Functional and Evolutionary Analyses Identify Proteolysis as a General Mechanism for NLRP1 Inflammasome Activation.
Inflammasomes are cytosolic multi-protein complexes that initiate immune responses to infection by recruiting and activating the Caspase-1 protease. Human NLRP1 was the first protein shown to form an inflammasome, but its physiological mechanism of activation remains unknown. Recently, specific vari...
Main Authors: | , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Public Library of Science (PLoS)
2016-12-01
|
Series: | PLoS Pathogens |
Online Access: | http://europepmc.org/articles/PMC5142783?pdf=render |
id |
doaj-54bf8ebda9504fe9a0eef76e9cb63b83 |
---|---|
record_format |
Article |
spelling |
doaj-54bf8ebda9504fe9a0eef76e9cb63b832020-11-25T02:35:19ZengPublic Library of Science (PLoS)PLoS Pathogens1553-73661553-73742016-12-011212e100605210.1371/journal.ppat.1006052Functional and Evolutionary Analyses Identify Proteolysis as a General Mechanism for NLRP1 Inflammasome Activation.Joseph Chavarría-SmithPatrick S MitchellAlvin M HoMatthew D DaughertyRussell E VanceInflammasomes are cytosolic multi-protein complexes that initiate immune responses to infection by recruiting and activating the Caspase-1 protease. Human NLRP1 was the first protein shown to form an inflammasome, but its physiological mechanism of activation remains unknown. Recently, specific variants of mouse and rat NLRP1 were found to be activated upon N-terminal cleavage by the anthrax lethal factor protease. However, agonists for other NLRP1 variants, including human NLRP1, are not known, and it remains unclear if they are also activated by proteolysis. Here we demonstrate that two mouse NLRP1 paralogs (NLRP1AB6 and NLRP1BB6) are also activated by N-terminal proteolytic cleavage. We also demonstrate that proteolysis within a specific N-terminal linker region is sufficient to activate human NLRP1. Evolutionary analysis of primate NLRP1 shows the linker/cleavage region has evolved under positive selection, indicative of pathogen-induced selective pressure. Collectively, these results identify proteolysis as a general mechanism of NLRP1 inflammasome activation that appears to be contributing to the rapid evolution of NLRP1 in rodents and primates.http://europepmc.org/articles/PMC5142783?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Joseph Chavarría-Smith Patrick S Mitchell Alvin M Ho Matthew D Daugherty Russell E Vance |
spellingShingle |
Joseph Chavarría-Smith Patrick S Mitchell Alvin M Ho Matthew D Daugherty Russell E Vance Functional and Evolutionary Analyses Identify Proteolysis as a General Mechanism for NLRP1 Inflammasome Activation. PLoS Pathogens |
author_facet |
Joseph Chavarría-Smith Patrick S Mitchell Alvin M Ho Matthew D Daugherty Russell E Vance |
author_sort |
Joseph Chavarría-Smith |
title |
Functional and Evolutionary Analyses Identify Proteolysis as a General Mechanism for NLRP1 Inflammasome Activation. |
title_short |
Functional and Evolutionary Analyses Identify Proteolysis as a General Mechanism for NLRP1 Inflammasome Activation. |
title_full |
Functional and Evolutionary Analyses Identify Proteolysis as a General Mechanism for NLRP1 Inflammasome Activation. |
title_fullStr |
Functional and Evolutionary Analyses Identify Proteolysis as a General Mechanism for NLRP1 Inflammasome Activation. |
title_full_unstemmed |
Functional and Evolutionary Analyses Identify Proteolysis as a General Mechanism for NLRP1 Inflammasome Activation. |
title_sort |
functional and evolutionary analyses identify proteolysis as a general mechanism for nlrp1 inflammasome activation. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS Pathogens |
issn |
1553-7366 1553-7374 |
publishDate |
2016-12-01 |
description |
Inflammasomes are cytosolic multi-protein complexes that initiate immune responses to infection by recruiting and activating the Caspase-1 protease. Human NLRP1 was the first protein shown to form an inflammasome, but its physiological mechanism of activation remains unknown. Recently, specific variants of mouse and rat NLRP1 were found to be activated upon N-terminal cleavage by the anthrax lethal factor protease. However, agonists for other NLRP1 variants, including human NLRP1, are not known, and it remains unclear if they are also activated by proteolysis. Here we demonstrate that two mouse NLRP1 paralogs (NLRP1AB6 and NLRP1BB6) are also activated by N-terminal proteolytic cleavage. We also demonstrate that proteolysis within a specific N-terminal linker region is sufficient to activate human NLRP1. Evolutionary analysis of primate NLRP1 shows the linker/cleavage region has evolved under positive selection, indicative of pathogen-induced selective pressure. Collectively, these results identify proteolysis as a general mechanism of NLRP1 inflammasome activation that appears to be contributing to the rapid evolution of NLRP1 in rodents and primates. |
url |
http://europepmc.org/articles/PMC5142783?pdf=render |
work_keys_str_mv |
AT josephchavarriasmith functionalandevolutionaryanalysesidentifyproteolysisasageneralmechanismfornlrp1inflammasomeactivation AT patricksmitchell functionalandevolutionaryanalysesidentifyproteolysisasageneralmechanismfornlrp1inflammasomeactivation AT alvinmho functionalandevolutionaryanalysesidentifyproteolysisasageneralmechanismfornlrp1inflammasomeactivation AT matthewddaugherty functionalandevolutionaryanalysesidentifyproteolysisasageneralmechanismfornlrp1inflammasomeactivation AT russellevance functionalandevolutionaryanalysesidentifyproteolysisasageneralmechanismfornlrp1inflammasomeactivation |
_version_ |
1724804057302827008 |