Genetics of Apoptosis

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Motoyama, N., Wang, F., Roth, K.A., Sawa, H., Nakayama, K., Negishi, I., Senju, S., Zhang,
Q. and Fujii, S. (1995) Massive cell death of immature hematopoietic cells and neurons
in Bcl-x- deficient mice. Science 267:1506–1510.
Motoyama, S., Kitamura, M., Saito, S., Minamiya, Y., Suzuki, H., Saito, R., Terada, K.,
Ogawa, J. and Inaba, H. (1998) Bcl-2 is located predominantly in the inner membrane
and crista of mitochondria in rat liver. Biochem. Biophys. Res. Commun. 249:628–636.
Mpoke, S. and Wolfe, J. (1996) DNA digestion and chromatin condensation during nuclear
death in Tetrahymena. Exp. Cell Res. 225:357–365.
Mpoke, S.S. and Wolfe, J. (1997) Differential staining of apoptotic nuclei in living cells:
application to macronuclear elimination in Tetrahymena. J. Histochem. Cytochem. 45:675–
683.
Muchmore, S.W., Sattler, M., Liang, H., et al. (1996) X-ray and NMR structure of human
Bcl-xL, an inhibitor of programmed cell death. Nature 381:335–341.
Mukhopadhyay, A., Ni, J., Zhai, Y., Yu, G.L. and Aggarwal, B.B. (1999) Identification and
characterization of a novel cytokine, THANK, a TNF homologue that activates apoptosis,
nuclear factor-kappaB, and c-Jun NH2-terminal kinase.J. Biol. Chem. 274:15978–15981.
Muller, M., Wilder, S., Bannasch, D., et al. (1998) p53 activates the CD95 (APO-1/Fas)
gene in response to DNA damage by anticancer drugs. J.Exp. Med. 188: 2033–2045.
Murakami, H. and Nurse, P. (2000) DNA replication and damage checkpoints and meiotic
cell cycle controls in the fission and budding yeasts. Biochem. J. 349: 1–12.
Muriel, M.P., Lambeng, N., Darios, F., Michel, P.P., Hirsch, E.C., Agid, Y. and Ruberg,
M. (2000) Mitochondrial free calcium levels (Rhod-2 fluorescence) and ultrastructural
alterations in neuronally differentiated PC12 cells during ceramidedependent cell death.
J.Comp. Neurol. 426:297–315.
Murphy, A.N., Bredesen, D.E., Cortopassi, G., Wang, E. and Fiskum, G. (1996) Bcl-2
potentiates the maximal calcium uptake capacity of neural cell mitochondria. Proc. Natl
Acad. Sci. U.S.A. 93:9893–9898.
Murphy, K.M., Streips, U.N. and Lock, R.B. (2000) Bcl-2 inhibits a Fas-induced
conformational change in the Bax N terminus and Bax mitochondrial translocation.
J.Biol. Chem. 275:17225–17228.
Murphy, R.C., Schneider, E. and Kinnally, K.W. (2001) Overexpression of Bcl-2 suppresses
the calcium activation of a mitochondrial megachannel. FEBS Lett. 497:73–76.
Muzio, M., Chinnaiyan, A.M., Kischkel, F.C., et al. (1996) FLICE, a novel FADD-
homologous ICE/CED-3-like protease, is recruited to the CD95 (Fas/APO-1) death-
inducing signaling complex. Cell 85:817–827.
Muzio, M., Stockwell, B.R., Stennicke, H.R., Salvesen, G.S. and Dixit, V.M. (1998) An
induced proximity model for caspase-8 activation. J.Biol. Chem. 273: 2926–2930.
Nagata, S. (1998) Human autoimmune lymphoproliferative syndrome, a defect in the
apoptosis-inducing Fas receptor: a lesson from the mouse model. J.Hum. Genet. 43:2–8.
Nagata, S. (1997) Apoptosis by death factor. Cell 88:355–365.
Naismith, J.H. and Sprang, S.R. (1998) Modularity in the TNF-receptor family. Trends
Biochem. Sci. 23:74–79.
Nakagawa, T. and Yuan, J. (2000) Cross-talk between two cysteine protease families.
Activation of caspase-12 by calpain in apoptosis. J.Cell Biol. 150:887–894.
Nakagawa, T., Zhu, H., Morishima, N., Li, E., Xu, J., Yankner, B.A. and Yuan, J. (2000)
Caspase-12 mediates endoplasmic-reticulum-specific apoptosis and cytotoxicity by
amyloid-beta. Nature 403:98–103.


REFERENCES 275
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