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On the mechanism of calcium-dependent activation of NADPH oxidase 5 (NOX5)

E. Millana Fañanás, S. Todesca, A. Sicorello, L. Masino, P. Pompach, F. Magnani, A. Pastore, A. Mattevi

. 2020 ; 287 (12) : 2486-2503. [pub] 20191220

Jazyk angličtina Země Velká Británie

Typ dokumentu časopisecké články, práce podpořená grantem

Perzistentní odkaz   https://www.medvik.cz/link/bmc21020487

Grantová podpora
MC_U117584256 Medical Research Council - United Kingdom
MC_U117533887 Medical Research Council - United Kingdom
FC001029 Medical Research Council - United Kingdom
FC001029 Wellcome Trust - United Kingdom
Cancer Research UK - United Kingdom
731077 Wellcome Trust - United Kingdom

E-zdroje Online Plný text

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Medline Complete (EBSCOhost) od 2005-01-01 do Před 1 rokem
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It is now accepted that reactive oxygen species (ROS) are not only dangerous oxidative agents but also chemical mediators of the redox cell signaling and innate immune response. A central role in ROS-controlled production is played by the NADPH oxidases (NOXs), a group of seven membrane-bound enzymes (NOX1-5 and DUOX1-2) whose unique function is to produce ROS. Here, we describe the regulation of NOX5, a widespread family member present in cyanobacteria, protists, plants, fungi, and the animal kingdom. We show that the calmodulin-like regulatory EF-domain of NOX5 is partially unfolded and detached from the rest of the protein in the absence of calcium. In the presence of calcium, the C-terminal lobe of the EF-domain acquires an ordered and more compact structure that enables its binding to the enzyme dehydrogenase (DH) domain. Our spectroscopic and mutagenesis studies further identified a set of conserved aspartate residues in the DH domain that are essential for NOX5 activation. Altogether, our work shows that calcium induces an unfolded-to-folded transition of the EF-domain that promotes direct interaction with a conserved regulatory region, resulting in NOX5 activation.

Citace poskytuje Crossref.org

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