A novel mechanosensitive channel controls osmoregulation, differentiation and infectivity in Trypanosoma cruzi

  1. Noopur Dave
  2. Ugur Cetiner
  3. Daniel Arroyo
  4. Joshua Fonbuena
  5. Megna Tiwari
  6. Patricia Barrera
  7. Noelia Lander
  8. Andriy Anishkin
  9. Sergei Sukharev
  10. Veronica Jimenez  Is a corresponding author
  1. California State University Fullerton, United States
  2. University of Maryland, College Park, United States
  3. Facultad de Ciencias Exactas y Naturales, Instituto de Histologia y Embriologia IHEM-CONICET, Facultad de Medicina, Universidad Nacional de Cuyo, Argentina
  4. University of Cincinnati, United States
  5. University of Maryland, United States

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This article was accepted for publication via eLife's original publishing model. eLife publishes the authors' accepted manuscript as a PDF only version before the full Version of Record is ready for publication. Peer reviews are published along with the Version of Record.

History

  1. Version of Record published
  2. Accepted Manuscript published
  3. Accepted
  4. Received

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  1. Noopur Dave
  2. Ugur Cetiner
  3. Daniel Arroyo
  4. Joshua Fonbuena
  5. Megna Tiwari
  6. Patricia Barrera
  7. Noelia Lander
  8. Andriy Anishkin
  9. Sergei Sukharev
  10. Veronica Jimenez
(2021)
A novel mechanosensitive channel controls osmoregulation, differentiation and infectivity in Trypanosoma cruzi
eLife 10:e67449.
https://doi.org/10.7554/eLife.67449

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https://doi.org/10.7554/eLife.67449