Epicellular Apicomplexans: Parasites "On the Way In"

. 2015 Sep ; 11 (9) : e1005080. [epub] 20150924

Jazyk angličtina Země Spojené státy americké Médium electronic-ecollection

Typ dokumentu časopisecké články, práce podpořená grantem, přehledy

Perzistentní odkaz   https://www.medvik.cz/link/pmid26402329

Grantová podpora
Howard Hughes Medical Institute - United States

Odkazy

PubMed 26402329
PubMed Central PMC4581633
DOI 10.1371/journal.ppat.1005080
PII: PPATHOGENS-D-14-02571
Knihovny.cz E-zdroje

Zobrazit více v PubMed

Davies AJ, Ball SJ (1993) The biology of fish coccidia. Adv Parasit 32: 293–366. PubMed

Jirků M, Modrý D, Šlapeta JR, Koudela B, Lukeš J (2002) The phylogeny of Goussia and Choleoeimeria (Apicomplexa; Eimeriorina) and the evolution of excystation structures in coccidia. Protist 153: 379–390. PubMed

Whipps CM, Fournie JW, Morrison DA, Azevedo C, Matos E, Thebo P, et al. (2012) Phylogeny of fish-infecting Calyptospora species (Apicomplexa: Eimeriorina). Parasitol Res 111: 1331–1342. 10.1007/s00436-012-2969-8 PubMed DOI

Valigurová A, Paskerova GG, Diakin A, Kovačiková M, Simdyanov TG (2015) Protococcidian Eleutheroschizon duboscqi, an unusual apicomplexan interconnecting gregarines and cryptosporidia. PLoS One 10: e0125063–e. 10.1371/journal.pone.0125063 PubMed DOI PMC

Molnár K, Ostoros G, Dunams-Morel D, Rosenthal BM (2012) Eimeria that infect fish are diverse and are related to, but distinct from, those that infect terrestrial vertebrates. Infect Genet Evol 12: 1810–1815. 10.1016/j.meegid.2012.06.017 PubMed DOI

Dogga SK, Bartošová-Sojková P, Lukeš J, Soldati-Favre D. Phylogeny, morphology, metabolic and invasive capabilities of epicellular fish coccidium Goussia janae . Protist. In press. PubMed

Palenzuela O, Alvarez-Pellitero P, Sitjà-Bobadilla A (2010) Molecular characterization of Cryptosporidium molnari reveals a distinct piscine clade. Appl Environ Microbiol 76: 7646–7649. 10.1128/AEM.01335-10 PubMed DOI PMC

Valigurová A, Jirků M, Koudela B, Gelnar M, Modrý D, Šlapeta J (2008) Cryptosporidia: Epicellular parasites embraced by the host cell membrane. Int J Parasitol 38: 913–922. PubMed

Lukeš J, Starý V (1992) Ultrastructure of life cycle stages of Goussia janae (Apicomplexa, Eimeriidae) and X-ray microanalysis of accompanying precipitates. Can J Zool 70: 2382–2397.

Alvarez-Pellitero P, Palenzuela O, Sitjaà-Bobadilla A (2002) Cryptosporidium molnari n. sp. (Apicomplexa: Cryptosporidiidae) infecting two marine fish species, Sparus aurata L. and Dicentrarchus labrax L. Int J Parasitol 32: 1007–1021. PubMed

Landsberg JH, Paperna I (1986) Ultrastructural study of the coccidian Cryptosporidium sp. from stomachs of juvenile cichlid fish. Dis Aquat Organ 2: 13–20.

Morrison CM, Poynton SL (1989) A new species of Goussia (Apicomplexa, Coccidia) in the kidney tubules of the cod, Gadus morhua L. J Fish Dis 12: 533–560.

Kim SH, Paperna I (1992) Fine structure of epicytoplasmic stages of Eimeria vanasi from the gut of cichlid fish. Dis Aquat Organ 12: 191–197.

Paperna I (1991) Fine structure of Eimeria (s.l.) vanasi merogony stages in the intestinal mucosa of cichlid fish. Dis Aquat Organ 10: 195–201.

Lukeš J (1992) Life cycle of Goussia pannonica (Molnaár, 1989) (Apicomplexa, Eimeriorina), an extracytoplasmic coccidium from the white bream Blicca bjoerkna . J Protozool 39: 484–494.

Lamarque MH, Roques M, Kong-Hap M, Tonkin ML, Rugarabamu G, Marq J-B, et al. (2014) Plasticity and redundancy among AMA-RON pairs ensure host cell entry of Toxoplasma parasites. Nat Commun 5: 4098 10.1038/ncomms5098 PubMed DOI

Bichet M, Joly C, Henni AH, Guilbert T, Xemard M, Tafani V, et al. (2014) The toxoplasma-host cell junction is anchored to the cell cortex to sustain parasite invasive force. BMC Biol 12: 773 10.1186/s12915-014-0108-y PubMed DOI PMC

Barta JR, Thompson RCA (2006) What is Cryptosporidium? Reappraising its biology and phylogenetic affinities. Trends Parasitol 22: 463–468. PubMed

Rueckert S, Leander BS (2009) Phylogenetic position and description of Rhytidocystis cyamus sp. n. (Apicomplexa, Rhytidocystidae): a novel intestinal parasite of the north-eastern Pacific 'stink worm' (Polychaeta, Opheliidae, Travisia pupa). Mar Biodiv 39: 227–234.

Perkins ME, Riojas YA, Wu TW, Le Blancq SM (1999) CpABC, a Cryptosporidium parvum ATP-binding cassette protein at the host-parasite boundary in intracellular stages. Proc Natl Acad Sci U S A 96: 5734–5739. PubMed PMC

Sauvage V, Aubert D, Escotte-Binet S, Villena I (2009) The role of ATP-binding cassette (ABC) proteins in protozoan parasites. Mol Biochem Parasitol 167: 81–94. 10.1016/j.molbiopara.2009.05.005 PubMed DOI

Bonnin A, Lapillonne A, Petrella T, Lopez J, Chaponnier C, Gabbiani G, et al. (1999) Immunodetection of the microvillous cytoskeleton molecules villin and ezrin in the parasitophorous vacuole wall of Cryptosporidium parvum (Protozoa: Apicomplexa). Eur J Cell Biol 78: 794–801. PubMed

Lecordier L, Mercier C, Sibley LD, Cesbron-Delauw MF (1990) Transmembrane insertion of the Toxoplasma gondii GRA5 protein occurs after soluble secretion into the host cell. Mol Biol Cell 10: 1277–1287. PubMed PMC

Hakimi M- A, Bougdour A (2015) Toxoplasma's ways of manipulating the host transcriptome via secreted effectors. Curr Opin Microbiol 26:24–31. 10.1016/j.mib.2015.04.003 PubMed DOI

Gubbels MJ, Duraisingh MT (2012) Evolution of apicomplexan secretory organelles. Int J Parasitol 42: 1071–1081. 10.1016/j.ijpara.2012.09.009 PubMed DOI PMC

Danne JC, Gornik SG, MacRae JI, McConville MJ, Waller RF (2013) Alveolate mitochondrial metabolic evolution: dinoflagellates force reassessment of the role of parasitism as a driver of change in apicomplexans. Mol Biol Evol 30: 123–139. 10.1093/molbev/mss205 PubMed DOI

Mogi T, Kita K (2010) Diversity in mitochondrial metabolic pathways in parasitic protists Plasmodium and Cryptosporidium . Parasitol Int 59: 305–312. 10.1016/j.parint.2010.04.005 PubMed DOI

Najít záznam

Citační ukazatele

Nahrávání dat ...

    Možnosti archivace