Mehrabi_2019_Science_365_1167

Reference

Title : Time-resolved crystallography reveals allosteric communication aligned with molecular breathing - Mehrabi_2019_Science_365_1167
Author(s) : Mehrabi P , Schulz EC , Dsouza R , Muller-Werkmeister HM , Tellkamp F , Miller RJD , Pai EF
Ref : Science , 365 :1167 , 2019
Abstract :

A comprehensive understanding of protein function demands correlating structure and dynamic changes. Using time-resolved serial synchrotron crystallography, we visualized half-of-the-sites reactivity and correlated molecular-breathing motions in the enzyme fluoroacetate dehalogenase. Eighteen time points from 30 milliseconds to 30 seconds cover four turnover cycles of the irreversible reaction. They reveal sequential substrate binding, covalent-intermediate formation, setup of a hydrolytic water molecule, and product release. Small structural changes of the protein mold and variations in the number and placement of water molecules accompany the various chemical steps of catalysis. Triggered by enzyme-ligand interactions, these repetitive changes in the protein framework's dynamics and entropy constitute crucial components of the catalytic machinery.

PubMedSearch : Mehrabi_2019_Science_365_1167
PubMedID: 31515393
Gene_locus related to this paper: rhopa-q6nam1

Related information

Inhibitor Glycolate
Substrate Fluoroacetate
Gene_locus rhopa-q6nam1
Structure 6QHT    6QHQ    6QHV    6QHU    6QHX    6QHW    6QHZ    6QHY    6QHS    6QHP    6QI1    6QI0    6QI3    6QI2

Citations formats

Mehrabi P, Schulz EC, Dsouza R, Muller-Werkmeister HM, Tellkamp F, Miller RJD, Pai EF (2019)
Time-resolved crystallography reveals allosteric communication aligned with molecular breathing
Science 365 :1167

Mehrabi P, Schulz EC, Dsouza R, Muller-Werkmeister HM, Tellkamp F, Miller RJD, Pai EF (2019)
Science 365 :1167