| 1. |
Yorimitsu, T., and Klionsky, D. J. (2005) Autophagy: molecular machinery for self-eating. Cell Death Differ. 12, 1542–1552.
|
| |
| 2. |
Klionsky, D. J., and Emr, S. D. (2000) Autophagy as a regulated pathway of cellular degradation. Science
290, 1717–1721.
|
| |
| 3. |
Crighton, D., Wilkinson, S., O’Prey, J., et al. (2006) DRAM, a p53-induced modulator of autophagy, is critical for apoptosis.
Cell
126, 121–134.
|
| |
| 4. |
Kessel, D., and Reiners, J. J., Jr. (2006) Initiation of apoptosis and autophagy by the Bcl-2 antagonist HA14–1. Cancer Lett. 18, 18.
|
| |
| 5. |
Xue, L., Fletcher, G. C., and Tolkovsky, A. M. (1999) Autophagy is activated by apoptotic signalling in sympathetic neurons:
an alternative mechanism of death execution. Mol. Cell Neurosci. 14, 180–198.
|
| |
| 6. |
Bampton, E. T. W., Goemans, C. G., Niranjan, D., Mizushima, N., and Tolkovsky, A. M. (2005) The dynamics of autophagy visualised
in live cells; from autophagosome formation to fusion with endo/lysosomes. Autophagy
1, 23–36.
|
| |
| 7. |
Ashford, T. P., and Porter, K. R. (1962) Cytoplasmic components in hepatic cell lysosomes. J. Cell Biol. 12, 198–202.
|
| |
| 8. |
Mizushima, N., Yamamoto, A., Matsui, M., Yoshimori, T., and Ohsumi, Y. (2004) In vivo analysis of autophagy in response to
nutrient starvation using transgenic mice expressing a fluorescent autophagosome marker. Mol. Biol. Cell. 15,1101–1111. Epub 2003 December 29.
|
| |
| 9. |
Momoi, T. (2006) Conformational diseases and ER stress-mediated cell death: apoptotic cell death and autophagic cell death.
Curr. Mol. Med. 6, 111–118.
|
| |
| 10. |
Thorburn, J., Moore, F., Rao, A., et al. (2005) Selective inactivation of a Fas-associated death domain protein (FADD)-dependent
apoptosis and autophagy pathway in immortal epithelial cells. Mol. Biol. Cell. 16, 1189–1199.
|
| |
| 11. |
Pattingre, S., Tassa, A., Qu, X., et al. (2005) Bcl-2 antiapoptotic proteins inhibit Beclin 1-dependent autophagy. Cell
122, 927–939.
|
| |
| 12. |
Ogata, M., Hino, S., Saito, A., et al. (2006) Autophagy is activated for cell survival after endoplasmic reticulum stress.
Mol. Cell Biol. 26, 9220–9231.
|
| |
| 13. |
Yorimitsu, T., and Klionsky, D. J. (2007) Endoplasmic reticulum stress: a new pathway to induce autophagy. Autophagy. 3, 160–162.
|
| |
| 14. |
Bernales, S., McDonald, K. L., and Walter, P. (2006) Autophagy counterbalances endoplasmic reticulum expansion during the
unfolded protein response. PLoS Biol. 4, e423.
|
| |
| 15. |
Buytaert, E., Callewaert, G., Vandenheede, J. R., and Agostinis, P. (2006) Deficiency in apoptotic effectors Bax and Bak reveals
an autophagic cell death pathway initiated by photodamage to the endoplasmic reticulum. Autophagy
2, 238–240.
|
| |
| 16. |
Enari, M., Sakahira, H., Yokoyama, H., Okawa, K., Iwamatsu, A., and Nagata, S. (1998) A caspase-activated DNase that degrades
DNA during apoptosis, and its inhibitor ICAD. Nature
391, 43–50.
