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Dimeric structures of quinol-dependent nitric oxide reductases (qNORs) revealed by cryo-electron microscopy

Sci Adv.. 2019; 
Gopalasingam CC1, Johnson RM2,3, Chiduza GN1, Tosha T4, Yamamoto M4, Shiro Y5, Antonyuk SV1, Muench SP2,3, Hasnain SS1.
Products/Services Used Details Operation
Gene Synthesis The AxqNOR-BRIL and Val495Ala-BRIL expression plasmid was made by GenScript (Hong Kong), with the AxqNOR gene (NorZ) truncated (747 to 763) to accommodate the apocytochrome b562 [BRIL562, Protein Data Bank (PDB) accession code: 1M6T] fusion partner at the C terminus of AxqNOR Get A Quote

摘要

Quinol-dependent nitric oxide reductases (qNORs) are membrane-integrated, iron-containing enzymes of the denitrification pathway, which catalyze the reduction of nitric oxide (NO) to the major ozone destroying gas nitrous oxide (N2O). Cryo-electron microscopy structures of active qNOR from Alcaligenes xylosoxidans and an activity-enhancing mutant have been determined to be at local resolutions of 3.7 and 3.2 Å, respectively. They unexpectedly reveal a dimeric conformation (also confirmed for qNOR from Neisseria meningitidis) and define the active-site configuration, with a clear water channel from the cytoplasm. Structure-based mutagenesis has identified key residues involved in proton transport and substrate ... More

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