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Motomasa Tanaka

Showing results (1-10 of 40) with videos related to

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Methods in Enzymology|October 16, 2010
A protein transformation protocol for introducing yeast prion particles into yeastMotomasa Tanaka
Prion|November 3, 2012
Expanding the yeast prion world: Active prion conversion of non-glutamine/asparagine-rich Mod5 for cell survivalGenjiro Suzuki, Motomasa Tanaka
Proceedings of the National Academy of Sciences of the United States of America|April 13, 2019
Distinct segregation patterns of yeast cell-peripheral proteins uncovered by a method for protein segregatome analysisShinju Sugiyama, Motomasa Tanaka
Journal of Biochemistry|April 9, 2014
Self-propagating amyloid as a critical regulator for diverse cellular functionsShinju Sugiyama, Motomasa Tanaka
Cell Reports|April 12, 2018
Genome-wide Translation Profiling by Ribosome-Bound tRNA CaptureChien-Wen Chen, Motomasa Tanaka
Methods in Enzymology|October 19, 2006
An efficient protein transformation protocol for introducing prions into yeastMotomasa Tanaka, Jonathan S Weissman
Autophagy|July 9, 2019
Autophagy links MTOR and GABA signaling in the brainKelvin K Hui, Motomasa Tanaka
Journal of Molecular Medicine (Berlin, Germany)|March 11, 2005
A novel therapeutic strategy for polyglutamine diseases by stabilizing aggregation-prone proteins with small moleculesMotomasa Tanaka, Yoko Machida, Nobuyuki Nukina
Science (New York, N.Y.)|April 21, 2012
A yeast prion, Mod5, promotes acquired drug resistance and cell survival under environmental stressGenjiro Suzuki, Naoyuki Shimazu, Motomasa Tanaka
Molecular Cell|November 23, 2015
[KIL-d] Protein Element Confers Antiviral Activity via Catastrophic Viral MutagenesisGenjiro Suzuki, Jonathan S Weissman, Motomasa Tanaka
Pageof 4

Showing results (1-10 of 40) with videos related to

Sort By:
Pageof 4
Methods in Enzymology|October 16, 2010
A protein transformation protocol for introducing yeast prion particles into yeastMotomasa Tanaka
Prion|November 3, 2012
Expanding the yeast prion world: Active prion conversion of non-glutamine/asparagine-rich Mod5 for cell survivalGenjiro Suzuki, Motomasa Tanaka
Proceedings of the National Academy of Sciences of the United States of America|April 13, 2019
Distinct segregation patterns of yeast cell-peripheral proteins uncovered by a method for protein segregatome analysisShinju Sugiyama, Motomasa Tanaka
Journal of Biochemistry|April 9, 2014
Self-propagating amyloid as a critical regulator for diverse cellular functionsShinju Sugiyama, Motomasa Tanaka
Cell Reports|April 12, 2018
Genome-wide Translation Profiling by Ribosome-Bound tRNA CaptureChien-Wen Chen, Motomasa Tanaka
Methods in Enzymology|October 19, 2006
An efficient protein transformation protocol for introducing prions into yeastMotomasa Tanaka, Jonathan S Weissman
Autophagy|July 9, 2019
Autophagy links MTOR and GABA signaling in the brainKelvin K Hui, Motomasa Tanaka
Journal of Molecular Medicine (Berlin, Germany)|March 11, 2005
A novel therapeutic strategy for polyglutamine diseases by stabilizing aggregation-prone proteins with small moleculesMotomasa Tanaka, Yoko Machida, Nobuyuki Nukina
Science (New York, N.Y.)|April 21, 2012
A yeast prion, Mod5, promotes acquired drug resistance and cell survival under environmental stressGenjiro Suzuki, Naoyuki Shimazu, Motomasa Tanaka
Molecular Cell|November 23, 2015
[KIL-d] Protein Element Confers Antiviral Activity via Catastrophic Viral MutagenesisGenjiro Suzuki, Jonathan S Weissman, Motomasa Tanaka
Pageof 4