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大学・研究所にある論文を検索できる 「Three-dimensional Electron Microscopy Analysis Reveals Endopolygeny-like Nuclear Architecture Segregation in Plasmodium Oocyst Development」の論文概要。リケラボ論文検索は、全国の大学リポジトリにある学位論文・教授論文を一括検索できる論文検索サービスです。

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Three-dimensional Electron Microscopy Analysis Reveals Endopolygeny-like Nuclear Architecture Segregation in Plasmodium Oocyst Development

荒木, 球沙 筑波大学 DOI:10.15068/00160393

2020.07.21

概要

The genus Plasmodium is a unicellular eukaryotic parasite that is the causative agent of malaria, which is transmitted by Anopheline mosquito. There are a total of three developmental stages in the production of haploid parasites in the Plasmodium life cycle: the oocyst stage in mosquitoes and the liver and blood stages in mammalian hosts. The Plasmodium oocyst stage plays an important role in the production of the first generation of haploid parasites. Nuclear division is the most important event that occurs during the proliferation of all eukaryotes. However, obtaining the details of nuclear division at the oocyst stage is challenging owing to difficulties in preparation. In this study, I used focused-ion-beam-milling combined with scanning-electron-microscopy to report the 3D architecture during nuclear segregations in oocyst stage. This advanced technology allowed us to analyse the 3D details of organelle segregation inside the oocyst during sporogony formation. It was revealed that multiple nuclei were involved with several centrosomes in one germ nucleus during sporozoite budding (endopolygeny). My high-resolution 3D analysis uncovered the endopolygeny-like nuclear architecture of Plasmodium in the definitive host. This nuclear segregation was different from that in the blood stage, and its similarity to other apicomplexan parasite nuclear divisions such as Sarcocystis is discussed.

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参考文献

Annoura, T., Chevalley, S., Janse, C. J., Franke-Fayard, B., & Khan, S. M. (2013). Quantitative analysis of Plasmodium berghei liver stages by bioluminescence imaging. Methods Mol Biol, 923, 429-443. doi:10.1007/978-1-62703-026-7_30

Annoura, T., van Schaijk, B. C., Ploemen, I. H., Sajid, M., Lin, J. W., Vos, M. W., . . . Khan, S. M. (2014). Two Plasmodium 6-Cys family-related proteins have distinct and critical roles in liver-stage development. Faseb j, 28(5), 2158-2170. doi:10.1096/fj.13-241570

Aoki, K., Hayashi, H., Furuya, K., Sato, M., Takagi, T., Osumi, M., . . . Niki, H. (2011). Breakage of the nuclear envelope by an extending mitotic nucleus occurs during anaphase in Schizosaccharomyces japonicus. Genes Cells, 16(9), 911-926. doi:10.1111/j.1365- 2443.2011.01540.x

Boettcher, B., & Barral, Y. (2014). The cell biology of open and closed mitosis. Nucleus, 4(3), 160-165. doi:10.4161/nucl.24676

Boettcher, B., Marquez-Lago, T. T., Bayer, M., Weiss, E. L., & Barral, Y. (2012). Nuclear envelope morphology constrains diffusion and promotes asymmetric protein segregation in closed mitosis. The Journal of Cell Biology, 197(7), 921-937. doi:10.1083/jcb.201112117

Brooks, C. F., Francia, M. E., Gissot, M., Croken, M. M., Kim, K., & Striepen, B. (2011). Toxoplasma gondii sequesters centromeres to a specific nuclear region throughout the cell cycle. Proc Natl Acad Sci U S A, 108(9), 3767-3772. doi:10.1073/pnas.1006741108

Canning, E. U., & Sinden, R. E. (1973). The organization of the ookinete and observations on nuclear division in oocysts of Plasmodium berghei. Parasitology, 67(1), 29-40. doi:10.1017/s0031182000046266

Cavalier-Smith, T. (2010). Origin of the cell nucleus, mitosis and sex: roles of intracellular coevolution. Biol Direct, 5, 7. doi:10.1186/1745-6150-5-7

