Pore-forming activity and structural autoinhibition of the gasdermin family
Explore this paper's citation graph
Summary
It is demonstrated that the liposome-leakage and pore-forming activities of the gasdermin-N domain are required for pyroptosis and provide insights into the roles of theGasdermin family in necrosis, immunity and diseases.
- Type
- article
- Published
- 2016-06-08
- Cited by
- 1,991
- References
- 43
- Access
- Open access
- OpenAlex
- https://openalex.org/W2418806051
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4391444
Keywords
Pyroptosis, Cardiolipin, Autophagy, Chemistry, Cell biology
References
- Functional Conservation of Gsdma Cluster Genes Specifically Duplicated in the Mouse Genome
- The deafness gene DFNA5 induces programmed cell death through mitochondria and MAPK-related pathways
- Nonsyndromic hearing impairment is associated with a mutation in DFNA5
- Cleavage of GSDMD by inflammatory caspases determines pyroptotic cell death
- Caspase-11 cleaves gasdermin D for non-canonical inflammasome signalling
- Structure and assembly of pore-forming proteins.
- Statistical potential for assessment and prediction of protein structures
- Defolliculated (dfl): a dominant mouse mutation leading to poor sebaceous gland differentiation and total elimination of pelage follicles.
- Pyroptotic cell death defends against intracellular pathogens
- Activation of the pseudokinase MLKL unleashes the four-helix bundle domain to induce membrane localization and necroptotic cell death
- A Bayesian View on Cryo-EM Structure Determination
- A new mutation Rim3 resembling Redenis mapped close to retinoic acid receptor alpha (Rara) gene on mouse Chromosome 11
- Mutations in the gene encoding pejvakin, a newly identified protein of the afferent auditory pathway, cause DFNB59 auditory neuropathy
- The mechanism of pore assembly for a cholesterol-dependent cytolysin: formation of a large prepore complex precedes the insertion of the transmembrane beta-hairpins.
- Dali server: conservation mapping in 3D
- Pathogenic pore-forming proteins: function and host response.
- SPIDER and WEB: processing and visualization of images in 3D electron microscopy and related fields.
- Ca2+-induced fusion of phospholipid vesicles monitored by mixing of aqueous contents
- The NLRC4 inflammasome receptors for bacterial flagellin and type III secretion apparatus
- Noncanonical Inflammasome Activation by Intracellular LPS Independent of TLR4
Cited by
- A bioluminescent caspase-1 activity assay rapidly monitors inflammasome activation in cells.
- Pyroptosis by Caspase11/4-Gasdermin-D Pathway in Alcoholic Hepatitis
- Structures of the gasdermin D C-terminal domains reveal mechanisms of autoinhibition
- Pyroptosis versus necroptosis: similarities, differences, and crosstalk
- Cell death and immunity: Gasdermins: the hole picture emerges
- GSDMD membrane pore formation constitutes the mechanism of pyroptotic cell death
- Active caspase-1 induces plasma membrane pores that precede pyroptotic lysis and are blocked by lanthanides
- Formation of membrane pores by gasdermin-N causes pyroptosis
- Lysosomes in programmed cell death pathways: from initiators to amplifiers
- P2X7 receptor-mediated TG2 externalization: a link to inflammatory arthritis?
- Pore formation by GSDMD is the effector mechanism of pyroptosis
- Hemorrhagic shock primes for lung vascular endothelial cell pyroptosis: role in pulmonary inflammation following LPS
- Nuclear Pore Permeabilization Is a Convergent Signaling Event in Effector-Triggered Immunity
- Pyroptosis is driven by non-selective gasdermin-D pore and its morphology is different from MLKL channel-mediated necroptosis
- Gasdermins pore cell membrane to pyroptosis
- The killer protein Gasdermin D
- Mechanism and regulation of NLRP3 inflammasome activation
- Deviant Behavior: Tick-Borne Pathogens and Inflammasome Signaling
- Plant Pathology: A Life and Death Struggle in Rice Blast Disease.
- Interrogating the relevance of mitochondrial apoptosis for vertebrate development and postnatal tissue homeostasis
Related papers
- Autophagy functions in programmed cell death
- Autophagy as initiator or executioner of cell death.
- Autophagy: Executor and Manager of Programmed Cell Death
- Autophagy is a survival force via suppression of necrotic cell death.
- Autophagic cell death
- Autophagic cell death: the story of a misnomer
- Cell death by autophagy: facts and apparent artefacts
- Autophagy-dependent cell death
- ‘Hints' in the killer protein gasdermin D: unveiling the secrets of gasdermins driving cell death