Litcius/Paper detail

Mycobacterium avium subsp. paratuberculosis exploits miRNA expression to modulate lipid metabolism and macrophage polarisation pathways during infection

Kathryn Wright, Rachel Mizzi, Karren M. Plain, Auriol C. Purdie, Kumudika de Silva

2022Scientific Reports11 citationsDOIOpen Access PDF

Abstract

Pathogenic mycobacteria including Mycobacterium avium subsp. paratuberculosis (MAP), the causative agent of Johne's disease, manipulate host macrophages to persist and cause disease. In mycobacterial infection, highly plastic macrophages, shift between inflammatory M1 and permissive M2 phenotypes which alter the disease outcome and allow bacteria to survive intracellularly. Here we examine the impact of MAP infection on polarised macrophages and how increased lipid availability alters macrophage phenotype and bacterial persistence. Further, we assess if host microRNA (miRNA) are sensitive to macrophage polarisation state and how MAP can drive their expression to overcome innate responses. Using in vitro MAP infection, we find that increasing lipid availability through supplementing culture media with exogenous lipid increases cellular nitric oxide production. Lipid-associated miRs -19a, -129, -24, and -24-3p are differentially expressed following macrophage polarisation and lipid supplementation and are further regulated during MAP infection. Collectively, our results highlight the importance of host lipid metabolism in MAP infection and demonstrate control of miRNA expression by MAP to favour intracellular persistence.

Topics & Concepts

ParatuberculosisLipid metabolismMacrophageBiologyPhenotypeMicrobiologyMycobacteriummicroRNAIntracellular parasiteMycobacterium avium subspecies paratuberculosisIntracellularImmunologyIn vitroCell biologyBacteriaGeneticsGeneBiochemistryMycobacterium research and diagnosisImmune cells in cancerMicrobial Applications in Construction Materials