Targeted degradation of extracellular mitochondrial aspartyl-tRNA synthetase modulates immune responses

Author:

Johnson Benjamin S.,Farkas Daniela,El-Mergawy Rabab,Adair Jessica A.,Elhance AjitORCID,Eltobgy Moemen,Coan Francesca M.,Chafin Lexie,Joseph Jessica A.,Cornwell AlexORCID,Johns Finny J.,Rosas Lorena,Rojas Mauricio,Farkas LaszloORCID,Bednash Joseph S.,Londino James D.ORCID,Ray PrabirORCID,Ray AnuradhaORCID,Kagan ValerianORCID,Lee Janet S.ORCID,Chen Bill B.ORCID,Mallampalli Rama K.ORCID

Abstract

AbstractThe severity of bacterial pneumonia can be worsened by impaired innate immunity resulting in ineffective pathogen clearance. We describe a mitochondrial protein, aspartyl-tRNA synthetase (DARS2), which is released in circulation during bacterial pneumonia in humans and displays intrinsic innate immune properties and cellular repair properties. DARS2 interacts with a bacterial-induced ubiquitin E3 ligase subunit, FBXO24, which targets the synthetase for ubiquitylation and degradation, a process that is inhibited by DARS2 acetylation. During experimental pneumonia, Fbxo24 knockout mice exhibit elevated DARS2 levels with an increase in pulmonary cellular and cytokine levels. In silico modeling identified an FBXO24 inhibitory compound with immunostimulatory properties which extended DARS2 lifespan in cells. Here, we show a unique biological role for an extracellular, mitochondrially derived enzyme and its molecular control by the ubiquitin apparatus, which may serve as a mechanistic platform to enhance protective host immunity through small molecule discovery.

Funder

U.S. Department of Health & Human Services | National Institutes of Health

Publisher

Springer Science and Business Media LLC

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