Biology Reference
In-Depth Information
Colosimo, M. E., Brown, A., Mukhopadhyay, S., Gabel, C., Lanjuin, A. E., Samuel, A. D., and Sengupta, P.
(2004). Identification of thermosensory and olfactory neuron-specific genes via expression profiling of
single neuron types. Curr. Biol. 14 , 2245-2251.
Cravatt, B. F., Simon, G. M., and Yates III, J. R. (2007). The biological impact of mass-spectrometry-based
proteomics. Nature 450 , 991-1000.
Dammermann, A., Maddox, P. S., Desai, A., and Oegema, K. (2008). SAS-4 is recruited to a dynamic
structure in newly forming centrioles that is stabilized by the gamma-tubulin-mediated addition of
centriolar microtubules. J. Cell. Biol. 180 , 771-785.
Dammermann, A., Pemble, H., Mitchell, B. J., McLeod, I., Yates, J. R., Kintner, C., Desai, A. B., and
Oegema, K. (2009). The hydrolethalus syndrome protein HYLS-1 links core centriole structure to cilia
formation. Genes Dev. 23 , 2046-2059.
Desai, A., Rybina, S., Muller-Reichert, T., Shevchenko, A., Hyman, A., and Oegema, K. (2003). KNL-1
directs assembly of the microtubule-binding interface of the kinetochore in C. elegans. Genes Dev. 17 ,
2421-2435.
Duchaine,T.F.,Wohlschlegel,J.A.,Kennedy,S.,Bei,Y.,ConteJr,D.,Pang,K.,Brownell,D.R.,
Harding, S., Mitani, S., and Ruvkun, G., et al. (2006). Functional proteomics reveals the
biochemical niche of C. elegans DCR-1 in multiple small-RNA-mediated pathways. Cell 124 ,
343-354.
Edgar, L. G. (1995). Blastomere culture and analysis. Methods Cell Biol. 48 , 303-321.
Fernandez, A. G., Gunsalus, K. C., Huang, J., Chuang, L. S., Ying, N., Liang, H. L., Tang, C., Schetter, A.
J., Zegar, C., and Rual, J. F., et al. (2005). New genes with roles in the C. elegans embryo revealed using
RNAi of ovary-enriched ORFeome clones. Genome Res. 15 , 250-259.
Fernandez, A. G., Mis, E. K., Bargmann, B. O., Birnbaum, K. D., and Piano, F. (2010). Automated sorting
of live C. elegans using laFACS. Nat. Methods 7 , 417-418.
Frokjaer-Jensen, C., Davis, M. W., Hopkins, C. E., Newman, B. J., Thummel, J. M., Olesen, S. P., Grunnet,
M., and Jorgensen, E. M. (2008). Single-copy insertion of transgenes in Caenorhabditis elegans. Nat.
Genet. 40 , 1375-1383.
Gassmann, R., Essex, A., Hu, J. S., Maddox, P. S., Motegi, F., Sugimoto, A., O ' Rourke, S. M., Bowerman,
B., McLeod, I., and Yates, J. R., et al. (2008). A new mechanism controlling kinetochore-microtubule
interactions revealed by comparison of two dynein-targeting components: SPDL-1 and the Rod/Zwilch/
Zw10 complex. Genes Dev. 22 , 2385-2399.
Golden, A., Sadler, P. L., Wallenfang, M. R., Schumacher, J. M., Hamill, D. R., Bates, G., Bowerman, B.,
Seydoux, G., and Shakes, D. C. (2000). Metaphase to anaphase (mat) transition-defective mutants in
Caenorhabditis elegans. J. Cell. Biol. 151 , 1469-1482.
Gottschalk, A., Almedom, R. B., Schedletzky, T., Anderson, S. D., Yates III, J. R., and Schafer, W. R.
(2005). Identification and characterization of novel nicotinic receptor-associated proteins in
Caenorhabditis elegans. EMBO J. 24 , 2566-2578.
Green, R. A., Audhya, A., Pozniakovsky, A., Dammermann, A., Pemble, H., Monen, J., Portier, N.,
Hyman, A., Desai, A., and Oegema, K. (2008). Expression and imaging of fluorescent proteins in
the C. elegans gonad and early embryo. Methods Cell Biol. 85 , 179-218.
Green, R. A., Kao, H. L., Audhya, A., Arur, S., Mayers, J. R., Fridolfsson, H. N., Schulman, M.,
Schloissnig, S., Niessen, S., and Laband, K., et al. (2011). A high-resolution C. elegans essential gene
network based on phenotypic profiling of a complex tissue. Cell 145 , 470-482.
Harlow, E. L., David., Harlow, E., and Lane, D. (1999). Using Antibodies: A Laboratory Manual. Cold
Spring Harbor Laboratory Press, New York.
Hope, I. A. (1999). C. elegans: A Practical Approach. Oxford University Press, Oxford & New York.
Huang, L. S., and Sternberg, P. W. (2006). Genetic dissection of developmental pathways. WormBook 14 ,
1-19.
Hubner, N. C., Bird, A. W., Cox, J., Splettstoesser, B., Bandilla, P., Poser, I., Hyman, A., and Mann, M.
(2010). Quantitative proteomics combined with BAC TransgeneOmics reveals in vivo protein interac-
tions. J. Cell Biol. 189 , 739-754.
Search WWH ::




Custom Search