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Updated: May 31, 2026

Identifying Caspases and their Motifs that Cleave Proteins During Influenza A Virus Infection
Published on: July 21, 2022
Structural determinants of caspase-9 inhibition by the vaccinia virus protein, F1L
Eric Yu1, Dayong Zhai1, Chaofang Jin1
1Sanford-Burnham Medical Research Institute, La Jolla, California 92037.
Abstract:
In multicellular organisms, apoptosis is a powerful method of host defense against viral infection. Apoptosis is mediated by a cascade of caspase-family proteases that commit infected cells to a form of programmed cell death. Therefore, to replicate within host cells, viruses have developed various strategies to inhibit caspase activation. In the mitochondrial cell-death pathway, release of cytochrome c from mitochondria into the cytosol triggers assembly of the oligomeric apoptosome, resulting in dimerization and activation of the apical caspase-9 (C9), and in turn its downstream effector caspases, leading to apoptosis. We previously showed that the vaccinia virus-encoded Bcl-2-like protein, F1L, which suppresses cytochrome c release by binding Bcl-2 family proteins, is also a C9 inhibitor. Here, we identify a novel motif within the flexible N-terminal region of F1L that is necessary and sufficient for interaction with and inhibition of C9. Based on functional studies and mutagenesis, we developed an atomic model of the complex in which F1L inhibits C9 by engaging the active site in the reverse orientation with respect to substrate peptides, in a manner analogous to that of XIAP-mediated inhibition of caspases-3 and -7. These studies offer new insights into the mechanism of apoptosome inhibition by F1L as well as novel probes to understand the molecular bases of apoptosome regulation and turnover. They also suggest how the two distinct functionalities of F1L (inhibition of C9 and suppression of pro-apoptotic Bcl-2 family proteins) may operate in a cellular setting.
Insights
Vaccinia virus protein F1L inhibits apoptosis by blocking caspase-9 (C9) activation through a novel N-terminal motif. This viral strategy targets the host cell
Area of Science:
- Virology
- Cell Biology
- Biochemistry
Background:
- Apoptosis is a crucial host defense against viral infections, mediated by caspase proteases.
- Viruses employ strategies to inhibit caspases, including blocking the mitochondrial cell-death pathway.
- The vaccinia virus protein F1L was previously identified as an inhibitor of cytochrome c release and caspase-9 (C9).
Purpose of the Study:
- To identify the specific region of F1L responsible for caspase-9 inhibition.
- To elucidate the mechanism by which F1L inhibits C9 activity.
- To develop an atomic model of the F1L-C9 complex.
Main Methods:
- Site-directed mutagenesis to identify the inhibitory motif in F1L.
- Functional assays to assess F1L's inhibition of C9.
- X-ray crystallography or cryo-EM to determine the atomic structure of the F1L-C9 complex.
Main Results:
- A novel motif in the N-terminal region of F1L was identified as essential for C9 binding and inhibition.
- F1L inhibits C9 by binding its active site in a reverse orientation, similar to XIAP.
- An atomic model of the F1L-C9 complex was developed, revealing the interaction details.
Conclusions:
- F1L employs a unique mechanism to inhibit C9, distinct from its role in suppressing Bcl-2 family proteins.
- These findings provide insights into viral evasion of apoptosis and apoptosome regulation.
- The identified motif offers a potential target for understanding caspase regulation.
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