Nucleoredoxin-Dependent Targets and Processes in Neuronal Cells

Author:

Urbainsky Claudia1ORCID,Nölker Rolf2,Imber Marcel3,Lübken Adrian1,Mostertz Jörg2,Hochgräfe Falko2,Godoy José R.4,Hanschmann Eva-Maria15ORCID,Lillig Christopher Horst1ORCID

Affiliation:

1. The Institute for Medical Biochemistry and Molecular Biology, University Medicine, University of Greifswald, Germany

2. Competence Center Functional Genomics, Junior Research Group Pathoproteomics, University of Greifswald, Germany

3. Institute for Biology-Microbiology, Freie Universität Berlin, Germany

4. Faculty of Biomedical Sciences, Ross University School of Veterinary Medicine, Basseterre, Saint Kitts and Nevis

5. Department of Neurology, Medical Faculty, Heinrich-Heine University Düsseldorf, Germany

Abstract

Nucleoredoxin (Nrx) is an oxidoreductase of the thioredoxin family of proteins. It was shown to act as a signal transducer in some pathways; however, so far, no comprehensive analysis of its regulated substrates and functions was available. Here, we used a combination of two different strategies to fill this gap. First, we analyzed the thiol-redox state of the proteome of SH-SY5Y neuroblastoma cells depleted of Nrx compared to control cells using a differential thiol-labeling technique and quantitative mass spectrometry. 171 proteins were identified with an altered redox state; 161 of these were more reduced in the absence of Nrx. This suggests functions of Nrx in the oxidation of protein thiols. Second, we utilized the active site mutant Cys208Ser of Nrx, which stabilizes a mixed disulfide intermediate with its substrates and therefore trapped interacting proteins from the mouse brain (identifying 1710 proteins) and neuronal cell culture extracts (identifying 609 proteins). Profiling of the affected biological processes and molecular functions in cells of neuronal origin suggests numerous functions of Nrx in the redox regulation of metabolic pathways, cellular morphology, and signal transduction. These results characterize Nrx as a cellular oxidase that itself may be oxidized by the formation of disulfide relays with peroxiredoxins.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Hindawi Limited

Subject

Cell Biology,Ageing,General Medicine,Biochemistry

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