Gene Ontology annotation based on Enzyme Commission mapping
Manual transfer of experimentally-verified manual GO annotation data to orthologs by curator judgment of sequence similarity
Annotation inferences using phylogenetic trees
Gene Ontology annotation based on UniProtKB/Swiss-Prot keyword mapping
Gene Ontology annotation based on UniProtKB/Swiss-Prot Subcellular Location vocabulary mapping, accompanied by conservative changes to GO terms applied by UniProt
Automatic transfer of experimentally verified manual GO annotation data to orthologs using Ensembl Compara
Electronic Gene Ontology annotations created by ARBA machine learning models
Combined Automated Annotation using Multiple IEA Methods
The tumor necrosis factor-inducible zinc finger protein A20 interacts with TRAF1/TRAF2 and inhibits NF-kappaB activation.
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A20 interacts with TRAF1 and TRAF2 and inhibits NF-kB activation
"TRAF1 and TRAF2 interact with A20, a zinc finger protein, whose expression is induced by agents that activate NF-kappaB. Mutational analysis revealed that the N-terminal half of A20 interacts with the conserved C-terminal TRAF domain of TRAF1 and TRAF2. In cotransfection experiments, A20 blocked TRAF2-mediated NF-kappaB activation."
A20 inhibits NF-kappaB activation independently of binding to 14-3-3 proteins.
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A20 interacts with YWHAZ and YWHAH but inhibits NF-kB independently
"different isoforms of 14-3-3 proteins, viz. eta and zeta, are able to bind A20, involving the 14-3-3-binding motif RSKSDP located between zinc fingers 3 and 4. However, A20 mutants that no longer associated with 14-3-3 proteins could still fully inhibit NF-kappaB activation induced by tumor necrosis factor, interleukin-1beta or phorbol 12-myristate 13-acetate, thus excluding a crucial role for 14-3-3 interaction in this A20 function."
Functional redundancy of the zinc fingers of A20 for inhibition of NF-kappaB activation and protein-protein interactions.
Isolation and characterization of two novel A20-like proteins.
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A20 localizes to cytoplasm and nucleus; NF-kB inhibitory activity demonstrated
"The zinc finger molecule A20 is an important negative regulator of NF-kappa B. The mechanism utilized by A20 is not fully understood, but A20 has been shown to bind to tumour-necrosis-factor-receptor-associated factor (TRAF) molecules, which are necessary for pro-inflammatory cytokine signalling."
A20 inhibits tumor necrosis factor (TNF) alpha-induced apoptosis by disrupting recruitment of TRADD and RIP to the TNF receptor 1 complex in Jurkat T cells.
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A20 inhibits extrinsic apoptotic signaling via death domain receptors
"the zinc finger protein A20 is an NF-kappaB-inducible gene that can protect the IKKgamma-deficient cells from TNF-induced apoptosis by disrupting the recruitment of the death domain signaling molecules TRADD and RIP to the receptor signaling complex."
A20 protects from CD40-CD40 ligand-mediated endothelial cell activation and apoptosis.
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A20 protects endothelial cells from CD40-mediated NF-kB activation and apoptosis
"Coexpression of A20 inhibits NF-kappaB and upregulation of IkappaBalpha and E-Selectin but not TF, suggesting that CD40 induces TF in a non-NF-kappaB-dependent manner. In human coronary artery ECs (HCAECs), adenovirus-mediated overexpression of A20 blocks physiological, CD40-induced activation of NF-kappaB, upstream of IkappaBalpha degradation"
Zinc-finger protein A20, a regulator of inflammation and cell survival, has de-ubiquitinating activity.
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First demonstration of A20 deubiquitinase activity; Cys103 identified as catalytic residue
"Here we demonstrate that A20 is a de-ubiquitinating enzyme. It contains an N-terminal catalytic domain that belongs to the ovarian-tumour superfamily of cysteine proteases. A20 cleaved ubiquitin monomers from branched polyubiquitin chains linked through Lys48 or Lys63 and bound covalently to a thiol-group-reactive, ubiquitin-derived probe. Mutation of a conserved cysteine residue in the catalytic site (Cys103) abolished these activities."
A20 inhibits toll-like receptor 2- and 4-mediated interleukin-8 synthesis in airway epithelial cells.
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A20 negatively regulates TLR2 and TLR4 signaling pathways
"overexpression of A20 inhibited activation of both NF-kappaB and the IL-8 promoter by PGN or LPS in these cells. Taken together, our results suggest that A20 may function as a negative regulator of TLR-mediated inflammatory responses in the airway, thereby protecting the host against harmful overresponses to pathogens."
ABIN-2 forms a ternary complex with TPL-2 and NF-kappa B1 p105 and is essential for TPL-2 protein stability.
Functional proteomics mapping of a human signaling pathway.
De-ubiquitination and ubiquitin ligase domains of A20 downregulate NF-kappaB signalling.
