Quality control of a molybdoenzyme by the Lon protease

FEBS Lett. 2013 Dec 11;587(24):3935-42. doi: 10.1016/j.febslet.2013.10.045. Epub 2013 Nov 6.

Abstract

Molybdoenzymes contain a molybdenum cofactor in their active site to catalyze various redox reactions in all domains of life. To decipher crucial steps during their biogenesis, the TorA molybdoenzyme of Escherichia coli had played a major role to understand molybdoenzyme maturation process driven by specific chaperones. TorD, the specific chaperone of TorA, is also involved in TorA protection. Here, we show that immature TorA (apoTorA) is degraded in vivo and in vitro by the Lon protease. Lon interacts with apoTorA but not with holoTorA. Lon and TorD compete for apoTorA binding but TorD binding protects apoTorA against degradation. Lon is the first protease shown to eliminate an immature or misfolded molybdoenzyme probably by targeting its inactive catalytic site.

Keywords: Chaperone; Microbiology; Protease; Protein degradation; Protein–protein interaction.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Coenzymes / genetics
  • Coenzymes / metabolism*
  • Escherichia coli Proteins / metabolism*
  • Escherichia coli Proteins / physiology
  • Metalloproteins / genetics
  • Metalloproteins / metabolism*
  • Molecular Chaperones / physiology
  • Molybdenum Cofactors
  • Oxidoreductases, N-Demethylating / chemistry
  • Oxidoreductases, N-Demethylating / genetics
  • Oxidoreductases, N-Demethylating / metabolism*
  • Protease La / metabolism*
  • Protein Binding
  • Protein Processing, Post-Translational* / genetics
  • Proteolysis*
  • Pteridines / metabolism*
  • Substrate Specificity

Substances

  • Coenzymes
  • Escherichia coli Proteins
  • Metalloproteins
  • Molecular Chaperones
  • Molybdenum Cofactors
  • Pteridines
  • TorD protein, E coli
  • molybdenum cofactor
  • Oxidoreductases, N-Demethylating
  • trimethylamine dehydrogenase
  • Lon protein, E coli
  • Protease La