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Antonsson, B. and Martinou, J.-C (2000). The Bcl-2 protein family. Exp. Cell Res 256, 50-57.[Medline]

Armstrong, J. F., Kaufman, M. H., Harrison, D. J. and Clarke, A. R (1995). High-frequency developmental abnormalities in p53 -deficient mice. Curr. Biol 5, 931-936.[Medline]

Blaschke, A. J., Weiner, J. A. and Chun, J (1998). Programmed cell death is a universial feature of embryonic and postnatal neuroproliferative regions throughout the central nervous system. J. Comp. Neurol 396, 39-50.[Medline]

Cecconi, F., Alvarez-Bolado, G., Meyer, B. I., Roth, K. A. and Gruss, P (1998). Apaf1 (CED-4 Homolog) regulates programmed cell death in mammalian development. Cell 94, 727-737.[Medline]

D'Sa-Eipper, C. and Roth, K. A (2000). Caspase regulation of neuronal precursor cell apoptosis. Dev. Neurosci 22, 116-124.[Medline]

Deckwerth, T. L., Elliott, J. L., Knudson, C. M., Johnson, E. M. Jr, Snider, W. D. and Korsmeyer, S. J (1996). Bax is required for neuronal death after trophic factor deprivation and during development. Neuron 17, 401-411.[Medline]

Doetsch, F., Caille, I., Lim, D. A., Garc\222a-Verdugo, J. M. and Alvarez-Buylia, A (1999). Subventricular zone astrocytes are neural stem cells in the adult mammalian brain. Cell 97, 703-716.[Medline]

Evan, G. and Littlewood, T (1998). A matter of life and cell death. Science 281, 1317-1322.[Abstract/Free Full Text]

Finucane, D. M., Bossy-Wetzel, E., Waterhouse, N. J., Cotter, T. G. andGreen, D. R (1999). Bax-induced caspase activation and apoptosis via cytochrome c release from mitochondria is inhibitable by Bcl-XL. J. Biol. Chem 274, 2225-2233.[Abstract/Free Full Text]

Flaris, N. A., Shindler, K. S., Kotzbauer, P. T., Chand, P., Ludwig, C. P., Konstantinidou, A. D. and Roth, K. A (1995). Developmentally-regulated lectin binding in the embryonic mouse telencephalon. Brain Res 678, 99-109.[Medline]

Frank, K. M., Sekiguchi, J. M., Seidl, K. J., Swat, W., Rathbun, G. A., Cheng, H.-L., Davidson, L., Kangaloo, L. and Alt, F. W (1998). Late embryonic lethality and impaired V(D)J recombination in mice lacking DNA ligase IV. Nature 396, 173-177.[Medline]

Frenkel, J., Sherman, D., Fein, A., Schwartz, D., Almog, N., Kapon, A., Goldfinger, N. and Rotter, V (1999). Accentuated apoptosis in normally developing p53 knockout mouse embryos following genotoxic stress. Oncogene 18, 2901-2907.[Medline]

Gao, Y., Sun, Y., Frank, K. M., Dikkes, P., Fujiwara, Y., Seidl, K. J., Sekiguchi, J. M., Rathbun, G. A., Swat, W., Wang, J. et al (1998). A critical role for DNA end-joining proteins in both lymphogenesis and neurogenesis. Cell 95, 891-902.[Medline]

Grant, S (1998). AraC: cellular and molecular pharmacology. Adv. Cancer Res 72, 197-233.[Medline]

Hakem, R. et al (1998). Differential requirement for caspase-9 in apoptotic pathways in vivo. Cell 94, 339-352.[Medline]

Johansson, C. B., Momma, S., Clarke, D. L., Risling, M., Lendahl, U. and Frisen, J (1999). Identification of a neural stem cell in the adult mammalian central nervous system. Cell 96, 25-34.[Medline]

Johnson, M. D., Xiang, H., London, S., Kinoshita, Y., Knudson, M., Mayberg, M., Korsmeyer, S. J. and Morrison, R. S (1998). Evidence for involvement of Bax and p53, but not caspases, in radiation-induced cell death of cultured postnatal hippocampal neurons. J. Neurosci. Res 54, 721-733.[Medline]

Keramaris, E., Stefanis, L., MacLaurin, J., Harada, N., Takaku, K., Ishikawa, T., Taketo, M. M., Robertson, G. S., Nicholson, D. W. et al (2000). Involvement of Caspase 3 in apoptotic death of cortical neurons evoked by DNA damage. Mol. Cell. Neurosci 15, 368-379.[Medline]

