Trypanosome IFT mutants provide insight into the motor location for mobility of the flagella connector and flagellar membrane formation
Author:
Affiliation:
1. Sir William Dunn School of Pathology, University of Oxford, South Parks Road, Oxford, OX1 3RE, UK
2. Biomedical Sciences Unit, Department of Biological Sciences, Lancaster University, Lancaster, LA1 4YQ, UK
Abstract
Publisher
The Company of Biologists
Subject
Cell Biology
Link
http://journals.biologists.com/jcs/article-pdf/119/19/3935/1514965/3935.pdf
Reference34 articles.
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2. Bastin, P., Ellis, K., Kohl, L. and Gull, K. (2000). Flagellum ontogeny in trypanosomes studied via an inherited and regulated RNA interference system. J. Cell Sci.113, 3321-3328.
3. Beisson, J. and Sonnerborn, T. M. (1965). Cytoplasmic inheritance of the organization of the cell cortex in Paramecium aurelia.Proc. Natl. Acad. Sci. USA53, 275-282.
4. Berriman, M., Ghedin, E., Hertz-Fowler, C., Blandin, G., Renauld, H., Bartholomeu, D. C., Lennard, N. J., Caler, E., Hamlin, N. E., Haas, B. et al. (2005). The genome of the African trypanosome Trypanosoma brucei.Science309, 416-422.
5. Bloodgood, R. A. and Salomonsky, N. L. (1994). The transmembrane signaling pathway involved in directed movements of Chlamydomonas flagellar membrane glycoproteins involves the dephosphorylation of a 60-kD phosphoprotein that binds to the major flagellar membrane glycoprotein. J. Cell Biol.127, 803-811.
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