4.7 Article

Activity-based probes trap early active intermediates during metacaspase activation

Journal

ISCIENCE
Volume 25, Issue 11, Pages -

Publisher

CELL PRESS
DOI: 10.1016/j.isci.2022.105247

Keywords

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Funding

  1. Slovenian Research Agency [P1-0179, J4-2550]
  2. Research Foundation-Flanders grant [FWO14/PDO/166]
  3. European Research Council [ERC-AdG-2020 101019324]

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This study developed activity-based probes for the three main types of Metacaspases and demonstrated the essential role of calcium in the activation process. The findings suggest the formation of active, unprocessed intermediates upon calcium binding before precursor protein maturation.
Metacaspases are essential cysteine proteases present in plants, fungi, and protists that are regulated by calcium binding and proteolytic maturation through mechanisms not yet understood. Here, we developed and validated activity-based probes for the three main metacaspase types, and used them to study calcium-mediated activation of metacaspases from their precursors in vitro. By combining substrate-inspired tetrapeptide probes containing an acyloxymethylketone (AOMK) reactive group, with purified representatives of type-I, type-II, and type-III metacaspases, we were able to demonstrate that labeling of mature metacaspases is strictly dependent on calcium. The probe with the highest affinity for all metacaspases also labels higher molecular weight proteoforms of all three metacaspases only in the presence of calcium, displaying the active, unprocessed metacaspase intermediates. Our data suggest that metacaspase activation proceeds through previously unknown active intermediates that are formed upon calcium binding, before precursor processing.

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