A Novel Type of Deubiquitinating Enzyme
A previous report from this laboratory described two novel proteins that have sequence similarity to A20, a negative regulator of NF-κB (Evans, P. C., Taylor, E. R., Coadwell, J., Heyninck, K., Beyaert, R., and Kilshaw, P. J. (2001) Biochem. J . 357, 617â623). One of these molecules, cellular zin...
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Veröffentlicht in: | The Journal of biological chemistry 2003-06, Vol.278 (25), p.23180-23186 |
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Sprache: | eng |
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Zusammenfassung: | A previous report from this laboratory described two novel proteins that have sequence similarity to A20, a negative regulator
of NF-κB (Evans, P. C., Taylor, E. R., Coadwell, J., Heyninck, K., Beyaert, R., and Kilshaw, P. J. (2001) Biochem. J . 357, 617â623). One of these molecules, cellular zinc finger anti-NF-κB (Cezanne), a 100-kDa cytoplasmic protein, also
suppressed NF-κB. Here we demonstrate that Cezanne is a novel deubiquitinating enzyme, distinct from the two known families
of deubiquitinases, Types I and II. We show that Cezanne contains an N-terminal catalytic domain that belongs to the recently
discovered ovarian tumor protein (OTU) superfamily, a group of proteins displaying structural similarity to cysteine proteases
but having no previously described function. Recombinant Cezanne cleaved ubiquitin monomers from linear or branched synthetic
ubiquitin chains and from ubiquitinated proteins. Mutation of a conserved cysteine residue in the catalytic site of the
proteolytic domain caused Cezanne to co-precipitate polyubiquitinated cellular proteins. We also provide evidence for an
additional ubiquitin binding site in the C-terminal part of the molecule. Our data provide the first demonstration of functional
activity among OTU proteins. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.M301863200 |