Structural insights into ADP-ribosylation of ubiquitin by Deltex family E3 ubiquitin ligases.

Chatrin, Chatrin; Gabrielsen, Mads; Buetow, Lori; Nakasone, Mark A; Ahmed, Syed F; Sumpton, David; Sibbet, Gary J; Smith, Brian O et al. · Sci Adv · 2020

basic_science · Level V

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Abstract

Cellular cross-talk between ubiquitination and other posttranslational modifications contributes to the regulation of numerous processes. One example is ADP-ribosylation of the carboxyl terminus of ubiquitin by the E3 DTX3L/ADP-ribosyltransferase PARP9 heterodimer, but the mechanism remains elusive. Here, we show that independently of PARP9, the conserved carboxyl-terminal RING and DTC (Deltex carboxyl-terminal) domains of DTX3L and other human Deltex proteins (DTX1 to DTX4) catalyze ADP-ribosylation of ubiquitin's Gly<sup>76</sup> Structural studies reveal a hitherto unknown function of the DTC domain in binding NAD<sup>+</sup> Deltex RING domain recruits E2 thioesterified with ubiquitin and juxtaposes it with NAD<sup>+</sup> bound to the DTC domain to facilitate ADP-ribosylation of ubiquitin. This ubiquitin modification prevents its activation but is reversed by the linkage nonspecific deubiquitinases. Our study provides mechanistic insights into ADP-ribosylation of ubiquitin by Deltex E3s and will enable future studies directed at understanding the increasingly complex network of ubiquitin cross-talk.

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