Kluck, R. M., Bossy-Wetzel, E., Green, D. R. and Newmeyer, D. D (1997). The release of cytochrome c from mitochondria: a primary site for Bcl-2 regulation of apoptosis. Science 275, 1132-1136.[Abstract/Free Full Text]

Komarova, E. A., Chernov, M. V., Franks, R., Wang, K., Armin, G., Zelnick, C. R., Chin, D. M., Bacus, S. S., Stark, G. R. and Gudkov, A. V (1997). Transgenic mice with p53-responsive lacZ : p53 activity varies dramatically during normal development and determines radiation and drug sensitivity in vivo. EMBO J 16, 1391-1400.[Medline]

Kuan, C.-Y., Roth, K. A., Flavell, R. A. and Rakic, P (2000). Mechanism of programmed cell death in the developing brain. Trends Neurosci 23, 287-293.

Kuida, K., Haydar, T. F., Kuan, C.-Y., Gu, Y., Taya, C., Karasuyama, H., Su, M. S. S., Rakic, P. and Flavell, R. A (1998). Reduced apoptosis and cytochrome c-mediated caspase activation in mice lacking caspase-9. Cell 94, 325-337.[Medline]

Kuida, K., Zheng, T. S., Na, S., Kuan, C.-Y., Yang, D., Karasuyama, H.,Rakic, P. and Flavell, R. A (1996). Decreased apoptosis in the brainand premature lethality in CPP32-deficient mice. Nature 384, 368-372.[Medline]

Loeffler, M. and Kroemer, G (2000). The mitochondrion in cell death control: certainties and incognita. Exp. Cell Res 256, 19-26.[Medline]

Martinou, J.-C., Dubois-Dauphin, M., Staple, J. K., Rodriguez, I., Frankowski, H., Missotten, M., Albertini, P., Talabot, D., Catsicas, S., Pietra, C. et al (1994). Overexpression of Bcl-2 in transgenic mice protects neurons from naturally occurring cell death and experimental ischemia. Neuron 13, 1017-1030.[Medline]

McCurrach, M. E., Connor, T. M. F., Knudson, C. M., Korsmeyer, S. J. and Lowe, S. W (1997). bax -deficiency promotes drug resistance and oncogenic transformation by attenuating p53-dependent apoptosis. Proc. Natl. Acad. Sci. USA 94, 2345-2349.[Abstract/Free Full Text]

McKay, R (1997). Stem cells in the central nervous system. Science 276, 66-71.[Abstract/Free Full Text]

Merry, D. E., Veis, D. J., Hickey, W. F. and Korsmeyer, S. J (1994). bcl-2 protein expression is widespread in the developing nervous system and retained in the adult PNS. Development 120, 301-311.[Abstract]

Miyashita, T. and Reed, J. C (1995). Tumor suppressor p53 is a direct transcriptional activator of the human bax gene. Cell 80, 293-299.[Medline]

Motoyama, N., Wang, F., Roth, K. A., Sawa, H., Nakayama, K., Nakayama, K., Negishi, I., Senju, S., Zhang, Q., Fujii, S. et al (1995). Massive cell death of immature hematopoietic cells and neurons in Bcl-x-deficient mice. Science 267, 1506-1510.[Abstract/Free Full Text]

Nakayama, K., Nakayama, K.-I., Negishi, I., Kuida, K., Sawa, H. and Loh, D. Y (1994). Targeted disruption of Bcl-2in mice: occurrence of gray hair, polycystic kidney disease, and lymphocytopenia. Proc. Natl. Acad. Sci. USA 91, 3700-3704.[Abstract/Free Full Text]

Oppenheim, R. W (1991). Cell death during development of the nervous system. Annu. Rev. Neurosci 14, 453-501.[Medline]

Putcha, G. V., Deshmukh, M. and Johnson, E. M (1999). BAX translocation is a critical event in neuronal apoptosis: regulation by neuroprotectants, BCL-2, and caspases. J. Neurosci 19, 7476-7485.[Abstract/Free Full Text]

Rodrigues, J. and Lazebnik, Y (1999). Caspase-9 and APAF-1 form an active holoenzyme. Genes Dev 13, 3179-3184.[Abstract/Free Full Text]

