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Gary D Bader

Showing results (251-260 of 281) with videos related to

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Cell Stem Cell|June 8, 2019
The Mitochondrial Transacylase, Tafazzin, Regulates AML Stemness by Modulating Intracellular Levels of PhospholipidsAyesh K Seneviratne, Mingjing Xu, Juan J Aristizabal Henao, et al.
Science (New York, N.Y.)|April 12, 2014
Mapping the cellular response to small molecules using chemogenomic fitness signaturesAnna Y Lee, Robert P St Onge, Michael J Proctor, et al.
Genome Biology|January 14, 2010
NetPath: a public resource of curated signal transduction pathwaysKumaran Kandasamy, S Sujatha Mohan, Rajesh Raju, et al.
Nature|January 24, 2002
Systematic identification of protein complexes in Saccharomyces cerevisiae by mass spectrometryYuen Ho, Albrecht Gruhler, Adrian Heilbut, et al.
Science (New York, N.Y.)|February 7, 2004
Global mapping of the yeast genetic interaction networkAmy Hin Yan Tong, Guillaume Lesage, Gary D Bader, et al.
Nature Communications|February 13, 2021
PRMT5 inhibition disrupts splicing and stemness in glioblastomaPatty Sachamitr, Jolene C Ho, Felipe E Ciamponi, et al.
Science (New York, N.Y.)|January 23, 2010
The genetic landscape of a cellMichael Costanzo, Anastasia Baryshnikova, Jeremy Bellay, et al.
Arxiv|March 4, 2025
From FAIR to CURE: Guidelines for Computational Models of Biological SystemsHerbert M Sauro, Eran Agmon, Michael L Blinov, et al.
NPJ Systems Biology and Applications|March 27, 2026
From FAIR to CURE: guidelines for computational models of biological systemsHerbert M Sauro, Eran Agmon, Michael L Blinov, et al.
Genome Biology|March 15, 2025
A single-nucleus and spatial transcriptomic atlas of the COVID-19 liver reveals topological, functional, and regenerative organ disruption in patientsYered Pita-Juarez, Dimitra Karagkouni, Nikolaos Kalavros, et al.
Pageof 29

Showing results (251-260 of 281) with videos related to

Sort By:
Pageof 29
Cell Stem Cell|June 8, 2019
The Mitochondrial Transacylase, Tafazzin, Regulates AML Stemness by Modulating Intracellular Levels of PhospholipidsAyesh K Seneviratne, Mingjing Xu, Juan J Aristizabal Henao, et al.
Science (New York, N.Y.)|April 12, 2014
Mapping the cellular response to small molecules using chemogenomic fitness signaturesAnna Y Lee, Robert P St Onge, Michael J Proctor, et al.
Genome Biology|January 14, 2010
NetPath: a public resource of curated signal transduction pathwaysKumaran Kandasamy, S Sujatha Mohan, Rajesh Raju, et al.
Nature|January 24, 2002
Systematic identification of protein complexes in Saccharomyces cerevisiae by mass spectrometryYuen Ho, Albrecht Gruhler, Adrian Heilbut, et al.
Science (New York, N.Y.)|February 7, 2004
Global mapping of the yeast genetic interaction networkAmy Hin Yan Tong, Guillaume Lesage, Gary D Bader, et al.
Nature Communications|February 13, 2021
PRMT5 inhibition disrupts splicing and stemness in glioblastomaPatty Sachamitr, Jolene C Ho, Felipe E Ciamponi, et al.
Science (New York, N.Y.)|January 23, 2010
The genetic landscape of a cellMichael Costanzo, Anastasia Baryshnikova, Jeremy Bellay, et al.
Arxiv|March 4, 2025
From FAIR to CURE: Guidelines for Computational Models of Biological SystemsHerbert M Sauro, Eran Agmon, Michael L Blinov, et al.
NPJ Systems Biology and Applications|March 27, 2026
From FAIR to CURE: guidelines for computational models of biological systemsHerbert M Sauro, Eran Agmon, Michael L Blinov, et al.
Genome Biology|March 15, 2025
A single-nucleus and spatial transcriptomic atlas of the COVID-19 liver reveals topological, functional, and regenerative organ disruption in patientsYered Pita-Juarez, Dimitra Karagkouni, Nikolaos Kalavros, et al.
Pageof 29