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Updated: Jun 21, 2025

Analyzing the Function of Small GTPases by Microinjection of Plasmids into Polarized Epithelial Cells
Published on: May 31, 2011
New insights into Microsporidia polar tube function and invasion mechanism
Maurine Fayet1, Mengxian Long2,3, Bing Han3,4
1Laboratoire "Microorganismes: Génome et Environnement", CNRS, Université Clermont Auvergne, Clermont-Ferrand, France.
Abstract:
Microsporidia comprise a large phylum of single-cell and obligate intracellular parasites that can infect a wide range of invertebrate and vertebrate hosts including humans. These fungal-related parasites are characterized by a highly reduced genome, a strong energy dependence on their host, but also by their unique invasion organelle known as the polar tube which is coiled within the resistant spore. Upon appropriate environmental stimulation, the long hollow polar tube (ranging from 50 to 500 μm in length) is extruded at ultra-fast speeds (300 μm/s) from the spore acting as a harpoon-like organelle to transport and deliver the infectious material or sporoplasm into the host cell. To date, seven polar tube proteins (PTPs) with distinct localizations along the extruded polar tube have been described. For example, the specific location of PTP4 and PTP7 at the tip of the polar tube supports their role in interacting with cellular receptor(s). This chapter provides a brief overview on the current understanding of polar tube structure and dynamics of extrusion, primarily through recent advancements in cryo-tomography and 3D reconstruction. It also explores the various mechanisms used for host cell invasion. Finally, recent studies on the structure and maturation of sporoplasm and its moving through the tube are discussed.
Insights
Microsporidia parasites use a unique, harpoon-like polar tube to rapidly invade host cells. Recent cryo-tomography reveals insights into this invasion organelle
Area of Science:
- Microbiology
- Parasitology
- Cell Biology
Background:
- Microsporidia are obligate intracellular parasites with a unique polar tube for host cell invasion.
- The polar tube extrudes rapidly, delivering infectious sporoplasm into host cells.
- Seven polar tube proteins (PTPs) are known, with some at the tip potentially mediating host cell receptor interactions.
Purpose of the Study:
- To provide an overview of microsporidian polar tube structure and extrusion dynamics.
- To explore host cell invasion mechanisms employed by microsporidia.
- To discuss recent findings on sporoplasm structure, maturation, and transit through the polar tube.
Main Methods:
- Cryo-electron tomography
- 3D reconstruction
- Review of recent literature on microsporidian invasion.
Main Results:
- Detailed structural insights into the polar tube and its extrusion mechanism.
- Understanding of the roles of specific polar tube proteins (PTPs) in host interaction.
- Elucidation of sporoplasm dynamics during host cell entry.
Conclusions:
- Advanced imaging techniques have significantly enhanced our understanding of microsporidian invasion.
- The polar tube is a complex organelle with specialized proteins facilitating rapid and efficient host cell penetration.
- Further research on sporoplasm and polar tube interactions is crucial for understanding microsporidian pathogenesis.
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