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Science Signaling
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January 28, 2010
Proteomics modifies our understanding of cell cycle complexity
Mark C Hall
Molecules (Basel, Switzerland)
|
May 13, 2023
Phosphoproteomic Approaches for Identifying Phosphatase and Kinase Substrates
Andrew G DeMarco, Mark C Hall
Journal of Cell Science
|
July 1, 2017
Re-examining the role of Cdc14 phosphatase in reversal of Cdk phosphorylation during mitotic exit
Brendan L Powers, Mark C Hall
The Journal of Biological Chemistry
|
November 22, 2001
Differential ATP binding and intrinsic ATP hydrolysis by amino-terminal domains of the yeast Mlh1 and Pms1 proteins
Mark C Hall, Polina V Shcherbakova, Thomas A Kunkel
Frontiers in Cell and Developmental Biology
|
September 5, 2024
Inducible degradation-coupled phosphoproteomics identifies PP2A<sup>Rts1</sup> as a novel eisosome regulator
Andrew G DeMarco, Marcella G Dibble, Mark C Hall
Cell Cycle (Georgetown, Tex.)
|
October 7, 2004
Multi-kinase phosphorylation of the APC/C activator Cdh1 revealed by mass spectrometry
Mark C Hall, Erin N Warren, Christoph H Borchers
Biorxiv : the Preprint Server for Biology
|
November 14, 2023
Inducible degradation-coupled phosphoproteomics identifies PP2A<sup>Rts1</sup> as a novel eisosome regulator
Andrew G DeMarco, Marcella G Dibble, Mark C Hall
Methods in Molecular Biology (Clifton, N.J.)
|
November 10, 2016
A Substrate Trapping Method for Identification of Direct Cdc14 Phosphatase Targets
Brendan L Powers, Hana Hall, Harry Charbonneau, et al.
Cell Cycle (Georgetown, Tex.)
|
December 23, 2011
Acm1 contributes to nuclear positioning by inhibiting Cdh1-substrate interactions
Juan S Martinez, Hana Hall, Matthew D Bartolowits, et al.
Proteomics
|
November 4, 2010
Use of selected reaction monitoring data for label-free quantification of protein modification stoichiometry
Deepa Balasubramaniam, Christie L Eissler, Cynthia V Stauffacher, et al.
Page
of 6
Search research articles
Search
Showing results (1-10 of 56) with videos related to
Sort By:
Page
of 6
Science Signaling
|
January 28, 2010
Proteomics modifies our understanding of cell cycle complexity
Mark C Hall
Molecules (Basel, Switzerland)
|
May 13, 2023
Phosphoproteomic Approaches for Identifying Phosphatase and Kinase Substrates
Andrew G DeMarco, Mark C Hall
Journal of Cell Science
|
July 1, 2017
Re-examining the role of Cdc14 phosphatase in reversal of Cdk phosphorylation during mitotic exit
Brendan L Powers, Mark C Hall
The Journal of Biological Chemistry
|
November 22, 2001
Differential ATP binding and intrinsic ATP hydrolysis by amino-terminal domains of the yeast Mlh1 and Pms1 proteins
Mark C Hall, Polina V Shcherbakova, Thomas A Kunkel
Frontiers in Cell and Developmental Biology
|
September 5, 2024
Inducible degradation-coupled phosphoproteomics identifies PP2A<sup>Rts1</sup> as a novel eisosome regulator
Andrew G DeMarco, Marcella G Dibble, Mark C Hall
Cell Cycle (Georgetown, Tex.)
|
October 7, 2004
Multi-kinase phosphorylation of the APC/C activator Cdh1 revealed by mass spectrometry
Mark C Hall, Erin N Warren, Christoph H Borchers
Biorxiv : the Preprint Server for Biology
|
November 14, 2023
Inducible degradation-coupled phosphoproteomics identifies PP2A<sup>Rts1</sup> as a novel eisosome regulator
Andrew G DeMarco, Marcella G Dibble, Mark C Hall
Methods in Molecular Biology (Clifton, N.J.)
|
November 10, 2016
A Substrate Trapping Method for Identification of Direct Cdc14 Phosphatase Targets
Brendan L Powers, Hana Hall, Harry Charbonneau, et al.
Cell Cycle (Georgetown, Tex.)
|
December 23, 2011
Acm1 contributes to nuclear positioning by inhibiting Cdh1-substrate interactions
Juan S Martinez, Hana Hall, Matthew D Bartolowits, et al.
Proteomics
|
November 4, 2010
Use of selected reaction monitoring data for label-free quantification of protein modification stoichiometry
Deepa Balasubramaniam, Christie L Eissler, Cynthia V Stauffacher, et al.
Page
of 6