MyD88 TIR domain higher-order assembly interactions revealed by microcrystal electron diffraction and serial femtosecond crystallography.

Clabbers, Max T B; Holmes, Susannah; Muusse, Timothy W; Vajjhala, Parimala R; Thygesen, Sara J; Malde, Alpeshkumar K; Hunter, Dominic J B; Croll, Tristan I et al. · Nat Commun · 2021

basic_science · Level V

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Abstract

MyD88 and MAL are Toll-like receptor (TLR) adaptors that signal to induce pro-inflammatory cytokine production. We previously observed that the TIR domain of MAL (MAL<sup>TIR</sup>) forms filaments in vitro and induces formation of crystalline higher-order assemblies of the MyD88 TIR domain (MyD88<sup>TIR</sup>). These crystals are too small for conventional X-ray crystallography, but are ideally suited to structure determination by microcrystal electron diffraction (MicroED) and serial femtosecond crystallography (SFX). Here, we present MicroED and SFX structures of the MyD88<sup>TIR</sup> assembly, which reveal a two-stranded higher-order assembly arrangement of TIR domains analogous to that seen previously for MAL<sup>TIR</sup>. We demonstrate via mutagenesis that the MyD88<sup>TIR</sup> assembly interfaces are critical for TLR4 signaling in vivo, and we show that MAL promotes unidirectional assembly of MyD88<sup>TIR</sup>. Collectively, our studies provide structural and mechanistic insight into TLR signal transduction and allow a direct comparison of the MicroED and SFX techniques.

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