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Masanori Izumi

Showing results (1-10 of 61) with videos related to

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Autophagy|May 27, 2017
Vacuolar digestion of entire damaged chloroplasts in Arabidopsis thaliana is accomplished by chlorophagyMasanori Izumi, Sakuya Nakamura
Plant Signaling & Behavior|December 17, 2020
Chlorophagy does not require PLANT U-BOX4-mediated ubiquitinationSakuya Nakamura, Masanori Izumi
Plant & Cell Physiology|May 17, 2018
Regulation of Chlorophagy during Photoinhibition and Senescence: Lessons from MitophagySakuya Nakamura, Masanori Izumi
Plant Signaling & Behavior|October 18, 2017
Partial or entire: Distinct responses of two types of chloroplast autophagyMasanori Izumi, Sakuya Nakamura
International Journal of Molecular Sciences|March 15, 2018
Chloroplast Protein Turnover: The Influence of Extraplastidic Processes, Including AutophagyMasanori Izumi, Sakuya Nakamura
Plant Signaling & Behavior|April 19, 2011
The changes of leaf carbohydrate contents as a regulator of autophagic degradation of chloroplasts via Rubisco-containing bodies during leaf senescenceMasanori Izumi, Hiroyuki Ishida
Neuroscience Letters|April 3, 2007
Neuroprotective effects of phenylenediamine derivatives independent of an antioxidant pathway in neuronal HT22 cellsTakumi Satoh, Masanori Izumi
Plant Signaling & Behavior|December 22, 2018
Chlorophagy is ATG gene-dependent microautophagy processSakuya Nakamura, Masanori Izumi
Plant Signaling & Behavior|December 4, 2018
An additional role for chloroplast proteins-an amino acid reservoir for energy production during sugar starvationMasanori Izumi, Hiroyuki Ishida
Frontiers in Plant Science|April 11, 2019
Autophagic Turnover of Chloroplasts: Its Roles and Regulatory Mechanisms in Response to Sugar StarvationMasanori Izumi, Sakuya Nakamura, Nan Li
Pageof 7

Showing results (1-10 of 61) with videos related to

Sort By:
Pageof 7
Autophagy|May 27, 2017
Vacuolar digestion of entire damaged chloroplasts in Arabidopsis thaliana is accomplished by chlorophagyMasanori Izumi, Sakuya Nakamura
Plant Signaling & Behavior|December 17, 2020
Chlorophagy does not require PLANT U-BOX4-mediated ubiquitinationSakuya Nakamura, Masanori Izumi
Plant & Cell Physiology|May 17, 2018
Regulation of Chlorophagy during Photoinhibition and Senescence: Lessons from MitophagySakuya Nakamura, Masanori Izumi
Plant Signaling & Behavior|October 18, 2017
Partial or entire: Distinct responses of two types of chloroplast autophagyMasanori Izumi, Sakuya Nakamura
International Journal of Molecular Sciences|March 15, 2018
Chloroplast Protein Turnover: The Influence of Extraplastidic Processes, Including AutophagyMasanori Izumi, Sakuya Nakamura
Plant Signaling & Behavior|April 19, 2011
The changes of leaf carbohydrate contents as a regulator of autophagic degradation of chloroplasts via Rubisco-containing bodies during leaf senescenceMasanori Izumi, Hiroyuki Ishida
Neuroscience Letters|April 3, 2007
Neuroprotective effects of phenylenediamine derivatives independent of an antioxidant pathway in neuronal HT22 cellsTakumi Satoh, Masanori Izumi
Plant Signaling & Behavior|December 22, 2018
Chlorophagy is ATG gene-dependent microautophagy processSakuya Nakamura, Masanori Izumi
Plant Signaling & Behavior|December 4, 2018
An additional role for chloroplast proteins-an amino acid reservoir for energy production during sugar starvationMasanori Izumi, Hiroyuki Ishida
Frontiers in Plant Science|April 11, 2019
Autophagic Turnover of Chloroplasts: Its Roles and Regulatory Mechanisms in Response to Sugar StarvationMasanori Izumi, Sakuya Nakamura, Nan Li
Pageof 7