학술논문

Radical SAM-dependent formation of a nitrogenase cofactor core on NifB
Document Type
article
Source
Subject
Chemical Sciences
Physical Chemistry
Metalloproteins
Methyltransferases
Molybdoferredoxin
Nitrogenase
S-Adenosylmethionine
Biosynthesis
FeS cluster
M-cluster
NifB
Radical SAM enzyme
Inorganic Chemistry
Theoretical and Computational Chemistry
Other Chemical Sciences
Inorganic & Nuclear Chemistry
Inorganic chemistry
Language
Abstract
Nitrogenase is a versatile metalloenzyme that reduces N2, CO and CO2 at its cofactor site. Designated the M-cluster, this complex cofactor has a composition of [(R-homocitrate)MoFe7S9C], and it is assembled through the generation of a unique [Fe8S9C] core prior to the insertion of Mo and homocitrate. NifB is a radical S-adenosyl-L-methionine (SAM) enzyme that is essential for nitrogenase cofactor assembly. This review focuses on the recent work that sheds light on the role of NifB in the formation of the [Fe8S9C] core of the nitrogenase cofactor, highlighting the structure, function and mechanism of this unique radical SAM methyltransferase.