4.6 Article

Chlorovirus PBCV-1 Encodes an Active Copper-Zinc Superoxide Dismutase

Journal

JOURNAL OF VIROLOGY
Volume 88, Issue 21, Pages 12541-12550

Publisher

AMER SOC MICROBIOLOGY
DOI: 10.1128/JVI.02031-14

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Funding

  1. National Institutes of Health [GM32241, GM079393, P30GM103335]
  2. COBRE program of the National Center for Research Resources [P20-RR15635]
  3. National Center for Research Resources [5P20RR016469]
  4. National Institute for General Medical Science (NIGMS) [8P20GM103427]
  5. National Science Foundation [DBI-0619764]
  6. EPSCoR [1004094] Funding Source: National Science Foundation
  7. Office Of The Director [1004094] Funding Source: National Science Foundation

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Superoxide dismutases (SODs) are metalloproteins that protect organisms from toxic reactive oxygen species by catalyzing the conversion of superoxide anion to hydrogen peroxide and molecular oxygen. Chlorovirus PBCV-1 encodes a 187-amino-acid protein that resembles a Cu-Zn SOD with all of the conserved amino acid residues for binding copper and zinc (named cvSOD). cvSOD has an internal Met that results in a 165-amino-acid protein (named tcvSOD). Both cvSOD and tcvSOD recombinant proteins inhibited nitroblue tetrazolium reduction of superoxide anion generated in a xanthine-xanthine oxidase system in solution. tcvSOD was chosen for further characterization because it was easier to produce. Recombinant tcvSOD also inhibited a riboflavin photochemical reduction system in a polyacrylamide gel assay, which was blocked by the Cu-Zn SOD inhibitor cyanide but not by azide, which inhibits Fe and Mn SODs. A k(cat)/K-m value for cvSOD was determined by stop-flow spectrophotometry as 1.28 x 10(8) M-1 s(-1), suggesting that cvSOD-catalyzed O-2(-) dismutation was not a diffusion controlled encounter. The cvsod gene was expressed as a late gene, and cvSOD activity was detected in purified virions. Superoxide accumulated rapidly during virus infection, and circumstantial evidence indicates that cvSOD aids its decomposition to benefit virus replication. Cu-Zn SOD homologs have been described to occur in 3 other families of large DNA viruses, poxviruses, baculoviruses, and mimiviruses, which group as a clade. Interestingly, cvSOD does not group in the same clade as the other virus SODs but instead groups in an expanded clade that includes Cu-Zn SODs from many cellular organisms. IMPORTANCE Virus infection often leads to an increase in toxic reactive oxygen species in the host, which can be detrimental to virus replication. Viruses have developed various ways to overcome this barrier. As reported in this article, the chloroviruses often encode and package a functional Cu-Zn superoxide dismutase in the virion that presumably lowers the concentration of reactive oxygen induced early during virus infection.

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