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Published on: October 6, 2022
Extensive peptide and natural protein substrate screens reveal that mouse caspase-11 has much narrower substrate
Monica L Gonzalez Ramirez1,2, Marcin Poreba1,3, Scott J Snipas1
1From the NCI-Designated Cancer Center and.
Abstract:
Inflammatory cell death, or pyroptosis, is triggered by pathogenic infections or events. It is executed by caspase-1 (in the canonical pyroptosis pathway) or caspase-11 (noncanonical pathway), each via production of a cell-lytic domain from the pyroptosis effector protein gasdermin D through specific and limited proteolysis. Pyroptosis is accompanied by the release of inflammatory mediators, including the proteolytically processed forms of interleukin-1β (IL-1β) and IL-18. Given the similar inflammatory outcomes of the canonical and noncanonical pyroptosis pathways, we hypothesized that caspase-1 and -11 should have very similar activities and substrate specificities. To test this hypothesis, we purified recombinant murine caspases and analyzed their primary specificities by massive hybrid combinatorial substrate library (HyCoSuL) screens. We correlated the substrate preferences of each caspase with their activities on the recombinant natural substrates IL-1β, IL-18, and gasdermin D. Although we identified highly selective and robust peptidyl substrates for caspase-1, we were unable to do so for caspase-11, because caspase-1 cleaved even the best caspase-11 substrates equally well. Caspase-1 rapidly processed pro-IL-1β and -18, but caspase-11 processed these two pro-ILs extremely poorly. However, both caspase-1 and -11 efficiently produced the cell-lytic domain from the gasdermin D precursor. We hypothesize that caspase-11 may have evolved a specific exosite to selectively engage pyroptosis without directly activating pro-IL-1β or -18. In summary, comparing the activities of caspase-1 and -11 in HyCoSuL screens and with three endogenous protein substrates, we conclude that caspase-11 has highly restricted substrate specificity, preferring gasdermin D over all other substrates examined.
Insights
Pyroptosis, a form of inflammatory cell death, involves caspases. Caspase-11 specifically cleaves gasdermin D for pyroptosis, unlike caspase-1, which processes inflammatory cytokines.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Pyroptosis is an inflammatory cell death pathway crucial for host defense against pathogens.
- Canonical pyroptosis is mediated by caspase-1, while noncanonical pyroptosis involves caspase-11.
- Both pathways utilize gasdermin D (GSDMD) for cell lysis and release inflammatory cytokines like IL-1β and IL-18.
Purpose of the Study:
- To investigate the substrate specificities and activities of murine caspase-1 and caspase-11.
- To test the hypothesis that caspase-1 and caspase-11 possess similar enzymatic activities and substrate preferences.
- To elucidate the distinct roles of caspase-1 and caspase-11 in pyroptosis execution.
Main Methods:
- Purification of recombinant murine caspase-1 and caspase-11.
- Massive hybrid combinatorial substrate library (HyCoSuL) screening to determine primary substrate specificities.
- Assays measuring caspase activity on natural substrates: pro-IL-1β, pro-IL-18, and pro-GSDMD.
Main Results:
- Caspase-1 exhibited high specificity for defined peptidyl substrates.
- Caspase-11 showed broad substrate specificity, cleaving even preferred caspase-1 substrates.
- Caspase-1 efficiently processed pro-IL-1β and pro-IL-18, whereas caspase-11 processed them poorly.
- Both caspase-1 and caspase-11 effectively cleaved pro-GSDMD to produce the lytic domain.
Conclusions:
- Caspase-1 and caspase-11 display distinct substrate specificities and enzymatic activities.
- Caspase-11 possesses a highly restricted substrate specificity, primarily targeting gasdermin D.
- Caspase-11 may utilize a specific exosite to engage GSDMD for pyroptosis, independent of IL-1β/IL-18 processing.
- These findings highlight the specialized roles of different caspases in regulating inflammatory cell death.
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