NASA Logo

NTRS

NTRS - NASA Technical Reports Server

Back to Results
CryoEM Structures of the Nitrogenase Complex During Catalytic TurnoverThe enzyme nitrogenase couples adenosine triphosphate (ATP) hydrolysis to the multi-electron reduction of atmospheric dinitrogen into ammonia. Despite extensive research, the mechanistic details of ATP-dependent energy transduction and dinitrogen reduction by nitrogenase are not well understood, requiring new strategies to monitor its structural dynamics during catalytic action. Here we report the cryogenic electron microscopic interrogation of the nitrogenase complex under enzymatic turnover conditions, which has enabled the structural characterization of the nitrogenase reaction intermediates at high resolution for the first time. Our structures show that asymmetry governs all aspects of nitrogenase mechanism including ATP hydrolysis, protein-protein interactions, and catalysis. Furthermore, they reveal several previously unobserved, mechanistically relevant conformational changes near the catalytic iron-molybdenum cofactor that are correlated with the nucleotide-hydrolysis state of the enzyme.
Document ID
20230002097
Acquisition Source
2230 Support
Document Type
Accepted Manuscript (Version with final changes)
Authors
Hannah L. Rutledge
(University of California, Los Angeles Los Angeles, California, United States)
Brian D. Cook
(University of California, Los Angeles Los Angeles, California, United States)
Hoang P. M. Nguyen
(University of California, Los Angeles Los Angeles, California, United States)
Mark A. Herzik, Jr
(University of California, Los Angeles Los Angeles, California, United States)
Akif Tezcan
(University of California, Los Angeles Los Angeles, California, United States)
Date Acquired
February 14, 2023
Publication Date
June 5, 2022
Publication Information
Publication: bioRxiv
Publisher: bioRxiv
Subject Category
Chemistry and Materials (General)
Funding Number(s)
CONTRACT_GRANT: 80NSSC18M0093
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
No Preview Available