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Neurobiology of Disease|April 7, 2018
Genetic enhancement of macroautophagy in vertebrate models of neurodegenerative diseasesPatrick Ejlerskov, Avraham Ashkenazi, David C Rubinsztein
Current Opinion in Cell Biology|January 5, 2010
Cytoprotective roles for autophagyKevin Moreau, Shouqing Luo, David C Rubinsztein
Cell|September 3, 2011
Autophagy and agingDavid C Rubinsztein, Guillermo Mariño, Guido Kroemer
Autophagy|January 21, 2020
IFNB/interferon-β regulates autophagy via a MIR1-TBC1D15-RAB7 pathwayPatrick Ejlerskov, David C Rubinsztein, Roger Pocock
Human Molecular Genetics|April 30, 2002
Aggregate-prone proteins with polyglutamine and polyalanine expansions are degraded by autophagyBrinda Ravikumar, Rainer Duden, David C Rubinsztein
FEBS Letters|May 15, 2013
Biology and trafficking of ATG9 and ATG16L1, two proteins that regulate autophagosome formationEszter Zavodszky, Mariella Vicinanza, David C Rubinsztein
Trends in Molecular Medicine|July 14, 2021
Breakthroughs and bottlenecks in autophagy researchNoboru Mizushima, Eileen White, David C Rubinsztein
Open Biology|October 26, 2018
Seeing is believing: methods to monitor vertebrate autophagy in vivoAna Lopez, Angeleen Fleming, David C Rubinsztein
Trends in Cell Biology|March 6, 2025
Autophagy-dependent versus autophagy-independent ferroptosisYe Zhu, Motoki Fujimaki, David C Rubinsztein
Neuroscience Letters|September 25, 2002
The bacterial chaperonin GroEL requires GroES to reduce aggregation and cell death in a COS-7 cell model of Huntington's diseaseJenny Carmichael, Coralie Vacher, David C Rubinsztein
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