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Juan I Sbodio

Showing results (1-10 of 21) with videos related to

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The Journal of Biological Chemistry|August 23, 2007
Identification of a redox-sensitive cysteine in GCP60 that regulates its interaction with golgin-160Juan I Sbodio, Carolyn E Machamer
The Journal of Biological Chemistry|June 25, 2002
Identification of a tankyrase-binding motif shared by IRAP, TAB182, and human TRF1 but not mouse TRF1. NuMA contains this RXXPDG motif and is a novel tankyrase partnerJuan I Sbodio, Nai-Wen Chi
Antioxidants & Redox Signaling|April 11, 2018
Redox Mechanisms in Neurodegeneration: From Disease Outcomes to Therapeutic OpportunitiesJuan I Sbodio, Solomon H Snyder, Bindu D Paul
Proceedings of the National Academy of Sciences of the United States of America|January 11, 2018
Golgi stress response reprograms cysteine metabolism to confer cytoprotection in Huntington's diseaseJuan I Sbodio, Solomon H Snyder, Bindu D Paul
Proceedings of the National Academy of Sciences of the United States of America|July 21, 2016
Transcriptional control of amino acid homeostasis is disrupted in Huntington's diseaseJuan I Sbodio, Solomon H Snyder, Bindu D Paul
British Journal of Pharmacology|July 15, 2018
Regulators of the transsulfuration pathwayJuan I Sbodio, Solomon H Snyder, Bindu D Paul
The Biochemical Journal|January 23, 2002
Tankyrase-2 oligomerizes with tankyrase-1 and binds to both TRF1 (telomere-repeat-binding factor 1) and IRAP (insulin-responsive aminopeptidase)Juan I Sbodio, Harvey F Lodish, Nai-Wen Chi
Trends in Pharmacological Sciences|March 14, 2018
Cysteine Metabolism in Neuronal Redox HomeostasisBindu D Paul, Juan I Sbodio, Solomon H Snyder
Antioxidants (Basel, Switzerland)|August 26, 2022
Mutant Huntingtin Derails Cysteine Metabolism in Huntington's Disease at Both Transcriptional and Post-Translational LevelsBindu D Paul, Juan I Sbodio, Solomon H Snyder
Biochemical and Biophysical Research Communications|October 10, 2006
Mitotic phosphorylation of tankyrase, a PARP that promotes spindle assembly, by GSK3Tsung-Yin J Yeh, Juan I Sbodio, Nai-Wen Chi
Pageof 3

Showing results (1-10 of 21) with videos related to

Sort By:
Pageof 3
The Journal of Biological Chemistry|August 23, 2007
Identification of a redox-sensitive cysteine in GCP60 that regulates its interaction with golgin-160Juan I Sbodio, Carolyn E Machamer
The Journal of Biological Chemistry|June 25, 2002
Identification of a tankyrase-binding motif shared by IRAP, TAB182, and human TRF1 but not mouse TRF1. NuMA contains this RXXPDG motif and is a novel tankyrase partnerJuan I Sbodio, Nai-Wen Chi
Antioxidants & Redox Signaling|April 11, 2018
Redox Mechanisms in Neurodegeneration: From Disease Outcomes to Therapeutic OpportunitiesJuan I Sbodio, Solomon H Snyder, Bindu D Paul
Proceedings of the National Academy of Sciences of the United States of America|January 11, 2018
Golgi stress response reprograms cysteine metabolism to confer cytoprotection in Huntington's diseaseJuan I Sbodio, Solomon H Snyder, Bindu D Paul
Proceedings of the National Academy of Sciences of the United States of America|July 21, 2016
Transcriptional control of amino acid homeostasis is disrupted in Huntington's diseaseJuan I Sbodio, Solomon H Snyder, Bindu D Paul
British Journal of Pharmacology|July 15, 2018
Regulators of the transsulfuration pathwayJuan I Sbodio, Solomon H Snyder, Bindu D Paul
The Biochemical Journal|January 23, 2002
Tankyrase-2 oligomerizes with tankyrase-1 and binds to both TRF1 (telomere-repeat-binding factor 1) and IRAP (insulin-responsive aminopeptidase)Juan I Sbodio, Harvey F Lodish, Nai-Wen Chi
Trends in Pharmacological Sciences|March 14, 2018
Cysteine Metabolism in Neuronal Redox HomeostasisBindu D Paul, Juan I Sbodio, Solomon H Snyder
Antioxidants (Basel, Switzerland)|August 26, 2022
Mutant Huntingtin Derails Cysteine Metabolism in Huntington's Disease at Both Transcriptional and Post-Translational LevelsBindu D Paul, Juan I Sbodio, Solomon H Snyder
Biochemical and Biophysical Research Communications|October 10, 2006
Mitotic phosphorylation of tankyrase, a PARP that promotes spindle assembly, by GSK3Tsung-Yin J Yeh, Juan I Sbodio, Nai-Wen Chi
Pageof 3