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ROBINSON, K. S.

Publications and source records attributed to ROBINSON, K. S..

2 recordsLinked to original sources

Corynebacterium diphtheriae causes keratinocyte-intrinsic ribotoxic stress and NLRP1 inflammasome activation in a model of cutaneous diphtheria

NLRP1 is an innate immune sensor protein that activates inflammasome-driven pyroptotic cell death. Recent work demonstrates that human NLRP1 has evolved to sense viral infections. Whether and how human NLRP1 responds to other infectious agents is unclear. Here, and in a companion manuscript, we report that human NLRP1, as an integral component of the ribotoxic stress response (RSR), is activated by bacterial exotoxins that target human ribosome elongation factors EEF1 and EEF2, including Diphtheria Toxin (DT) from Corynebacterium diphtheriae, exotoxin A from Pseudomonas aeruginosa and sidI from Legionella pneumophila. In human keratinocytes, DT activates RSR kinases ZAK, p38 and JNKs, upregulates a set of signature RSR transcripts and triggers rapid NLRP1-dependent pyroptosis. Mechanistically, these processes require 1) DtxR-mediated de-repression of DT production in the bacteria, as well as 2) diphthamide synthesis and 3) ZAK/p38-driven NLRP1 phosphorylation in the host. In 3D human skin cultures, Corynebacterium diphtheriae infection disrupts barrier function and induces IL-1 driven inflammation. Pharmacologic inhibition of p38 and ZAK suppresses keratinocyte pyroptosis and rescues barrier integrity of Corynebacterium diphtheriae-treated organotypic skin. In summary, these findings implicate RSR and the NLRP1 inflammasome in antibacterial innate immunity and might explain certain aspects of diphtheria pathogenesis. KEY POINTSO_LIEEF1/EEF2-targeting bacterial exotoxins activate the human NLRP1 inflammasome. C_LIO_LIDT+ve toxigenic Corynebacterium diphtheriae induces ZAK-driven RSR and NLRP1-driven pyroptosis in human keratinocytes. C_LIO_LIIdentification of transcripts that are induced by multiple RSR agents across multiple cell types. C_LIO_LIp38 and ZAK inhibition rescues epidermal integrity by limiting pyroptosis in 3D skin mode of cutaneous diphtheria. C_LI

immunology↗

Human NLRP1 is activated by ZAKa-driven ribotoxic stress response

Human NLRP1 is a multifunctional inflammasome sensor predominantly expressed in skin and airway epithelium; however its function in skin-specific immunity and its mechanisms of activation are not fully understood. Here we report that human NLRP1 is specifically activated by the ZAK[a]- driven ribotoxic stress response pathway (RSR) induced by ultraviolet B (UVB) irradiation or select microbial ribotoxins. Biochemically, RSR-triggered NLRP1 activation requires ZAK[a]- dependent hyperphosphorylation of a human-specific linker region of NLRP1 (NLRP1DR), leading to the functional degradation of the auto-inhibitory NLRP1 N-terminal fragment. Additionally, we show that fusing NLRP1DR to the signaling domains of CARD8, which in itself is insensitive to RSR, creates a minimal inflammasome sensor for UVB and ribotoxins. In summary, these discoveries resolve the mechanisms of UVB sensing by human NLRP1, identify ZAK[a]-activating toxins as novel human NLRP1 activators, and establish NLRP1 inflammasome-dependent pyroptosis as an integral component of the ribotoxic stress response in primary human cells. O_LIUVB-induced NLRP1 activation in human keratinocytes involves a nuclear DNA-independent stress response involving photodamaged RNA C_LIO_LIZAK[a] kinase is required for UVB-triggered, but not VbP- or dsRNA-induced human NLRP1 activation C_LIO_LIZAK[a]-activating microbial ribotoxins specifically activate the NLRP1 inflammasome in multiple primary human cell types C_LIO_LIHyperphosphorylation of a linker region (NLRP1DR) is required for RSR-dependent human NLRP1 activation C_LI O_FIG O_LINKSMALLFIG WIDTH=156 HEIGHT=200 SRC="FIGDIR/small/477516v1_ufig1.gif" ALT="Figure 1"> View larger version (30K): org.highwire.dtl.DTLVardef@dea86aorg.highwire.dtl.DTLVardef@2eb7forg.highwire.dtl.DTLVardef@1b301bborg.highwire.dtl.DTLVardef@136aa32_HPS_FORMAT_FIGEXP M_FIG C_FIG

immunology↗