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Landmark paper establishing A20 as dual ubiquitin-editing enzyme with OTU DUB and ZnF4 E3 ligase activities
"A20 downregulates NF-kappaB signalling through the cooperative activity of its two ubiquitin-editing domains. The amino-terminal domain of A20, which is a de-ubiquitinating (DUB) enzyme of the OTU (ovarian tumour) family, removes lysine-63 (K63)-linked ubiquitin chains from receptor interacting protein (RIP), an essential mediator of the proximal TNF receptor 1 (TNFR1) signalling complex. The carboxy-terminal domain of A20, composed of seven C2/C2 zinc fingers, then functions as a ubiquitin ligase by polyubiquitinating RIP with K48-linked ubiquitin chains, thereby targeting RIP for proteasomal degradation."
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A20 removes K63-linked polyubiquitin from RIPK1 and adds K48-linked chains targeting RIPK1 for proteasomal degradation
"The amino-terminal domain of A20, which is a de-ubiquitinating (DUB) enzyme of the OTU (ovarian tumour) family, removes lysine-63 (K63)-linked ubiquitin chains from receptor interacting protein (RIP), an essential mediator of the proximal TNF receptor 1 (TNFR1) signalling complex. The carboxy-terminal domain of A20, composed of seven C2/C2 zinc fingers, then functions as a ubiquitin ligase by polyubiquitinating RIP with K48-linked ubiquitin chains, thereby targeting RIP for proteasomal degradation."
A20 is a potent inhibitor of TLR3- and Sendai virus-induced activation of NF-kappaB and ISRE and IFN-beta promoter.
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A20 negatively regulates TLR3 signaling pathway
"A20, a NF-kappaB-inducible zinc finger protein that has been demonstrated to be an inhibitor of TNF-induced NF-kappaB activation and a physiological suppressor of inflammatory response, potently inhibited TLR3- and Sendai virus-mediated activation of ISRE and NF-kappaB and IFN-beta promoter in reporter gene assays."
ABIN-1 binds to NEMO/IKKgamma and co-operates with A20 in inhibiting NF-kappaB.
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A20 cooperates with TNIP1/ABIN-1 and interacts with IKBKG/NEMO to inhibit NF-kB
"ABIN-1 physically links A20 to NEMO/IKKgamma and facilitates A20-mediated de-ubiquitination of NEMO/IKKgamma, thus resulting in inhibition of NF-kappaB."
A20, a modulator of smooth muscle cell proliferation and apoptosis, prevents and induces regression of neointimal hyperplasia.
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A20 inhibits smooth muscle cell proliferation and regulates vascular wound healing
"A20 inhibits SMC proliferation via increased expression of cyclin-dependent kinase inhibitors p21waf1 and p27kip1. Surprisingly, A20 sensitizes SMC to cytokine- and Fas-mediated apoptosis through a novel NO-dependent mechanism."
Structure of the A20 OTU domain and mechanistic insights into deubiquitination.
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Crystal structure of A20 OTU domain at 3.2A; catalytic mechanism elucidated
"we describe the crystal structure of the N-terminal OTU (ovarian tumour) deubiquitinase domain of A20, which differs from other deubiquitinases but shares the minimal catalytic core with otubain-2. Analysis of conserved surface regions allows prediction of ubiquitin-binding sites for the proximal and distal ubiquitin molecules. Structural and biochemical analysis suggests a novel architecture of the catalytic triad"
Molecular basis for the unique deubiquitinating activity of the NF-kappaB inhibitor A20.
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Crystal structure at 2.5A; active site residues Asp70, Cys103, His256 characterized
"To elucidate the molecular basis for the DUB activity of A20, we determined its crystal structure and performed a series of biochemical and cell biological studies. The structure reveals the potential catalytic mechanism of A20, which may be significantly different from papain-like cysteine proteases."
T cell antigen receptor stimulation induces MALT1 paracaspase-mediated cleavage of the NF-kappaB inhibitor A20.
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MALT1 cleaves A20 during TCR stimulation, relieving NF-kB inhibition and increasing IL-2 production
"T cell antigen receptor stimulation induced recruitment of the NF-kappaB inhibitor A20 into a complex of MALT1 and the adaptor protein Bcl-10, leading to MALT1-mediated processing of A20. API2-MALT1 expression likewise resulted in cleavage of A20. MALT1 cleaved human A20 after arginine 439 and impaired its NF-kappaB-inhibitory function."
The zinc finger protein A20 targets TRAF2 to the lysosomes for degradation.
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A20 targets TRAF2 to lysosomes for degradation
"A20 is capable of targeting an associated signaling molecule such as TRAF2 to the lysosomes for degradation. This process is dependent on the membrane tethering zinc finger domains of A20, but does not require A20 ubiquitin modifying activity."
ABIN-1 is a ubiquitin sensor that restricts cell death and sustains embryonic development.
The ubiquitin-editing enzyme A20 requires RNF11 to downregulate NF-kappaB signalling.
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A20 requires RNF11 and interacts with TAX1BP1 and RIPK1 for NF-kB downregulation
"RNF11 interacted with the NF-kappaB inhibitor A20 and its regulatory protein TAX1BP1 in a stimulus-dependent manner. RNF11 negatively regulated RIP1 and TRAF6 ubiquitination upon stimulation with TNF and LPS, respectively. Furthermore, RNF11 was required for A20 to interact with and inactivate RIP1 to inhibit TNF-mediated NF-kappaB activation."
