Sialic acid mediated mechanical activation of β<sub>2</sub> adrenergic receptors by bacterial pili.

Virion, Zoe; Doly, Stéphane; Saha, Kusumika; Lambert, Mireille; Guillonneau, François; Bied, Camille; Duke, Rebecca M; Rudd, Pauline M et al. · Nat Commun · 2019

basic_science · Level V

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Abstract

Meningococcus utilizes β-arrestin selective activation of endothelial cell β<sub>2</sub> adrenergic receptor (β<sub>2</sub>AR) to cause meningitis in humans. Molecular mechanisms of receptor activation by the pathogen and of its species selectivity remained elusive. We report that β<sub>2</sub>AR activation requires two asparagine-branched glycan chains with terminally exposed N-acetyl-neuraminic acid (sialic acid, Neu5Ac) residues located at a specific distance in its N-terminus, while being independent of surrounding amino-acid residues. Meningococcus triggers receptor signaling by exerting direct and hemodynamic-promoted traction forces on β<sub>2</sub>AR glycans. Similar activation is recapitulated with beads coated with Neu5Ac-binding lectins, submitted to mechanical stimulation. This previously unknown glycan-dependent mode of allosteric mechanical activation of a G protein-coupled receptor contributes to meningococcal species selectivity, since Neu5Ac is only abundant in humans due to the loss of CMAH, the enzyme converting Neu5Ac into N-glycolyl-neuraminic acid in other mammals. It represents an additional mechanism of evolutionary adaptation of a pathogen to its host.

Medical subject headings