Chang, F., & Martin, S. G. (2009). Shaping fission yeast with microtubules. Cold Spring Harb Perspect Biol, 1(1), a001347. doi:10.1101/cshperspect.a001347

Eshar, S., Dahan-Pasternak, N., Weiner, A., & Dzikowski, R. (2011). High resolution 3D perspective of Plasmodium biology: advancing into a new era. Trends in Parasitology, 27(12), 548-554. doi:10.1016/j.pt.2011.08.002

Ferguson, D. J. (2009). Toxoplasma gondii: 1908-2008, homage to Nicolle, Manceaux and Splendore. Mem Inst Oswaldo Cruz, 104(2), 133-148. doi:10.1590/s0074- 02762009000200003

Ferguson, D. J., Campbell, S. A., Henriquez, F. L., Phan, L., Mui, E., Richards, T. A., . . . Roberts, C. W. (2007). Enzymes of type II fatty acid synthesis and apicoplast differentiation and division in Eimeria tenella. Int J Parasitol, 37(1), 33-51. doi:10.1016/j.ijpara.2006.10.003

Ferguson, D. J., Sahoo, N., Pinches, R. A., Bumstead, J. M., Tomley, F. M., & Gubbels, M. J. (2008). MORN1 has a conserved role in asexual and sexual development across the apicomplexa. Eukaryot Cell, 7(4), 698-711. doi:10.1128/EC.00021-08

Francia, M. E., & Striepen, B. (2014). Cell division in apicomplexan parasites. Nat Rev Microbiol, 12(2), 125-136. doi:10.1038/nrmicro3184

Gerald, N., Mahajan, B., & Kumar, S. (2011). Mitosis in the human malaria parasite Plasmodium falciparum. Eukaryot Cell, 10(4), 474-482. doi:10.1128/EC.00314-10

Ghebreyesus, T. A., & Admasu, K. (2018). Countries must steer new response to turn the malaria tide. Lancet, 392(10161), 2246-2247. doi:10.1016/s0140-6736(18)32943-x

Howells, R. E., & Davies, E. E. (1971). Nuclear division in the oocyst of Plasmodium berghei. Ann Trop Med Parasitol, 65(4), 451-459. doi:10.1080/00034983.1971.11686777

Kremer, A., Lippens, S., Bartunkova, S., Asselbergh, B., Blanpain, C., Fendrych, M., . . . Guerin, C. J. (2015). Developing 3D SEM in a broad biological context. J Microsc, 259(2), 80-96. doi:10.1111/jmi.12211

Kubai, D. F., & Ris, H. (1969). Division in the dinoflagellate Gyrodinium cohnii (Schiller). A new type of nuclear reproduction. J Cell Biol, 40(2), 508-528. doi:10.1083/jcb.40.2.508

Lin, J. W., Annoura, T., Sajid, M., Chevalley-Maurel, S., Ramesar, J., Klop, O., . . . Khan, S. M. (2011). A novel 'gene insertion/marker out' (GIMO) method for transgene expression and gene complementation in rodent malaria parasites. PLoS One, 6(12), e29289. doi:10.1371/journal.pone.0029289

Mahajan, B., Selvapandiyan, A., Gerald, N. J., Majam, V., Zheng, H., Wickramarachchi, T., . . . Kumar, S. (2008). Centrins, cell cycle regulation proteins in human malaria parasite Plasmodium falciparum. J Biol Chem, 283(46), 31871-31883. doi:10.1074/jbc.M800028200

Medeiros, L. C., De Souza, W., Jiao, C., Barrabin, H., & Miranda, K. (2012). Visualizing the 3D architecture of multiple erythrocytes infected with Plasmodium at nanoscale by focused ion beam-scanning electron microscopy. PLoS One, 7(3), e33445. doi:10.1371/journal.pone.0033445

Mitchison, T. J., & Salmon, E. D. (2001). Mitosis: a history of division. Nat Cell Biol, 3(1), E17-21. doi:10.1038/35050656

Nishi, M., Hu, K., Murray, J. M., & Roos, D. S. (2008). Organellar dynamics during the cell cycle of Toxoplasma gondii. J Cell Sci, 121(Pt 9), 1559-1568. doi:10.1242/jcs.021089

Perret, E., Davoust, J., Albert, M., Besseau, L., & Soyer-Gobillard, M. O. (1993). Microtubule organization during the cell cycle of the primitive eukaryote dinoflagellate Crypthecodinium cohnii. J Cell Sci, 104 ( Pt 3), 639-651.