Identification of polyubiquitin binding proteins involved in NF-kappaB signaling using protein arrays.
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A20 binds polyubiquitin chains through zinc finger domains
"known NF-kappaB regulators including NEMO, A20, ABIN-1, ABIN-2, optineurin and p62 were also identified"
A20 negatively regulates T cell receptor signaling to NF-kappaB by cleaving Malt1 ubiquitin chains.
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A20 deubiquitinates K63-polyubiquitin chains on MALT1 during TCR signaling
"A20 regulates the strength and duration of the IKK/NF-kappaB response upon TCR/CD28 costimulation. By catalyzing the removal of K63-linked ubiquitin chains from Malt1, A20 prevents sustained interaction between ubiquitinated Malt1 and the IKK complex and thus serves as a negative regulator of inducible IKK activity."
A20 is an early responding negative regulator of Toll-like receptor 5 signalling in intestinal epithelial cells during inflammation.
The A20 deubiquitinase activity negatively regulates LMP1 activation of IRF7.
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Review documenting A20 DUB activity and role in ubiquitin editing
"A20 negatively regulates IRF7 transcriptional activity induced by LMP1. Deletion or mutation of A20 C-terminal zinc finger motifs had no effect on the inhibition of IRF7 activity, whereas DUB-deficient truncation or point mutation ablated the ability of A20 to inhibit IRF7."
MHC class II-associated proteins in B-cell exosomes and potential functional implications for exosome biogenesis.
A human MAP kinase interactome.
Ubiquitin binding to A20 ZnF4 is required for modulation of NF-κB signaling.
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Crystal structure of ZnF4-ubiquitin complex; ZnF4 ubiquitin binding required for NF-kB modulation
"A20 zinc finger 4 (ZnF4) does not directly interact with E2 enzymes but instead can bind mono-Ub and K63-linked poly-Ub. Mutations to the A20 ZnF4 Ub-binding surface result in decreased A20-mediated ubiquitination and impaired regulation of NF-κB signaling."
Role of the A20-TRAF6 axis in lipopolysaccharide-mediated osteoclastogenesis.
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A20 inhibits RANKL-induced NF-kB activation and osteoclast formation
"Silencing of A20 restored TRAF6 expression and NF-κB activation and resulted in increased bone resorption in LPS-treated cultures. A20 appeared important in the control of bone resorption and could represent a therapeutic target to treat patients with bone resorption associated with inflammatory diseases."
Endotoxin tolerance impairs IL-1 receptor-associated kinase (IRAK) 4 and TGF-beta-activated kinase 1 activation, K63-linked polyubiquitination and assembly of IRAK1, TNF receptor-associated factor 6, and IkappaB kinase gamma and increases A20 expression.
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A20 is required for LPS tolerance induction in macrophages
"Deficiencies in these signaling events in LPS-tolerant cells coincided with increased expression of A20, an essential deubiquitination enzyme, and sustained A20-IRAK1 associations"
Toward an understanding of the protein interaction network of the human liver.
Direct, noncatalytic mechanism of IKK inhibition by A20.
A20 inhibits LUBAC-mediated NF-κB activation by binding linear polyubiquitin chains via its zinc finger 7.
OTU deubiquitinases reveal mechanisms of linkage specificity and enable ubiquitin chain restriction analysis.
A proteome-scale map of the human interactome network.
A massively parallel pipeline to clone DNA variants and examine molecular phenotypes of human disease mutations.
Loss-of-function mutations in TNFAIP3 leading to A20 haploinsufficiency cause an early-onset autoinflammatory disease.
Molecular basis of Lys11-polyubiquitin specificity in the deubiquitinase Cezanne.
The deubiquitinating enzyme, ubiquitin-specific peptidase 50, regulates inflammasome activation by targeting the ASC adaptor protein.
A protein-protein interaction map of the TNF-induced NF-κB signal transduction pathway.
Physical and functional interaction between A20 and ATG16L1-WD40 domain in the control of intestinal homeostasis.
Extensive disruption of protein interactions by genetic variants across the allele frequency spectrum in human populations.
A reference map of the human binary protein interactome.
Dual proteome-scale networks reveal cell-specific remodeling of the human interactome.
A central chaperone-like role for 14-3-3 proteins in human cells.
K63polyUb-RIPK1 is deubiquitinated
Regulation of TNFR1 signaling
TNFAIP3 (A20) ubiquitinates RIPK1
TNFAIP3 (A20) deubiquitinates K63polyUb-RIPK1
OTUD7B,TNFAIP3 deubiquitinates TRAF6
TAX1BP1:TNFAIP3(A20) binds RIPK1-containing complexes
TNFAIP3 (A20) ubiquitinates RIPK1 with K48-linked Ub chains
TNFAIP3 (A20) deubiquitinates RIP2
TNFAIP3 in OTUD7B:TNFAIP3:ZRANB1 deubiquitinates K63polyUb-TRAF6
TAX1BP1:A20 inhibit TBK1/IKKi K63-polyubiquitination