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The Discovery of a Novel Autophagy Pathway


1j N. Mizushima, gPhysiological functions of autophagyh, Curr. Top Microbiol. Immunol., 2009, 335, 71-84.

2j H. Nakatogawa, K. Suzuki, Y. Kamada, et al. gDynamics and diversity in autophagy mechanisms: lessons from yeasth, Nature Rev. Mol. Cell Biol., 2009, 10, 458-467.

3j Z. Yang and D. J. Klionsky, gAn overview of the molecular mechanism of autophagyh, Curr. Top Microbiol. Immunol., 2009, 335, 1-32.

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5j Y. Nishida, S. Arakawa, K. Fujitani, et al., gDiscovery of Atg5/Atg7-independent alternative macroautophagyh, Nature, 2009, 461, 654-658.

6j H. Yamaguchi, S. Arakawa, T. Kaneseki, et al., gGolgi membrane-associated degradation pathway in yeast and mammalsh, EMBO J., 2016, 35, 1991-2007.

7j S. Honda, S. Arakawa, Y. Nishida, et al., gUlk1-mediated Atg5-independent macroautophagy mediates elimination of mitochondria from embryonic reticulocytesh, Nature Commun., 2014, 5, 4004.

8j I. Martin, V. L. Dawson and T. M. Dawson, gRecent advances in the genetics of
Parkinson's diseaseh, Annu. Rev. Genomics Hum. Genet., 2011, 12, 301-325.

9j J. Park, Y. Kim and J. Chung, gMitochondrial dysfunction and Parkinson's disease genesFinsights from Drosophilah, Dis. Model Mech., 2009, 2, 336-340.

10j H. Li and M. Guo, gProtein Degradation in Parkinson Disease Revisited: It's Complexh, J. Clinical Invest., 2009, 119, 442-445.

11j D. Narendra, A. Tanaka, D. F. Suen, et al., gParkin is recruited selectively to impaired mitochondria and promotes their autophagyh, J. Cell Biol., 2008, 183, 795-803.

12j D. Narendra, S. M. Jin, A. Tanaka, et al., gPINK1 is selectively stabilized on impaired mitochondria to activate Parkinh, PLoS Biol., 2010, 8, e1000298.

13j N. Matsuda, S. Sato, K. Shiba, et al., gPINK1 stabilized by mitochondrial depolarization recruits Parkin to damaged mitochondria and activates latent Parkin for mitophagyh, J. Cell Biol., 2010, 189, 211-221.

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