Area of research
Molecular Biology
Research interest
Research interests include Genomics and Chromatin Dynamics, RNA Research and Splicing, Ubiquitin and proteasome pathways, and Protein Kinase Regulation and GTPase Signaling.
Supplementary Figures and Tables from ETV4 Is Necessary for Estrogen Signaling and Growth in Endometrial Cancer Cells
Data from ETV4 Is Necessary for Estrogen Signaling and Growth in Endometrial Cancer Cells
Data from ETV4 Is Necessary for Estrogen Signaling and Growth in Endometrial Cancer Cells
Supplementary Figures and Tables from ETV4 Is Necessary for Estrogen Signaling and Growth in Endometrial Cancer Cells
ETV4 Is Necessary for Estrogen Signaling and Growth in Endometrial Cancer Cells
ETV4 Is Necessary for Estrogen Signaling and Growth in Endometrial Cancer Cells.
The Biophysical Basis for Phosphorylation-Enhanced DNA-Binding Autoinhibition of the ETS1 Transcription Factor
Electrostatic repulsion causes anticooperative DNA binding between tumor suppressor ETS transcription factors and JUN–FOS at composite DNA sites
Development of High-Throughput Screening Assays for Inhibitors of ETS Transcription Factors
Structured and disordered regions cooperatively mediate DNA-binding autoinhibition of ETS factors ETV1, ETV4 and ETV5
ETV4 and AP1 Transcription Factors Form Multivalent Interactions with three Sites on the MED25 Activator-Interacting Domain
Pask integrates hormonal signaling with histone modification via Wdr5 phosphorylation to drive myogenesis
Autoinhibition of ETV6 DNA Binding Is Established by the Stability of Its Inhibitory Helix
Conformational Dynamics and the Binding of Specific and Nonspecific DNA by the Autoinhibited Transcription Factor Ets-1
Interaction of the Jhd2 Histone H3 Lys-4 Demethylase with Chromatin Is Controlled by Histone H2A Surfaces and Restricted by H2B Ubiquitination
Synergy of aromatic residues and phosphoserines within the intrinsically disordered DNA-binding inhibitory elements of the Ets-1 transcription factor
Steric Mechanism of Auto-Inhibitory Regulation of Specific and Non-Specific DNA Binding by the ETS Transcriptional Repressor ETV6
Gene Deregulation and Chronic Activation in Natural Killer Cells Deficient in the Transcription Factor ETS1
Autoinhibition of ETV6 (TEL) DNA Binding: Appended Helices Sterically Block the ETS Domain