Area of research
Molecular Biology · Cell Biology
Research interest
Research interests include Biology, Phosphatase, Phosphorylation, Cell biology, Protein phosphatase 1, and Protein subunit.
Structure-Guided Exploration of SDS22 Interactions with Protein Phosphatase PP1 and the Splicing Factor BCLAF1
Functions and therapeutic potential of protein phosphatase 1: Insights from mouse genetics
A substrate-trapping strategy for protein phosphatase PP1 holoenzymes using hypoactive subunit fusions
An Attachment-Independent Biochemical Timer of the Spindle Assembly Checkpoint
Split‐BioID: a proximity biotinylation assay for dimerization‐dependent protein interactions
Post-translational Control of the Temporal Dynamics of Transcription Factor Activity Regulates Neurogenesis
The transcription factor ERG recruits CCR4–NOT to control mRNA decay and mitotic progression
Cdk1 orders mitotic events through coordination of a chromosome-associated phosphatase switch
MELK-T1, a small-molecule inhibitor of protein kinase MELK, decreases DNA-damage tolerance in proliferating cancer cells
Irradiation of necrotic cancer cells, employed for pulsing dendritic cells (DCs), potentiates DC vaccine-induced antitumor immunity against high-grade glioma
Inhibitor‐3 ensures bipolar mitotic spindle attachment by limiting association of SDS22 with kinetochore‐bound protein phosphatase‐1
Methylation of PITX2, HOXD3, RASSF1 and TDRD1 predicts biochemical recurrence in high-risk prostate cancer
MELK-Dependent FOXM1 Phosphorylation is Essential for Proliferation of Glioma Stem Cells
Identification of protein phosphatase 1 as a regulator of the LRRK2 phosphorylation cycle
Aurora B Defines Its Own Chromosomal Targeting by Opposing the Recruitment of the Phosphatase Scaffold Repo-Man
Maternal Embryonic Leucine Zipper Kinase (MELK) Reduces Replication Stress in Glioblastoma Cells
The PP1 binding code: a molecular‐lego strategy that governs specificity
AMP-activated protein kinase phosphorylates and inactivates liver glycogen synthase
Development of a Peptide that Selectively Activates Protein Phosphatase‐1 in Living Cells
The Molecular Basis for Substrate Specificity of the Nuclear NIPP1:PP1 Holoenzyme
CDK2 Regulates HIV-1 Transcription by Phosphorylation of CDK9 on Serine 90
NIPP1 maintains EZH2 phosphorylation and promoter occupancy at proliferation-related target genes
The guanine-nucleotide-exchange factor P-Rex1 is activated by protein phosphatase 1α