» Articles » PMID: 37963018

Single-cell Analysis Reveals a Weak Macrophage Subpopulation Response to Mycobacterium Tuberculosis Infection

Overview
Journal Cell Rep
Publisher Cell Press
Date 2023 Nov 14
PMID 37963018
Authors
Affiliations
Soon will be listed here.
Abstract

Mycobacterium tuberculosis (Mtb) infection remains one of society's greatest human health challenges. Macrophages integrate multiple signals derived from ontogeny, infection, and the environment. This integration proceeds heterogeneously during infection. Some macrophages are infected, while others are not; therefore, bulk approaches mask the subpopulation dynamics. We establish a modular, targeted, single-cell protein analysis framework to study the immune response to Mtb. We demonstrate that during Mtb infection, only a small fraction of resting macrophages produce tumor necrosis factor (TNF) protein. We demonstrate that Mtb infection results in muted phosphorylation of p38 and JNK, regulators of inflammation, and leverage our single-cell methods to distinguish between pathogen-mediated interference in host signaling and weak activation of host pathways. We demonstrate that the inflammatory signal magnitude is decoupled from the ability to control Mtb growth. These data underscore the importance of developing pathogen-specific models of signaling and highlight barriers to activation of pathways that control inflammation.

Citing Articles

Proximity labeling defines the phagosome lumen proteome of murine and primary human macrophages.

Allsup B, Gharpure S, Bryson B bioRxiv. 2024; .

PMID: 39282337 PMC: 11398489. DOI: 10.1101/2024.09.04.611277.


TLR2 is non-redundant in the population and subpopulation responses to in macrophages and .

Jani C, Solomon S, Peters J, Pringle S, Hinman A, Boucau J mSystems. 2023; 8(4):e0005223.

PMID: 37439558 PMC: 10506474. DOI: 10.1128/msystems.00052-23.

References
1.
Park J, Greten F, Li Z, Karin M . Macrophage apoptosis by anthrax lethal factor through p38 MAP kinase inhibition. Science. 2002; 297(5589):2048-51. DOI: 10.1126/science.1073163. View

2.
Fitzgerald K, Kagan J . Toll-like Receptors and the Control of Immunity. Cell. 2020; 180(6):1044-1066. PMC: 9358771. DOI: 10.1016/j.cell.2020.02.041. View

3.
Novakovic B, Habibi E, Wang S, Arts R, Davar R, Megchelenbrink W . β-Glucan Reverses the Epigenetic State of LPS-Induced Immunological Tolerance. Cell. 2016; 167(5):1354-1368.e14. PMC: 5927328. DOI: 10.1016/j.cell.2016.09.034. View

4.
Inoue M, Niki M, Ozeki Y, Nagi S, Chadeka E, Yamaguchi T . High-density lipoprotein suppresses tumor necrosis factor alpha production by mycobacteria-infected human macrophages. Sci Rep. 2018; 8(1):6736. PMC: 5928146. DOI: 10.1038/s41598-018-24233-1. View

5.
Williams C, Cheah E, Malkin J, Patel H, Otu J, Mlaga K . Face mask sampling for the detection of Mycobacterium tuberculosis in expelled aerosols. PLoS One. 2014; 9(8):e104921. PMC: 4133242. DOI: 10.1371/journal.pone.0104921. View