|
| |
| 17. |
Sahara, S., Aoto, M., Eguchi, Y., Imamoto, N., Yoneda, Y., and Tsujimoto, Y. (1999) Acinus is a caspase-3-activated protein
required for apoptotic chromatin condensation. Nature
401, 168–173.
|
| |
| 18. |
Satoh, M. S., and Lindahl, T. (1992) Role of poly(ADP-ribose) formation in DNA repair. Nature
356, 356–358.
|
| |
| 19. |
Lazebnik, Y. A., Kaufmann, S. H., Desnoyers, S., Poirier, G. G., and Earnshaw, W. C. (1994) Cleavage of poly(ADP-ribose) polymerase
by a proteinase with properties like ICE. Nature
371, 346–347.
|
| |
| 20. |
Nicholson, D. W., Ali, A., Thornberry, N. A., et al. (1995) Identification and inhibition of the ICE/CED-3 protease necessary
for mammalian apoptosis. Nature
376, 37–43.
|
| |
| 21. |
Hsu, Y. T., Wolter, K. G., and Youle, R. J. (1997) Cytosol-to-membrane redistribution of Bax and Bcl-X(L) during apoptosis.
Proc. Natl. Acad. Sci. USA
94, 3668–3672.
|
| |
| 22. |
Narita, M., Shimizu, S., Ito, T., et al. (1998) Bax interacts with the permeability transition pore to induce permeability
transition and cytochrome c release in isolated mitochondria. Proc. Natl. Acad. Sci. USA
95, 14681–14686.
|
| |
| 23. |
Garrido, C., Galluzzi, L., Brunet, M., Puig, P. E., Didelot, C., and Kroemer, G. (2006) Mechanisms of cytochrome c release
from mitochondria. Cell Death Differ. 13, 1423–1433. Epub 2006 May 25.
|
| |
| 24. |
Jurgensmeier, J. M., Xie, Z., Deveraux, Q., Ellerby, L., Bredesen, D., and Reed, J. C. (1998) Bax directly induces release
of cytochrome c from isolated mitochondria. Proc. Natl. Acad. Sci. USA
95, 4997–5002.
|
| |
| 25. |
Koopman, G., Reutelingsperger, C. P., Kuijten, G. A., Keehnen, R. M., Pals, S. T., and van Oers, M. H. (1994) Annexin V for
flow cytometric detection of phosphatidylserine expression on B cells undergoing apoptosis. Blood
84,1415–1420.
|
| |
| 26. |
Tanida, I., Ueno, T., and Kominami, E. (2004) LC3 conjugation system in mammalian autophagy. Int. J. Biochem. Cell Biol. 36, 2503–2518.
|
| |
| 27. |
Tanida, I., Minematsu-Ikeguchi, N., Ueno, T., and Kominami, E. (2005) Lysosomal turnover, but not a cellular level, of endogenous
LC3 is a marker for autophagy. Autophagy
1, 84–91.
|
| |
| 28. |
Hsu, Y. T., and Youle, R. J. (1998) Bax in murine thymus is a soluble monomeric protein that displays differential detergent-induced
conformations. J. Biol. Chem. 273, 10777–10783.
|
| |
| 29. |
Hsu, Y. T., and Youle, R. J. (1997) Nonionic detergents induce dimerization among members of the Bcl-2 family. J. Biol. Chem. 272, 13829–13834.
|
| |
| 30. |
Darzynkiewicz, Z., and Bedner, E. (2000) Analysis of apoptotic cells by flow and laser scanning cytometry. Methods Enzymol. 322, 18–39.
|
| |
| 31. |
Berg, T. O., Fengsrud, M., Stromhaug, P. E., Berg, T., and Seglen, P. O. (1998) Isolation and characterization of rat liver
amphisomes. Evidence for fusion of autophagosomes with both early and late endosomes. J. Biol. Chem. 273,21883–21892.
|
| |
| 32. |
Seglen, P. O., Gordon, P. B., Holen, I., and Hoyvik, H. (1991) Hepatocytic autophagy. Biomed. Biochim. Acta
50, 373–381.
