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MALT1 is not alone after all: identification of novel paracaspases
Paco Hulpiau1,2, Yasmine Driege1,2, Jens Staal3,4
1Inflammation Research Center, VIB, Ghent, Belgium.
Abstract:
Paracaspases and metacaspases are two families of caspase-like proteins identified in 2000. Up until now paracaspases were considered a single gene family with one known non-metazoan paracaspase in the slime mold Dictyostelium and a single animal paracaspase called MALT1. Human MALT1 is a critical signaling component in many innate and adaptive immunity pathways that drive inflammation, and when it is overly active, it can also cause certain forms of cancer. Here, we report the identification and functional analysis of two new vertebrate paracaspases, PCASP2 and PCASP3. Functional characterization indicates that both scaffold and protease functions are conserved across the three vertebrate paralogs. This redundancy might explain the loss of two of the paralogs in mammals and one in Xenopus. Several of the vertebrate paracaspases currently have incorrect or ambiguous annotations. We propose to annotate them accordingly as PCASP1, PCASP2, and PCASP3 similar to the caspase gene nomenclature. A comprehensive search in other metazoans and in non-metazoan species identified additional new paracaspases. We also discovered the first animal metacaspase in the sponge Amphimedon. Comparative analysis of the active site suggests that paracaspases constitute one of the several subclasses of metacaspases that have evolved several times independently.
Insights
Researchers identified new vertebrate paracaspases (PCASP2, PCASP3) and the first animal metacaspase. This expands our understanding of caspase-like proteins in immunity and evolution.
Area of Science:
- Biochemistry
- Evolutionary Biology
- Immunology
Background:
- Paracaspases and metacaspases are caspase-like protein families identified in 2000.
- Human MALT1 (a paracaspase) is crucial in immunity and linked to cancer when overactive.
Purpose of the Study:
- Identify and functionally analyze new vertebrate paracaspases.
- Clarify paracaspase and metacaspase evolution and classification.
- Propose standardized nomenclature for vertebrate paracaspases.
Main Methods:
- Bioinformatic searches across metazoan and non-metazoan species.
- Functional characterization of new paracaspase paralogs.
- Comparative analysis of active site structures.
Main Results:
- Identified two new vertebrate paracaspases, PCASP2 and PCASP3.
- Confirmed conserved scaffold and protease functions across vertebrate paralogs.
- Discovered the first animal metacaspase in the sponge Amphimedon.
- Found evidence that paracaspases are a subclass of metacaspases evolved independently.
Conclusions:
- The discovery of PCASP2 and PCASP3 expands the known vertebrate paracaspase family.
- Conserved functions suggest functional redundancy and explain paralog loss in some species.
- Standardized nomenclature (PCASP1, PCASP2, PCASP3) is proposed for clarity.
- Paracaspases represent an independently evolved subclass within the broader metacaspase superfamily.
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