M. tuberculosis infection of human iPSC-derived macrophages reveals complex membrane dynamics during xenophagy evasion

被引:39
作者
Bernard, Elliott M. [1 ]
Fearns, Antony [1 ]
Bussi, Claudio [1 ]
Santucci, Pierre [1 ]
Peddie, Christopher J. [2 ]
Lai, Rachel J. [3 ]
Collinson, Lucy M. [2 ]
Gutierrez, Maximiliano G. [1 ]
机构
[1] Francis Crick Inst, Hostpathogen Interact TB Lab, 1 Midland Rd, London NW1 1AT, England
[2] Francis Crick Inst, Electron Microscopy Sci Technol Platform, 1 Midland Rd, London NW1 1AT, England
[3] Imperial Coll London, Dept Med, London W2 1PG, England
基金
欧洲研究理事会; 英国惠康基金; 英国医学研究理事会;
关键词
Macrophage; Autophagy; Stem cell; Xenophagy; Tuberculosis; MYCOBACTERIUM-TUBERCULOSIS; AUTOPHAGY; CELLS; VISUALIZATION; CYTOSOL; DIFFERENTIATION; REPLICATION; ATTENUATION; EXPRESSION; GRANULOMA;
D O I
10.1242/jcs.252973
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Xenophagy is an important cellular defence mechanism against cytosol-invading pathogens, such as Mycobacterium tuberculosis (Mtb). Activation of xenophagy in macrophages targets Mtb to autophagosomes; however, how Mtb is targeted to autophagosomes in human macrophages at a high spatial and temporal resolution is unknown. Here, we use human induced pluripotent stem cell-derived macrophages (iPSDMs) to study the human macrophage response to Mtb infection and the role of the ESX-1 type VII secretion system. Using RNA-seq, we identify ESX-1-dependent transcriptional responses in iPSDMs after infection with Mtb. This analysis revealed differential inflammatory responses and dysregulated pathways such as eukaryotic initiation factor 2 (eIF2) signalling and protein ubiquitylation. Moreover, live-cell imaging revealed that Mtb infection in human macrophages induces dynamic ESX-1-dependent, LC3B-positive tubulovesicular autophagosomes (LC3-TVS). Through a correlative live-cell and focused ion beam scanning electron microscopy (FIB SEM) approach, we show that upon phagosomal rupture, Mtb induces the formation of LC3-TVS, from which the bacterium is able to escape to reside in the cytosol. Thus, iPSDMs represent a valuable model for studying spatiotemporal dynamics of human macrophage-Mtb interactions, and Mtb is able to evade capture by autophagic compartments. This article has an associated First Person interview with the first author of the paper.
引用
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页数:15
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