Department of Biology and Biotechnology "Lazzaro Spallanzani", University of Pavia, Italy.
UK Dementia Research Institute at King's College London, UK.
FEBS J. 2020 Jun;287(12):2486-2503. doi: 10.1111/febs.15160. Epub 2019 Dec 20.
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.
现在人们已经接受,活性氧(ROS)不仅是危险的氧化剂,还是氧化还原细胞信号转导和固有免疫反应的化学介质。NADPH 氧化酶(NOXs)在 ROS 控制的产生中起着核心作用,它是一组七种膜结合酶(NOX1-5 和 DUOX1-2),其独特的功能是产生 ROS。在这里,我们描述了 NOX5 的调节,NOX5 是一种广泛存在于蓝细菌、原生生物、植物、真菌和动物王国中的家族成员。我们表明,在没有钙的情况下,NOX5 的钙调蛋白样调节 EF 结构域部分展开并与蛋白质的其余部分分离。在钙存在的情况下,EF 结构域的 C 末端叶获得有序和更紧凑的结构,使其能够与酶脱氢酶(DH)结构域结合。我们的光谱和突变研究进一步确定了 DH 结构域中一组保守的天冬氨酸残基,对于 NOX5 的激活是必不可少的。总之,我们的工作表明,钙诱导 EF 结构域的无规则到折叠的转变,促进与保守的调节区域的直接相互作用,从而导致 NOX5 的激活。