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Antibody and DNA sensing pathways converge to activate the inflammasome during primary human macrophage infection

EMBO J. 2019; 
Labzin LI, Bottermann M, Rodriguez-Silvestre P, Foss S, Andersen JT, Vaysburd M, Clift D, James LC.
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Gene Synthesis THP-1 ASC-Cerulean cells were a gift from B. Franklin and were generated as described in Franklin et al (2014). CRISPR/ Cas9 knockout single-guide RNA (sgRNA) against targets (Table 1) was incorporated into the lenti-CRISPR v2 plasmid (Addgene), and VSV-G pseudotyped lentiviral particles were generated by threeplasmid transfection of 293T with Fugene-6 (Promega), using 1 lg HIV-1 Gag-Pol expression plasmid and 1 lg VSV-G expression plasmid pMD2.G (GenScript), and 1.5 lg lenti-CRISPR v2. 5 × 105 THP- 1s were transduced with 1 ml unconcentrated 293T viral supernatant in the presence of 8 lg/ml polybrene (Santa Cruz), and selected with 2.5 lg/ml puromycin. Get A Quote

摘要

Inflammasomes are potent innate immune signalling complexes that couple cytokine release with pro-inflammatory cell death. However, pathogens have evolved strategies to evade this cell autonomous system. Here, we show how antibodies combine with innate sensors in primary human macrophages to detect viral infection and activate the inflammasome. Our data demonstrate that antibody opsonisation of virions can activate macrophages in multiple ways. In the first, antibody binding of adenovirus causes lysosomal damage, activating NLRP3 to drive inflammasome formation and IL-1β release. Importantly, this mechanism enhances virion capture but not infection and is accompanied by cell death, denying the opportunity for ... More

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