Spectroscopic and calorimetric characterization of spermine oxidase and its association forms

Author:

Leonetti Alessia1,Cervoni Laura2,Polticelli Fabio13,Kanamori Yuta2,Yurtsever Zuleyha Nihan2,Agostinelli Enzo2,Mariottini Paolo1,Stano Pasquale1,Cervelli Manuela1

Affiliation:

1. Department of Sciences, Roma Tre University, Viale Guglielmo Marconi 446, Rome I-00146, Italy

2. Department of Biochemical Sciences ‘A. Rossi Fanelli’, University of ‘La Sapienza’, Piazzale Aldo Moro 5, Rome I-00185, Italy

3. National Institute of Nuclear Physics, Roma Tre Section, Via della Vasca Navale 84, Rome I-00146, Italy

Abstract

Spermine oxidase (SMOX) is a flavin-containing enzyme that oxidizes spermine to produce spermidine, 3-aminopropanaldehyde, and hydrogen peroxide. SMOX has been shown to play key roles in inflammation and carcinogenesis; indeed, it is differentially expressed in several human cancer types. Our previous investigation has revealed that SMOX purified after heterologous expression in Escherichia coli actually consists of monomers, covalent homodimers, and other higher-order forms. All association forms oxidize spermine and, after treatment with dithiothreitol, revert to SMOX monomer. Here, we report a detailed investigation on the thermal denaturation of SMOX and its association forms in native and reducing conditions. By combining spectroscopic methods (circular dichroism, fluorescence) and thermal methods (differential scanning calorimetry), we provide new insights into the structure, the transformation, and the stability of SMOX. While the crystal structure of this protein is not available yet, experimental results are interpreted also on the basis of a novel SMOX structural model, obtained in silico exploiting the recently solved acetylspermine oxidase crystal structure. We conclude that while at least one specific intermolecular disulfide bond links two SMOX molecules to form the homodimer, the thermal denaturation profiles can be justified by the presence of at least one intramolecular disulfide bond, which also plays a critical role in the stabilization of the overall three-dimensional SMOX structure, and in particular of its flavin adenine dinucleotide-containing active site.

Publisher

Portland Press Ltd.

Subject

Cell Biology,Molecular Biology,Biochemistry

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