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Structural basis of Neisseria meningitidis quinol dependent nitric oxide reductase activation by dimerization

Communications Biology. 2025-12; 
Chai C. Gopalasingam; Haruka Egami; Hideki Shigematsu; Masatora Sakaue; Kouki Fukumoto; Christoph Gerle; Masaki Yamamoto; Yoshitsugu Shiro; Kazumasa Muramoto; Takehiko Tosha
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Plasmid DNA Preparation protocol, using NativePAGE 4 16% Bis-Tris gels (Invitrogen). Glu563Ala, Glu563Leu, Leu569Phe/Ile244Phe and Glu494Ala variant plasmid DNA was ordered from GenScript (Hong Kong) and transformed into C41 (DE3) cells (Lucigen), before overexpression and purification in a similar fashion to wildtype. The one exception Get A Quote

摘要

In all kingdoms of life, the regulation of membrane-bound enzyme function via oligomerization is a fundamental aspect of cell physiology. Often, the mechanistic role of oligomerization is unclear, due to a lack of structure-function comparisons between constituent forms of the enzyme. Here, we elucidate the structural underpinnings of enzyme regulation and oligomerization in the quinol-dependent nitric oxide reductase (qNOR) from Neisseria meningitidis , by high-resolution structural analyses of the less active monomeric form (2.25 ) and the highly active dimeric form (1.89 ). The comparison revealed that broad helical flexibility near the dimer interface of the monomer causes a conformational change in a criti... More

关键词

Oxidoreductases, Cryoelectron microscopy, Membrane proteins