Structure of the DOCK2-ELMO1 complex provides insights into regulation of the auto-inhibited state.

Chang, Leifu; Yang, Jing; Jo, Chang Hwa; Boland, Andreas; Zhang, Ziguo; McLaughlin, Stephen H; Abu-Thuraia, Afnan; Killoran, Ryan C et al. · Nat Commun · 2020

basic_science · Level V

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Abstract

DOCK (dedicator of cytokinesis) proteins are multidomain guanine nucleotide exchange factors (GEFs) for RHO GTPases that regulate intracellular actin dynamics. DOCK proteins share catalytic (DOCK<sup>DHR2</sup>) and membrane-associated (DOCK<sup>DHR1</sup>) domains. The structurally-related DOCK1 and DOCK2 GEFs are specific for RAC, and require ELMO (engulfment and cell motility) proteins for function. The N-terminal RAS-binding domain (RBD) of ELMO (ELMO<sup>RBD</sup>) interacts with RHOG to modulate DOCK1/2 activity. Here, we determine the cryo-EM structures of DOCK2-ELMO1 alone, and as a ternary complex with RAC1, together with the crystal structure of a RHOG-ELMO2<sup>RBD</sup> complex. The binary DOCK2-ELMO1 complex adopts a closed, auto-inhibited conformation. Relief of auto-inhibition to an active, open state, due to a conformational change of the ELMO1 subunit, exposes binding sites for RAC1 on DOCK2<sup>DHR2</sup>, and RHOG and BAI GPCRs on ELMO1. Our structure explains how up-stream effectors, including DOCK2 and ELMO1 phosphorylation, destabilise the auto-inhibited state to promote an active GEF.

Medical subject headings