SCUBA

GSDMD — Gasdermin D

GSDMD belongs to a gene co-expression module in 7 of 28 SCUBA cell types. Each module groups genes that rise and fall together in that cell type; the genes it shares a module with are its closest co-expression partners there.

GSDMD's module in each cell type

Cell typeModuleShares the module with
CD4⁺ T cellsJAK-STAT Signaling
Immune regulation
ARHGAP30, CELF2, DDX17, DNAJC1, HCLS1, JAK3, MBNL1, N4BP2L2 +7 moreView in SCUBA
EndothelialComplement Innate Immune
Inflammation
C1R, C1S, CD47, CNDP2, COL5A2, CTSS, GRINA, LGALS9 +9 moreView in SCUBA
Gamma-delta T cellsT cell Survival
T cell maturation
ARFRP1, BCL2L1, C6orf47, CHD9, DAXX, DEF6, DENND2D, DHPS +26 more
Goblet cellsPyroptosis Stress Response
Stress
ADAM15, AURKAIP1, CDC37, CENPX, COMTD1, DDX39A, EEF1D, INF2 +6 moreView in SCUBA
Innate lymphoid cellsILC1 Inflammatory Activation
Inflammation
ABHD15, ALDOC, ARL2BP, C20orf204, CCL20, CPNE7, EIPR1, ERG28 +21 moreView in SCUBA
MacrophagesInflammasome Pyroptosis
Inflammatory
ARRDC1, ATOX1, CSTA, EMP2, ENPP2, FBXO6, HLA-DQB2, IL18 +12 moreView in SCUBA
Mucosal-associated invariant T cellOxidative Stress Response
Stress
ATIC, CD244, CYTH4, EIF2S2, GPR68, ING4, KEAP1, MCM3 +11 more

About the gene

SynonymsDF5L, FLJ12150, GSDMDC1
Chromosome8: 143553207-143563062
Predicted locationIntracellular
Essential geneNo
Protein classPredicted intracellular proteins, Transporters
Biological processImmunity, Inflammatory response, Innate immunity, Necrosis, Transcription, Transcription regulation

Function

Precursor of a pore-forming protein that plays a key role in host defense against pathogen infection and danger signals. This form constitutes the precursor of the pore-forming protein: upon cleavage, the released N-terminal moiety (Gasdermin-D, N-terminal) binds to membranes and forms pores, triggering pyroptosis. Promotes pyroptosis in response to microbial infection and danger signals. Produced by the cleavage of gasdermin-D by inflammatory caspases CASP1, CASP4 or CASP5 in response to canonical, as well as non-canonical (such as cytosolic LPS) inflammasome activators. After cleavage, moves to the plasma membrane where it strongly binds to inner leaflet lipids, including monophosphorylated phosphatidylinositols, such as phosphatidylinositol 4-phosphate, bisphosphorylated phosphatidylinositols, such as phosphatidylinositol (4,5)-bisphosphate, as well as phosphatidylinositol (3,4,5)-bisphosphate, and more weakly to phosphatidic acid and phosphatidylserine. Homooligomerizes within the membrane and forms pores of 10-15 nanometers (nm) of inner diameter, allowing the release of mature interleukin-1 (IL1B and IL18) and triggering pyroptosis. Gasdermin pores also allow the release of mature caspase-7 (CASP7) (By similarity). In some, but not all, cells types, pyroptosis is followed by pyroptotic cell death, which is caused by downstream activation of ninjurin-1 (NINJ1), which mediates membrane rupture (cytolysis). Also forms pores in the mitochondrial membrane, resulting in release of mitochondrial DNA (mtDNA) into the cytosol (By similarity). Gasdermin-D, N-terminal released from pyroptotic cells into the extracellular milieu rapidly binds to and kills both Gram-negative and Gram-positive bacteria, without harming neighboring mammalian cells, as it does not disrupt the plasma membrane from the outside due to lipid-binding specificity. Under cell culture conditions, also active against intracellular bacteria, such as Listeria monocytogenes (By similarity). Also active in response to MAP3K7/TAK1 inactivation by Yersinia toxin YopJ, which triggers cleavage by CASP8 and subsequent activation (By similarity). Required for mucosal tissue defense against enteric pathogens (By similarity). Activation of the non-canonical inflammasome in brain endothelial cells can lead to excessive pyroptosis, leading to blood-brain barrier breakdown (By similarity). Strongly binds to bacterial and mitochondrial lipids, including cardiolipin. Does not bind to unphosphorylated phosphatidylinositol, phosphatidylethanolamine nor phosphatidylcholine. Transcription coactivator produced by the cleavage by CASP3 or CASP7 in the upper small intestine in response to dietary antigens (By similarity). Required to maintain food tolerance in small intestine: translocates to the nucleus and acts as a coactivator for STAT1 to induce the transcription of CIITA and MHC class II molecules, which in turn induce type 1 regulatory T (Tr1) cells in upper small intestine (By similarity). Produced by the cleavage by papain allergen. After cleavage, moves to the plasma membrane and homooligomerizes within the membrane and forms pores of 10-15 nanometers (nm) of inner diameter, allowing the specific release of mature interleukin-33 (IL33), promoting type 2 inflammatory immune response

Human Protein Atlas · Open Targets · UniProt

Gene annotation from the Human Protein Atlas and UniProt; see sources & licences.