Biology Reference
In-Depth Information
R. F., Lubling, Y., Lyne, R., MacCoss, M., Mackowiak, S. D., Mangone, M., McKay, S., Mecenas, D.,
Merrihew, G., Miller, D. M., 3rd., Muroyama, A., Murray, J. I., Ooi, S. L., Pham, H., Phippen, T.,
Preston, E. A., Rajewsky, N., Ratsch, G., Rosenbaum, H., Rozowsky, J., Rutherford, K., Ruzanov, P.,
Sarov, M., Sasidharan, R., Sboner, A., Scheid, P., Segal, E., Shin, H., Shou, C., and Slack, F. J., et al.
(2010). Integrative analysis of the Caenorhabditis elegans genome by the modENCODE project.
Science 330, 1775-1787.
Guo, S. X., Bourgeois, F., Chokshi, T., Durr, N. J., Hilliard, M. A., Chronis, N., and Ben-Yakar, A. (2008).
Femtosecond laser nanoaxotomy lab-on-a-chip for in vivo nerve regeneration studies. Nat. Methods 5,
531-533.
Hadwiger, G., Dour, S., Arur, S., Fox, P., and Nonet, M. L. (2010). A monoclonal antibody toolkit for C.
elegans. PLoS One 5, e10161.
Hallam, S., Singer, E., Waring, D., and Jin, Y. (2000). The C. elegans NeuroD homolog cnd-1 functions in
multiple aspects of motor neuron fate specification. Development 127, 4239-4252.
Hallam, S. J., and Jin, Y. (1998). lin-14 regulates the timing of synaptic remodelling in Caenorhabditis
elegans. Nature 395, 78-82.
Hammarlund, M., Nix, P., Hauth, L., Jorgensen, E. M., and Bastiani, M. (2009). Axon regeneration
requires a conserved MAP kinase pathway. Science 323, 802-806.
Hao, J. C., Yu, T. W., Fujisawa, K., Culotti, J. G., Gengyo-Ando, K., Mitani, S., Moulder, G., Barstead, R.,
Tessier-Lavigne, M., and Bargmann, C. I. (2001). C. elegans slit acts in midline, dorsal-ventral, and
anterior-posterior guidance via the SAX-3/Robo receptor. Neuron 32, 25-38.
Harbinder, S., Tavernarakis, N., Herndon, L. A., Kinnell, M., Xu, S. Q., Fire, A., and Driscoll, M. (1997).
Genetically targeted cell disruption in Caenorhabditis elegans. Proc. Natl Acad. Sci. U. S. A. 94,
13128-13133.
Hedgecock, E. M., Culotti, J. G., Thomson, J. N., and Perkins, L. A. (1985). Axonal guidance mutants of
Caenorhabditis elegans identified by filling sensory neurons with fluorescein dyes. Dev. Biol. 111,
158-170.
Heiman, M. G., and Shaham, S. (2009). DEX-1 and DYF-7 establish sensory dendrite length by anchoring
dendritic tips during cell migration. Cell 137, 344-355.
Hobert, O., Moerman, D. G., Clark, K. A., Beckerle, M. C., and Ruvkun, G. (1999). A conserved LIM
protein that affects muscular adherens junction integrity and mechanosensory function in
Caenorhabditis elegans. J. Cell Biol. 144, 45-57.
Hu, C. D., Chinenov, Y., and Kerppola, T. K. (2002). Visualization of interactions among bZIP and
Rel family proteins in living cells using bimolecular fluorescence complementation. Mol. Cell 9,
789-798.
Hu, C. D., Grinberg, A. V., and Kerppola, T. K. (2005). Visualization of protein interactions in living cells
using bimolecular fluorescence complementation (BiFC) analysis. Curr. Protoc. Protein Sci. Chapter
19, Unit 19 10.
Huang, X., Cheng, H. J., Tessier-Lavigne, M., and Jin, Y. (2002). MAX-1, a novel PH/MyTH4/FERM
domain cytoplasmic protein implicated in netrin-mediated axon repulsion. Neuron 34, 563-576.
Hung, W., Hwang, C., Po, M. D., and Zhen, M. (2007). Neuronal polarity is regulated by a direct
interaction between a scaffolding protein, Neurabin, and a presynaptic SAD-1 kinase in
Caenorhabditis elegans. Development 134, 237-249.
Hutter, H. (2003). Extracellular cues and pioneers act together to guide axons in the ventral cord of C.
elegans. Development 130, 5307-5318.
Jin, Y. (2005). Synaptogenesis. WormBook, ( http://www.wormbook.org/ ) pp. 1-11.
Jin, Y., and Garner, C. C. (2008). Molecular mechanisms of presynaptic differentiation. Annu. Rev. Cell
Dev. Biol. 24, 237-262.
Johnston, R. J., and Hobert, O. (2003). A microRNA controlling left/right neuronal asymmetry in
Caenorhabditis elegans. Nature 426, 845-849.
Jorgensen, E. M., andMango, S. E. (2002). The art and design of genetic screens: Caenorhabditis elegans.
Nat. Rev. Genet. 3, 356-369.
Search WWH ::




Custom Search