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Mechanics of Microsporidian Polar Tube Firing

  • Pattana Jaroenlak
  • , Mahrukh Usmani
  • , Damian C. Ekiert
  • , Gira Bhabha

Research output: Chapter in Book/Report/Conference proceedingChapter

Abstract

As obligate intracellular parasites with reduced genomes, microsporidia must infect host cells in order to replicate and cause disease. They can initiate infection by utilizing a harpoon-like invasion organelle called the polar tube (PT). The PT is both visually and functionally a striking organelle and is a characteristic feature of the microsporidian phylum. Outside the host, microsporidia exist as transmissible, single-celled spores. Inside each spore, the PT is arranged as a tight coil. Upon germination, the PT undergoes a large conformational change into a long, linear tube and acts as a tunnel for the delivery of infectious cargo from the spore to a host cell. The firing process is extremely rapid, occurring on a millisecond timescale, and the emergent tube may be as long as 20 times the size of the spore body. In this chapter, we discuss what is known about the structure of the PT, the mechanics of the PT firing process, and how it enables movement of material from the spore body.

Original languageEnglish (US)
Title of host publicationExperientia supplementum (2012)
PublisherSpringer Basel
Pages215-245
Number of pages31
DOIs
StatePublished - 2022
Externally publishedYes

Publication series

NameExperientia supplementum (2012)
Volume114
ISSN (Print)1664-431X
ISSN (Electronic)2504-3692

Keywords

  • Cargo transport
  • Extruded PT
  • Nuclear deformation
  • Polar tube
  • PT
  • PT configuration
  • PT firing
  • PT firing dynamics
  • PT structures
  • Spore germination

ASJC Scopus subject areas

  • General Medicine

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