Protein Allostery and Catalysis Beyond Bragg Diffraction

NIH RePORTER · NIH · R35 · $386,896 · view on reporter.nih.gov ↗

Abstract

Abstract What are the structural dynamics involved in protein allostery and catalysis? How do flexible enzymes perform challenging chemistry? Can we animate crystal structures of proteins? These are outstanding questions in bi- ology, which motivate studies of proteins in motion. Capturing proteins in action is the next frontier of structural enzymology. By working at the interface of biochemistry and physical chemistry, we aim to go beyond the stat- ic picture of enzymes that is obtained by traditional Bragg diffraction and instead recover dynamic information with non-conventional X-ray scattering and diffraction approaches. We are particularly interested in enzymes of biomedical importance that have been challenging to study by traditional methods, such as drug targets that are allosterically regulated and enzymes that complex mechanisms to synthesize natural products with phar- maceutical potential.

Key facts

NIH application ID
9985910
Project number
5R35GM124847-04
Recipient
CORNELL UNIVERSITY
Principal Investigator
Nozomi Ando
Activity code
R35
Funding institute
NIH
Fiscal year
2020
Award amount
$386,896
Award type
5
Project period
2017-08-01 → 2022-07-31