Structure and catalytic activation of the TRIM23 RING E3 ubiquitin ligase

ABSTRACT Tripartite motif (TRIM) proteins comprise a large family of RING‐type ubiquitin E3 ligases that regulate important biological processes. An emerging general model is that TRIMs form elongated antiparallel coiled‐coil dimers that prevent interaction of the two attendant RING domains. The RIN...

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Veröffentlicht in:Proteins, structure, function, and bioinformatics structure, function, and bioinformatics, 2017-10, Vol.85 (10), p.1957-1961
Hauptverfasser: Dawidziak, Daria M., Sanchez, Jacint G., Wagner, Jonathan M., Ganser‐Pornillos, Barbie K., Pornillos, Owen
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Sprache:eng
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Zusammenfassung:ABSTRACT Tripartite motif (TRIM) proteins comprise a large family of RING‐type ubiquitin E3 ligases that regulate important biological processes. An emerging general model is that TRIMs form elongated antiparallel coiled‐coil dimers that prevent interaction of the two attendant RING domains. The RING domains themselves bind E2 conjugating enzymes as dimers, implying that an active TRIM ligase requires higher‐order oligomerization of the basal coiled‐coil dimers. Here, we report crystal structures of the TRIM23 RING domain in isolation and in complex with an E2–ubiquitin conjugate. Our results indicate that TRIM23 enzymatic activity requires RING dimerization, consistent with the general model of TRIM activation.
ISSN:0887-3585
1097-0134
DOI:10.1002/prot.25348