Roth, K. A., Kuan, C.-Y., Haydar, T. F., D'Sa-Eipper, C., Shindler, K. S., Zheng, T. S., Kuida, K., Flavell, R. A. and Rakic, P (2000). Epistatic and independent apoptotic functions of Caspase-3 and Bcl-XLin the developing nervous system. Proc. Natl. Acad. Sci. USA 97, 466-471.[Abstract/Free Full Text]

Sah, V. P., Attardi, L. D., Mulligan, G. J., Williams, B. O., Bronson, R. T. and Jacks, T (1995). A subset of p53 -deficient embryos exhibit exencephaly. Nat. Genet 10, 175-181.[Medline]

Schmid, P., Lorenz, A., Hameister, H. and Montenarh, M (1991). Expression of p53 during mouse embryogenesis. Development 113, 857-865.[Abstract]

Shindler, K. S., Latham, C. B. and Roth, K. A (1997). bax deficiency prevents the increased cell death of immature neurons in bcl-x -deficient mice. J. Neurosci 17, 3112-3119.[Abstract/Free Full Text]

Shindler, K. S. and Roth, K. A (1996). Cholera toxin binds to differentiating neurons in the developing murine basal ganglia. Dev. Brain Res 92, 199-211.[Medline]

Shindler, K. S. and Roth, K. A (1996). Double immunofluorescent staining using two unconjugated primary antisera raised in the same species. J. Histochem. Cytochem 44, 1331-1335.[Abstract]

Soengas, M. S., Yoshida, H., Giaccia, A. J., Hakem, R., Mak, T. W. and Lowe, S. W (1999). Apaf-1 and caspase-9 in p53-dependent apoptosis and tumor inhibition. Science 284, 156-159.[Abstract/Free Full Text]

Svendsen, C. N., Caldwell, M. A. and Ostenfeld, T (1999). Human neural stem cells: isolation, expansion and transplantation. Brain Pathol 9, 499-513.[Medline]

Thomaidou, D., Mione, M. C., Cavanagh, J. F. R. and Parnavelas, J. G (1997). Apoptosis and its relation to the cell cycle in the developing cerebral cortex. J. Neurosci 17, 1075-1085.[Abstract/Free Full Text]

Timme, T. and Thompson, T. C (1994). Rapid allelotype analysis of p53 knockout mice. BioTechniques 17, 461-463.

Veis, D. J., Sorenson, C. M., Shutter, J. R. and Korsmeyer, S. J (1993). Bcl-2-deficient mice demonstrate fulminant lymphoid apoptosis, polycystic kidneys, and hypopigmented hair. Cell 75, 229-240.[Medline]

Woo, M., et al (1998). Essential contribution of caspase-3/CPP32 to apoptosis and its associated nuclear changes. Genes Dev 12, 806-819.[Abstract/Free Full Text]

Yang, J., Liu, X., Bhalla, K., Kim, C. N., Ibrado, A. M., Cai, J., Peng, T. I., Jones, D. P. and Wang, X (1997). Prevention of apoptosis by Bcl-2: release of cytochrome c from mitochondria blocked. Science 275, 1129-1132.[Abstract/Free Full Text]

Yin, X.-M., Wang, K., Gross, A., Klocke, B., Roth, K. A. and Korsmeyer, S. J (1999). Bid -deficient mice are resistant to Fas-induced hepatocellular apoptosis. Nature 400, 886-891.[Medline]

Yoshida, H., Kong, Y.-Y., Yoshida, R., Elia, A. J., Hakem, A., Hakem, R., Penninger, J. M. and Mak, T. W (1998). Apaf-1 is required for mitochondrial pathways of apoptosis and brain development. Cell 94, 739-750.[Medline]

Zheng, T. S. and Flavell, R. A (2000). Divinations and surprises: genetic analysis of caspase function in mice. Exp. Cell Res 256, 67-73.[Medline]

Zheng, T. S., Schlosser, S. F., Dao, T., Hingorani, R., Crispe, I. N., Boyer, J. L. and Flavell, R. A (1998). Caspase-3 controls both cytoplasmic and nuclear events associated with Fas-mediated apoptosis in vivo. Proc. Natl. Acad. Sci. USA 95, 13618-13623.[Abstract/Free Full Text]

Zou, H., Li, Y., Liu, X. and Wang, X (1999). An APAF-1 cytochrome c multimeric complex is a functional apoptosome that activates procaspase-9. J. Biol. Chem 274, 11549-11556.[Abstract/Free Full Text]


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