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The Discovery of a Novel Autophagy Pathway


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

4j A. Kuma, M. Hatano, M. Matsui, et al., gThe role of autophagy during the early neonatal starvation periodh, Nature, 2004, 432, 1032-1036.

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

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

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

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

9j J. Park, Y. Kim and J. Chung, gMitochondrial dysfunction and Parkinson's disease genesFinsights from Drosophilah, Dis. Model Mech., 2009, 2, 336-340.

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

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

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

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

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