1. Author's Information
    P. Patrick Dotson II
    Department of Physiology, University of Kentucky College of Medicine, Lexington, KY 40536, U.S.A.

    Alexander A. Karakashian
    Department of Physiology, University of Kentucky College of Medicine, Lexington, KY 40536, U.S.A.

    Mariana N. Nikolova-Karakashian
    Department of Physiology, University of Kentucky College of Medicine, Lexington, KY 40536, U.S.A.

  2. Abstract
    Neutral sphingomyelinase-2 (nSMase-2) is the major sphingomyelinase activated in response to pro-inflammatory cytokines and during oxidative stress. It is a membrane-bound 655 amino acid protein containing 22 cysteine residues. In this study, we expressed recombinant mouse nSMase-2 protein in Escherichia coli, and investigated whether nSMase-2 is a redox sensitive enzyme. Our results demonstrate that nSMase-2 exists as both monomers and multimers that are associated with high and low enzymatic activity respectively. Mutational analysis of nSMase-2 identified within its C-terminal catalytic domain several oxidant-sensitive cysteine residues that were shown to be involved in enzyme oligomerization. Changing Cys617 to Ser for example is a gain-of-function mutation associated with a decreased propensity for oligomerization. Alternatively, nSMase-2 expression in a bacterial strain that lacks endogenous thioredoxin, Rosetta-gami2, results in increased oligomer formation and lower enzyme activity. Phenotypic rescue was accomplished by treating nSMase-2 lysates with recombinant human thioredoxin. This indicates that nSMase-2 may be a novel substrate for thioredoxin. FRET analysis confirmed the presence of nSMase-2 multimers in mammalian HEK cells and their localization to the plasma membrane. In conclusion, our results identify nSMase-2 as a redox-sensitive enzyme, whose basal activity is influenced by thioredoxin-mediated changes in its oligomeric state.
    Keywords
    ceramide, cysteine, oligomerization, oxidative stress, sphingomyelinase, thioredoxin

    ADLID: 19530-v4
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  1. Keywords
    ceramide cysteine oligomerization oxidative stress sphingomyelinase thioredoxin
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