Roques, M., Stanway, R. R., Rea, E. I., Markus, R., Brady, D., Holder, A. A., . . . Tewari, R. (2019). Plasmodium centrin PbCEN-4 localizes to the putative MTOC and is dispensable for malaria parasite proliferation. Biol Open, 8(1). doi:10.1242/bio.036822

Sakaguchi, M., Miyazaki, N., Fujioka, H., Kaneko, O., & Murata, K. (2016). Three-dimensional analysis of morphological changes in the malaria parasite infected red blood cell by serial block-face scanning electron microscopy. J Struct Biol, 193(3), 162-171. doi:10.1016/j.jsb.2016.01.003

Scholey, J. M., Brust-Mascher, I., & Mogilner, A. (2003). Cell division. Nature, 422(6933), 746-752. doi:10.1038/nature01599

Schrevel, J., Asfaux-Foucher, G., Hopkins, J. M., Robert, V., Bourgouin, C., Prensier, G., & Bannister, L. H. (2008). Vesicle trafficking during sporozoite development in Plasmodium berghei: ultrastructural evidence for a novel trafficking mechanism. Parasitology, 135(Pt 1), 1-12. doi:10.1017/s0031182007003629

Shimoda, C. (2004). Forespore membrane assembly in yeast: coordinating SPBs and membrane trafficking. J Cell Sci, 117(Pt 3), 389-396. doi:10.1242/jcs.00980

Smoyer, C. J., & Jaspersen, S. L. (2014). Breaking down the wall: the nuclear envelope during mitosis. Curr Opin Cell Biol, 26, 1-9. doi:10.1016/j.ceb.2013.08.002

Striepen, B., Jordan, C. N., Reiff, S., & van Dooren, G. G. (2007). Building the perfect parasite: cell division in apicomplexa. PLoS Pathog, 3(6), e78. doi:10.1371/journal.ppat.0030078

Suvorova, E. S., Francia, M., Striepen, B., & White, M. W. (2015). A Novel Bipartite Centrosome Coordinates the Apicomplexan Cell Cycle. PLOS Biology, 13(3), e1002093. doi:10.1371/journal.pbio.1002093

Vaishnava, S., Morrison, D. P., Gaji, R. Y., Murray, J. M., Entzeroth, R., Howe, D. K., & Striepen, B. (2005). Plastid segregation and cell division in the apicomplexan parasite Sarcocystis neurona. J Cell Sci, 118(Pt 15), 3397-3407. doi:10.1242/jcs.02458

Weiner, A., Dahan-Pasternak, N., Shimoni, E., Shinder, V., von Huth, P., Elbaum, M., & Dzikowski, R. (2011). 3D nuclear architecture reveals coupled cell cycle dynamics of chromatin and nuclear pores in the malaria parasite Plasmodium falciparum. Cell Microbiol, 13(7), 967-977. doi:10.1111/j.1462-5822.2011.01592.x

White, N. J., Pukrittayakamee, S., Hien, T. T., Faiz, M. A., Mokuolu, O. A., & Dondorp, A. M. (2014). Malaria. Lancet, 383(9918), 723-735. doi:10.1016/s0140-6736(13)60024-0

Yam, C., He, Y., Zhang, D., Chiam, K. H., & Oliferenko, S. (2011). Divergent strategies for controlling the nuclear membrane satisfy geometric constraints during nuclear division. Curr Biol, 21(15), 1314-1319. doi:10.1016/j.cub.2011.06.052

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