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Author Spotlight: THP-1 Macrophage Response to LPS/ATP — Unveiling the Pyroptosis, Apoptosis, and Necroptosis Spectrum
Published on: May 3, 2024
Dynamic S-Acylation of GSDMA Regulates Pyroptosis
Zhipeng Tao1,2, Ritesh P Thakare3, Melyssa Cheung4,5
1Cutaneous Biology Research Center, Massachusetts General Hospital, Harvard Medical School, Charlestown, Massachusetts 02129, United States.
Abstract:
GSDMA, the primary member of the gasdermin family found in the skin, is critical for pathogen-induced pyroptosis during infection. Recent studies revealed that another gasdermin, GSDMD, undergoes palmitoylation during pyroptosis. However, whether and how the other gasdermin members undergo lipid modification remain poorly understood. Here, we demonstrate that GSDMA is S-acylated at the conserved cysteine residues in its N-terminal domain. We show that the S-acylation of GSDMA promotes pyroptosis by facilitating its membrane anchoring and protein oligomerization, a mechanism distinct from the palmitoylation of GSDMD at the N-terminal C191 residue. In addition, we present evidence that recombinant proteins of GSDMA and GSDMD can undergo S-acylation in vitro independent of palmitoyl transferases via direct interaction with palmitoyl-CoA. Furthermore, we identify ABHD17A as one of the deacylating enzymes that regulate the dynamic fatty acylation cycle of GSDMA. Overall, our studies reveal new molecular mechanisms underlying GSDMA function through S-acylation and underscore its important role in regulating pyroptosis mediated by GSDMA.
Insights
Gasdermin A (GSDMA) undergoes S-acylation, a lipid modification promoting pyroptosis by aiding membrane anchoring and oligomerization. This mechanism differs from GSDMD palmitoylation and involves ABHD17A regulation.
Area of Science:
- Cellular biology
- Immunology
- Molecular mechanisms of cell death
Background:
- Gasdermin A (GSDMA) is crucial for pyroptosis during infection.
- GSDMD is known to undergo palmitoylation, but lipid modifications of other gasdermins are unclear.
Purpose of the Study:
- To investigate lipid modifications of GSDMA.
- To elucidate the functional consequences of GSDMA S-acylation.
Main Methods:
- Biochemical assays to detect S-acylation.
- In vitro studies with recombinant proteins.
- Identification of deacylating enzymes.
Main Results:
- GSDMA is S-acylated at conserved N-terminal cysteine residues.
- S-acylation enhances GSDMA membrane anchoring and oligomerization, promoting pyroptosis.
- GSDMA and GSDMD can be S-acylated in vitro via direct interaction with palmitoyl-CoA.
- ABHD17A identified as a deacylating enzyme regulating GSDMA.
Conclusions:
- GSDMA S-acylation is a novel mechanism promoting pyroptosis, distinct from GSDMD palmitoylation.
- Lipid modification plays a key role in regulating GSDMA function during pyroptosis.
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