sanpodo


REFERENCES

Buescher, M., et al. (1998). Binary sibling neuronal cell fate decisions in the Drosophila embryonic central nervous system are nonstochastic and require inscuteable-mediated asymmetry of ganglion mother cells. Genes Dev. 12(12): 1858-1870.

Dye, C. A., et al. (1998). The Drosophila sanpodo gene controls sibling cell fate and encodes a tropomodulin homolog, an actin/tropomyosin-associated protein. Development 125: 1845-1856.

Hutterer, A. and Knoblich, J. A. (2005). Numb and alpha-Adaptin regulate Sanpodo endocytosis to specify cell fate in Drosophila external sensory organs. EMBO Rep. 6(9): 836-42. Medline abstract: 16113648

Jafar-Nejad, H., et al. (2005). Sec15, a component of the exocyst, promotes Notch signaling during the asymmetric division of Drosophila sensory organ precursors. Dev. Cell 9: 351-363. 16137928

Lundell, M. J., et al. (2003). The regulation of apoptosis by Numb/Notch signaling in the serotonin lineage of Drosophila. Development 130: 4109-4121. 12874131

O'Connor-Giles, K. M. and Skeath, J. B. (2003). Numb inhibits membrane localization of Sanpodo, a four-pass transmembrane protein, to promote asymmetric divisions in Drosophila. Dev. Cell 5: 231-243. 12919675

Park, M., Yaich, L. E. and Bodmer, R. (1998). Mesodermal cell fate decisions in Drosophila are under the control of the lineage genes numb, Notch, and sanpodo. Mech. Dev. 75(1-2): 117-26.

Petcherski, A. G. and Kimble J. (2000a). LAG-3 is a putative transcriptional activator in the C. elegans Notch pathway. Nature 405(6784): 364-8. 10830967

Petcherski, A. G. and Kimble J. (2000b). Mastermind is a putative activator for Notch. Curr. Biol. 10(13): R471-3. 10898989

Roegiers, F., Jan, L. Y. and Jan, Y. N. (2005). Regulation of membrane localization of Sanpodo by Lethal giant larvae and Neuralized in asymmetrically dividing cells of Drosophila sensory organs. Mol Biol Cell.. 15901829

Salzberg, A., D'Evelyn, D., Schulze, K. L., Lee, J.-K., Strumpf, D., Tsai, L. and Bellen, H. J. (1994). Mutations affecting the pattern of the PNS in Drosophila reveal novel aspects of neuronal development. Neuron 13: 269-287.

Salzberg, A., Prokopenko, S. N., He, Y.-C., Tsai, P., Maroy, P., Glover, D. M., Deak, P. and Bellen, H. J. (1997). P-element insertion alleles of essential genes on the third chromosome of Drosophila melanogaster: Mutations affecting embryonic PNS development. Genetics 147: 1723- 1741.

Skeath, J. B. and Doe, C. Q. (1998). Sanpodo and Notch act in opposition to Numb to distinguish sibling neuron fates in the Drosophila CNS. Development 125: 1857-1865.

Ward, E. J. and Skeath, J. B. (2000). Characterization of a novel subset of cardiac cells and their progenitors in the Drosophila embryo. Development 127: 4959-4969. 11044409


sanpodo: Biological Overview | Regulation | Developmental Biology | Effects of Mutation

date revised: 25 July 2007

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