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Mass spectrometric detection of iron nitrosyls, sulfide oxidation and mycothiolation during nitrosylation of the NO sensor [4Fe-4S] NsrR. | LitMetric

Mass spectrometric detection of iron nitrosyls, sulfide oxidation and mycothiolation during nitrosylation of the NO sensor [4Fe-4S] NsrR.

Chem Commun (Camb)

Centre for Molecular and Structural Biochemistry, School of Chemistry, University of East Anglia, Norwich Research Park, Norwich, NR4 7TJ, UK.

Published: June 2018

AI Article Synopsis

  • The bacterial regulator NsrR uses a [4Fe-4S] cluster to bind DNA and repress the cell’s response to nitric oxide (NO) stress.
  • Upon NO exposure, this cluster undergoes a complex reaction, forming various iron-nitrosyl compounds similar to known low molecular weight nitrosyl complexes.
  • Mass spectrometry studies identified specific NsrR-bound forms, including a modified version involving persulfide and variations linked to thiols like glutathione and mycothiol.

Article Abstract

The bacterial nitric oxide (NO)-sensing transcriptional regulator NsrR binds a [4Fe-4S] cluster that enables DNA-binding and thus repression of the cell's NO stress response. Upon exposure to NO, the cluster undergoes a complex nitrosylation reaction resulting in a mixture of iron-nitrosyl species, which spectroscopic studies have indicated are similar to well characterized low molecular weight dinitrosyl iron complex (DNIC), Roussin's Red Ester (RRE) and Roussin's Black Salt (RBS). Here we report mass spectrometric studies that enable the unambiguous identification of NsrR-bound RRE-type species, including a persulfide bound form that results from the oxidation of cluster sulfide. In the presence of the low molecular weight thiols glutathione and mycothiol, glutathionylated and mycothiolated forms of NsrR were readily formed.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5994877PMC
http://dx.doi.org/10.1039/c8cc01339jDOI Listing

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