9 People Results for the Tag: Forster Resonance Energy Transfer

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Mark Hedglin

Assistant Professor of Chemistry; Assistant Professor of Biochemistry and Molecular Biology
Deciphering how efficient and faithful replication of the human genome is achieved within the highly-complex, dynamic, and reactive environment of the nucleus. Identifying pathways for genomic instability in humans, identifying novel oncogenic drug targets, developing better chemotherapeutic treatments for human cancers caused by genomic instability.

Tae-Hee Lee

Professor of Chemistry
Single-molecule biophysics of the nucleosome and chromatin

Joseph Reese

Professor of Biochemistry and Molecular Biology
Gene regulation in cell cycle and DNA damage control; regulation of DNA damage-induced transcription.

Xin Zhang

Assistant Professor of Chemistry; Assistant Professor of Biochemistry and Molecular Biology; Paul Berg Early Career Professorship in the Eberly College of Science
Developing chemical tools to monitor cellular stresses that influence protein folding in real time. Deciphering how the energy landscapes associated with proper protein folding and function are regulated by the cellular folding environment. Examining how this regulation leads to significant biological consequences.

Jean-Paul Armache

Assistant Professor of of Biochemistry and Molecular Biology
The mechanisms and functions of ATP-dependent chromatin remodeling complexes and their place in gene regulation.

Center for Infectious Disease Dynamics

Stephen Benkovic

Evan Pugh University Professor and Eberly Chair in Chemistry

Ruobo Zhou

Assistant Professor of Chemistry
Quantitatively and functionally understanding the compartmentalization and spatiotemporal organization of protein-protein and protein-RNA interactions involved in fundamental cell functions as well as in cancer and neurodegenerative diseases.