Folia Parasitologica 52[1/2] 36-40 (2005) | DOI: 10.14411/fp.2005.005
How do microsporidia invade cells?
- Department of Internal Medicine I, University of Regensburg, 93042 Regensburg, Germany
Microsporidia are obligate intracellular eukaryotic parasites that utilize a unique mechanism to infect host cells. One of the main characteristics of all microsporidia is that they produce spores containing an extrusion apparatus that consists of a coiled polar tube ending in an anchoring disc at the apical part of the spore. With appropriate conditions inside a suitable host, the polar tube is discharged through the thin anterior end of the spore, thereby penetrating a new host cell for inoculating the infective sporoplasm into the new host cell. This method of invading new host cells is one of the most sophisticated infection mechanisms in biology and ensures that the microsporidia enter the host cell unrecognized and protected from the host defence reactions. Recent studies have shown that microsporidia gain access to host cells by phagocytosis as well. However, after phagocytosis, the special infection mechanism of the microsporidia is used to escape from the maturing phagosomes and to infect the cytoplasm of the cells. Gaining access to cells by endocytosis, and escaping destruction in the phago-/endo-/lysosome by egressing quickly from the phagocytic vacuole to multiply outside the lysosome, is a common phenomenon in biology that has been evolved several times during evolution. How this is put into execution by the microsporidia is an inimitable principle by which an obligate intracellular organism has managed this problem. The extrusion apparatus of the microsporidia has obviously ensured the success of this phylum during evolution, resulting in a group of obligate intracellular organisms, capable of infecting almost any type of host and cell.
Keywords: Microsporidia, Encephalitozoon, cell invasion, parasitophorous vacuole, phagocytosis, endocytosis
Received: September 15, 2004; Accepted: January 7, 2005; Published: May 1, 2005 Show citation
References
- BIGLIARDI E., SACCHI L. 2001: Cell biology and invasion of the microsporidia. Microbes Infect. 3: 373-379
Go to original source...
Go to PubMed... - CALI A., TAKVORIAN P.M. 1999: Developmental morphology and life cycles of the microsporidia. In: M. Wittner and L.M. Weiss (Eds.), The Microsporidia and Microsporidiosis. AMS Press, Washington, D.C., pp. 85-128
Go to original source... - CALI A., TAKVORIAN P.M., WEISS L.M. 2002: Brachiola algerae spore membrane systems, their activity during extrusion, and a new structural entity, the multilayered interlaced network, associated with the polar tube and the sporoplasm. J. Eukaryot. Microbiol. 49: 164-174
Go to original source...
Go to PubMed... - COUZINET S., CEJAS E., SCHITTNY J., DEPLAZES P., WEBER R., ZIMMERLI S. 2000: Phagocytic uptake of Encephalitozoon cuniculi by nonprofessional phagocytes. Infect. Immun. 68: 6939-6945
Go to original source...
Go to PubMed... - FOUCAULT C., DRANCOURT M. 2000: Actin mediates Encephalitozoon intestinalis entry into the human enterocyte-like cell line, Caco-2. Microb. Pathog. 28: 51-58
Go to original source...
Go to PubMed... - FRANZEN C. 2004: Microsporidia: how can they invade other cells? Trends Parasitol. 20: 275-279
Go to original source...
Go to PubMed... - FRANZEN C., MUeLLER A., HARTMANN P., SALZBERGER B. 2005: Cell invasion and intracellular fate of Encephalitozoon cuniculi (Microsporidia). Parasitology 130: 285-292
Go to original source...
Go to PubMed... - KEOHANE E.M., WEISS L.M. 1999: The structure, function, and composition of the microsporidian polar tube. In: M. Wittner and L.M. Weiss (Eds.), The Microsporidia and Microsporidiosis. AMS Press, Washington, D.C., pp. 196- 224
Go to original source... - MAGAUD A., ACHBAROU A., DESPORTES-LIVAGE I. 1997: Cell invasion by the microsporidium Encephalitozoon intestinalis. J. Eukaryot. Microbiol. 44: 81S
Go to original source...
Go to PubMed... - SCHOTTELIUS J., SCHMETZ C., KOCK N.P., SCHULER T., SOBOTTKA I., FLEISCHER B. 2000: Presentation by scanning electron microscopy of the life cycle of microsporidia of the genus Encephalitozoon. Microbes Infect. 2: 1401-1406
Go to original source...
Go to PubMed... - THELOHAN P. 1892: Observations sur les Myxosporidies et essai de classification de ces organismes. Bull. Soc. Philom. 4: 165-172
- THELOHAN P. 1894: Sur la presence d'une capsule a filament dans les spores des microsporidies. C. R. Acad. Sci. 118: 1425-1427
- VAVRA J., LARSSON J.I.R. 1999: Structure of the Microsporidia. In: M. Wittner and L.M. Weiss (Eds.), The Microsporidia and Microsporidiosis. AMS Press, Washington, D.C., pp. 7-84
Go to original source... - VISVESVARA G.S. 2002: In vitro cultivation of microsporidia of clinical importance. Clin. Microbiol. Rev. 15: 401-413
Go to original source...
Go to PubMed... - VIVARES C.P., METENIER G. 2001: The microsporidian Encephalitozoon. Bioessays 23: 194-202
Go to original source...
Go to PubMed... - WEIDNER E. 1972: Ultrastructural study of microsporidian invasion into cells. Z. Parasitenkd. 40: 227-242
Go to PubMed... - WEIDNER E. 1975: Interactions between Encephalitozoon cuniculi and macrophages. Parasitophorous vacuole growth and the absence of lysosomal fusion. Z. Parasitenkd. 47: 1-9
Go to original source...
Go to PubMed... - WEIDNER E., SIBLEY L.D. 1985: Phagocytized intracellular microsporidian blocks phagosome acidification and phagosome-lysosome fusion. J. Protozool. 32: 311-317
Go to original source...
Go to PubMed...


