Functional interactions between ubiquitin E2 enzymes and TRIM proteins.

Biochem J

Cluster in Biomedicine (CBM), AREA Science Park, s.s. 14 km 163.5 Basovizza, 34149 Trieste, Italy.

Published: March 2011

AI Article Synopsis

  • The TRIM family of proteins, notable for their tripartite motif, plays a significant role in various cellular processes and is the largest group of RING E3 ligases involved in ubiquitination.
  • A comprehensive study showed that TRIM proteins generally prefer interacting with D and E classes of UBE2 enzymes, revealing specific pairings like TRIM9 with UBE2G2 and TRIM32 with UBE2V1/2.
  • The research suggests that these specific interactions between TRIM proteins and UBE2 enzymes are crucial for understanding how TRIM E3 ligases influence the fate of their biological targets.

Article Abstract

The TRIM (tripartite motif) family of proteins is characterized by the presence of the tripartite motif module, composed of a RING domain, one or two B-box domains and a coiled-coil region. TRIM proteins are involved in many cellular processes and represent the largest subfamily of RING-containing putative ubiquitin E3 ligases. Whereas their role as E3 ubiquitin ligases has been presumed, and in several cases established, little is known about their specific interactions with the ubiquitin-conjugating E2 enzymes or UBE2s. In the present paper, we report a thorough screening of interactions between the TRIM and UBE2 families. We found a general preference of the TRIM proteins for the D and E classes of UBE2 enzymes, but we also revealed very specific interactions between TRIM9 and UBE2G2, and TRIM32 and UBE2V1/2. Furthermore, we demonstrated that the TRIM E3 activity is only manifest with the UBE2 with which they interact. For most specific interactions, we could also observe subcellular co-localization of the TRIM involved and its cognate UBE2 enzyme, suggesting that the specific selection of TRIM-UBE2 pairs has physiological relevance. Our findings represent the basis for future studies on the specific reactions catalysed by the TRIM E3 ligases to determine the fate of their targets.

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Source
http://dx.doi.org/10.1042/BJ20101487DOI Listing

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