|
| |
| 33. |
Tanida, I., Sou, Y. S., Ezaki, J., Minematsu-Ikeguchi, N., Ueno, T., and Kominami, E. (2004) HsAtg4B/HsApg4B/autophagin-1
cleaves the carboxyl termini of three human Atg8 homologues and delipidates microtubule-associated protein light chain 3-
and GABAA receptor-associated protein–phospholipid conjugates. J. Biol. Chem. 279, 36268–36276.
|
| |
| 34. |
Kabeya, Y., Mizushima, N., Ueno, T., et al. (2000) LC3, a mammalian homologue of yeast Apg8p, is localized in autophagosome
membranes after processing. EMBO J. 19, 5720–5728.
|
| |
| 35. |
Kochl, R., Hu, X. W., Chan, E. Y., and Tooze, S. A. (2006) Microtubules facilitate autophagosome formation and fusion of autophagosomes
with endosomes. Traffic
7, 129–145.
|
| |
| 36. |
Eskelinen, E. L., Prescott, A. R., Cooper, J., et al. (2002) Inhibition of autophagy in mitotic animal cells. Traffic
3, 878–893.
|
| |
| 37. |
Nixon, R. A. (2006) Autophagy in neurodegenerative disease: friend, foe or turncoat? Trends Neurosci. 29, 528–535.
|
| |
| 38. |
Levine, B., and Yuan, J. (2005) Autophagy in cell death: an innocent convict? J. Clin. Invest. 115, 2679–2688.
|
| |
| 39. |
Codogno, P., and Meijer, A. J. (2005) Autophagy and signaling: their role in cell survival and cell death. Cell Death Differ. 12, 1509–1518.
|
| |
| 40. |
Tsujimoto, Y., and Shimizu, S. (2005) Another way to die: autophagic programmed cell death. Cell Death Differ. 12, 1528–1534.
|
| |
| 41. |
Kim, K. W., Mutter, R. W., Cao, C., et al. (2006) Autophagy for cancer therapy through inhibition of pro-apoptotic proteins
and mammalian target of rapamycin signaling. J. Biol. Chem. 281, 36883–36890.
|
| |
| 42. |
Scott, R. C., Juhasz, G., and Neufeld, T. P. (2007) Direct induction of autophagy by Atg1 inhibits cell growth and induces
apoptotic cell death. Curr. Biol. 17, 1–11.
|
| |
| 43. |
Seglen, P. O., and Gordon, P. B. (1982) 3-Methyladenine: specific inhibitor of autophagic/lysosomal protein degradation in
isolated rat hepatocytes. Proc. Natl. Acad. Sci. USA
79, 1889–1892.
|
| |
| 44. |
Wurmser, A. E., and Emr, S. D. (2002) Novel PtdIns(3)P-binding protein Etf1 functions as an effector of the Vps34 PtdIns 3-kinase
in autophagy. J. Cell Biol. 158, 761–772. Epub 2002 Aug 19.
|
| |
| 45. |
Kihara, A., Noda, T., Ishihara, N., and Ohsumi, Y. (2001) Two distinct Vps34 phosphatidylinositol 3-kinase complexes function
in autophagy and carboxypeptidase Y sorting in Saccharomyces cerevisiae. J. Cell Biol. 152, 519–530.
|
| |
| 46. |
Caro, L. H., Plomp, P. J., Wolvetang, E. J., Kerkhof, C., and Meijer, A. J. (1988) 3-Methyladenine, an inhibitor of autophagy,
has multiple effects on metabolism. Eur. J. Biochem. 175, 325–329.
|
| |
| 47. |
Petiot, A., Ogier-Denis, E., Blommaart, E. F., Meijer, A. J., and Codogno, P. (2000) Distinct classes of phosphatidylinositol
3’-kinases are involved in signaling pathways that control macroautophagy in HT-29 cells. J. Biol. Chem. 275,992–998.
|
| |