Literature DB >> 33118234

Host sensing and signal transduction during Toxoplasma stage conversion.

Leonardo Augusto1,2, Ronald C Wek1, William J Sullivan2,3.   

Abstract

The intracellular parasite Toxoplasma gondii infects nucleated cells in virtually all warm-blooded vertebrates, including one-third of the human population. While immunocompetent hosts do not typically show symptoms of acute infection, parasites are retained in latent tissue cysts that can be reactivated upon immune suppression, potentially damaging key organ systems. Toxoplasma has a multistage life cycle that is intimately linked to environmental stresses and host signals. As this protozoan pathogen is transmitted between multiple hosts and tissues, it evaluates these external signals to appropriately differentiate into distinct life cycle stages, such as the transition from its replicative stage (tachyzoite) to the latent stage (bradyzoite) that persists as tissue cysts. Additionally, in the gut of its definitive host, felines, Toxoplasma converts into gametocytes that produce infectious oocysts (sporozoites) that are expelled into the environment. In this review, we highlight recent advances that have illuminated the interfaces between Toxoplasma and host and how these interactions control parasite stage conversion. Mechanisms underlying these stage transitions are important targets for therapeutic intervention aimed at thwarting parasite transmission and pathogenesis.
© 2020 John Wiley & Sons Ltd.

Entities:  

Keywords:  zzm321990Toxoplasmazzm321990; bradyzoites; differentiation; gene regulation; host-pathogen interactions; latency; parasites; stress; tachyzoites; translational control

Mesh:

Substances:

Year:  2020        PMID: 33118234      PMCID: PMC9364677          DOI: 10.1111/mmi.14634

Source DB:  PubMed          Journal:  Mol Microbiol        ISSN: 0950-382X            Impact factor:   3.979


  103 in total

1.  Rapid cytoskeleton remodelling in dendritic cells following invasion by Toxoplasma gondii coincides with the onset of a hypermigratory phenotype.

Authors:  Jessica M Weidner; Sachie Kanatani; Maria A Hernández-Castañeda; Jonas M Fuks; Bence Rethi; Robert P A Wallin; Antonio Barragan
Journal:  Cell Microbiol       Date:  2013-04-17       Impact factor: 3.715

2.  CD11c- and CD11b-expressing mouse leukocytes transport single Toxoplasma gondii tachyzoites to the brain.

Authors:  Nathalie Courret; Sylvie Darche; Pierre Sonigo; Geneviève Milon; Dominique Buzoni-Gâtel; Isabelle Tardieux
Journal:  Blood       Date:  2005-07-28       Impact factor: 22.113

Review 3.  Toxoplasmosis.

Authors:  J G Montoya; O Liesenfeld
Journal:  Lancet       Date:  2004-06-12       Impact factor: 79.321

Review 4.  Lytic Cycle of Toxoplasma gondii: 15 Years Later.

Authors:  Ira J Blader; Bradley I Coleman; Chun-Ti Chen; Marc-Jan Gubbels
Journal:  Annu Rev Microbiol       Date:  2015-08-28       Impact factor: 15.500

Review 5.  Stress-related and spontaneous stage differentiation of Toxoplasma gondii.

Authors:  Marialice da Fonseca Ferreira da Silva; Helene S Barbosa; Uwe Gross; Carsten G K Lüder
Journal:  Mol Biosyst       Date:  2008-06-02

Review 6.  A latent ability to persist: differentiation in Toxoplasma gondii.

Authors:  Victoria Jeffers; Zoi Tampaki; Kami Kim; William J Sullivan
Journal:  Cell Mol Life Sci       Date:  2018-03-30       Impact factor: 9.261

7.  The Toxoplasma gondii protein ROP2 mediates host organelle association with the parasitophorous vacuole membrane.

Authors:  A P Sinai; K A Joiner
Journal:  J Cell Biol       Date:  2001-07-09       Impact factor: 10.539

8.  Asexual expansion of Toxoplasma gondii merozoites is distinct from tachyzoites and entails expression of non-overlapping gene families to attach, invade, and replicate within feline enterocytes.

Authors:  Adrian B Hehl; Walter U Basso; Christoph Lippuner; Chandra Ramakrishnan; Michal Okoniewski; Robert A Walker; Michael E Grigg; Nicholas C Smith; Peter Deplazes
Journal:  BMC Genomics       Date:  2015-02-13       Impact factor: 3.969

9.  A Toxoplasma dense granule protein, GRA24, modulates the early immune response to infection by promoting a direct and sustained host p38 MAPK activation.

Authors:  Laurence Braun; Marie-Pierre Brenier-Pinchart; Manickam Yogavel; Aurélie Curt-Varesano; Rose-Laurence Curt-Bertini; Tahir Hussain; Sylvie Kieffer-Jaquinod; Yohann Coute; Hervé Pelloux; Isabelle Tardieux; Amit Sharma; Hassan Belrhali; Alexandre Bougdour; Mohamed-Ali Hakimi
Journal:  J Exp Med       Date:  2013-09-16       Impact factor: 14.307

10.  Toxoplasma gondii AP2XII-2 Contributes to Proper Progression through S-Phase of the Cell Cycle.

Authors:  Sandeep Srivastava; Michael W White; William J Sullivan
Journal:  mSphere       Date:  2020-09-16       Impact factor: 4.389

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  3 in total

1.  Restriction Checkpoint Controls Bradyzoite Development in Toxoplasma gondii.

Authors:  Anatoli V Naumov; Chengqi Wang; Dale Chaput; Li-Min Ting; Carmelo A Alvarez; Thomas Keller; Ahmed Ramadan; Michael W White; Kami Kim; Elena S Suvorova
Journal:  Microbiol Spectr       Date:  2022-06-02

Review 2.  Mining the Proteome of Toxoplasma Parasites Seeking Vaccine and Diagnostic Candidates.

Authors:  Sajad Rashidi; Javier Sánchez-Montejo; Reza Mansouri; Mohammad Ali-Hassanzadeh; Amir Savardashtaki; Mohammad Saleh Bahreini; Mohammadreza Karimazar; Raúl Manzano-Román; Paul Nguewa
Journal:  Animals (Basel)       Date:  2022-04-23       Impact factor: 3.231

3.  Association between Toxoplasma gondii Exposure and Suicidal Behavior in Patients Attending Primary Health Care Clinics.

Authors:  Cosme Alvarado-Esquivel; Sergio Estrada-Martínez; Agar Ramos-Nevárez; Alma Rosa Pérez-Álamos; Isabel Beristain-García; Ángel Osvaldo Alvarado-Félix; Sandra Margarita Cerrillo-Soto; Antonio Sifuentes-Álvarez; Gustavo Alexis Alvarado-Félix; Carlos Alberto Guido-Arreola; Leandro Saenz-Soto
Journal:  Pathogens       Date:  2021-05-30
  3 in total

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