A1 Refereed original research article in a scientific journal

A new vertebrate SUMO enzyme family reveals insights into SUMO-chain assembly




AuthorsEisenhardt N, Chaugule VK, Koidl S, Droescher M, Dogan E, Rettich J, Sutinen P, Imanishi SY, Hofmann K, Palvimo JJ, Pichler A

PublisherNATURE PUBLISHING GROUP

Publication year2015

JournalNature Structural and Molecular Biology

Journal name in sourceNATURE STRUCTURAL & MOLECULAR BIOLOGY

Journal acronymNAT STRUCT MOL BIOL

Volume22

Issue12

First page 959

Last page967

Number of pages9

ISSN1545-9993

DOIhttps://doi.org/10.1038/nsmb.3114


Abstract

SUMO chains act as stress-induced degradation tags or repair factor-recruiting signals at DNA lesions. Although El activating, E2 conjugating and E3 ligating enzymes efficiently assemble SUMO chains, specific chain-elongation mechanisms are unknown. E4 elongases are specialized E3 ligases that extend a chain but are inefficient in the initial conjugation of the modifier. We identified ZNF451, a representative member of a new class of SUMO2 and SUM03 (SUMO2/3)-specific enzymes that execute catalysis via a tandem SUMO-interaction motif (SIM) region. One SIM positions the donor SUMO while a second SIM binds SUMO on the back side of the E2 enzyme. This tandem-SIM region is sufficient to extend a back side-anchored SUMO chain (E4 elongase activity), whereas efficient chain initiation also requires a zinc-finger region to recruit the initial acceptor SUMO (E3 ligase activity). Finally, we describe four human proteins sharing E4 elongase activities and their function in stress-induced SUMO2/3 conjugation.




Last updated on 2024-26-11 at 22:23