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Bacterial sepsis triggers an antiviral response that causes translation shutdown
Takashi Hato, … , Michael T. Eadon, Pierre C. Dagher
Takashi Hato, … , Michael T. Eadon, Pierre C. Dagher
Published January 2, 2019; First published December 3, 2018
Citation Information: J Clin Invest. 2019;129(1):296-309. https://doi.org/10.1172/JCI123284.
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Categories: Research Article Inflammation Nephrology

Bacterial sepsis triggers an antiviral response that causes translation shutdown

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Abstract

In response to viral pathogens, the host upregulates antiviral genes that suppress translation of viral mRNAs. However, induction of such antiviral responses may not be exclusive to viruses, as the pathways lie at the intersection of broad inflammatory networks that can also be induced by bacterial pathogens. Using a model of Gram-negative sepsis, we show that propagation of kidney damage initiated by a bacterial origin ultimately involves antiviral responses that result in host translation shutdown. We determined that activation of the eukaryotic translation initiation factor 2-α kinase 2/eukaryotic translation initiation factor 2α (Eif2ak2/Eif2α) axis is the key mediator of translation initiation block in late-phase sepsis. Reversal of this axis mitigated kidney injury. Furthermore, temporal profiling of the kidney translatome revealed that multiple genes involved in formation of the initiation complex were translationally altered during bacterial sepsis. Collectively, our findings imply that translation shutdown is indifferent to the specific initiating pathogen and is an important determinant of tissue injury in sepsis.

Authors

Takashi Hato, Bernhard Maier, Farooq Syed, Jered Myslinski, Amy Zollman, Zoya Plotkin, Michael T. Eadon, Pierre C. Dagher

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Figure 5

Propagation of TLR4-mediated signaling elicits antiviral response pathways.

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Propagation of TLR4-mediated signaling elicits antiviral response pathwa...
(A–I) Ribo-Seq analysis of select genes involved in viral response and Eif2ak2 (PKR) activation. Ribo-Seq reads (red, green, blue) are superimposed as a front layer over RNA-Seq reads (gray). (J) Schematic of TLR4-mediated signaling pathways is shown. The background colors correspond to the colors of vertical bars in Figure 4 (red, brown) and Figure 5 (beige, blue).
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ISSN: 0021-9738 (print), 1558-8238 (online)

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