The 10,400- and 14,500-dalton proteins encoded by region E3 of adenovirus function together to protect many but not all mouse cell lines against lysis by tumor necrosis factor
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Identification of a cell protein (FIP-3) as a modulator of NF-kappaB activity and as a target of an adenovirus inhibitor of tumor necrosis factor alpha-induced apoptosisInteraction of an adenovirus 14.7-kilodalton protein inhibitor of tumor necrosis factor alpha cytolysis with a new member of the GTPase superfamily of signal transducersInteraction of an adenovirus E3 14.7-kilodalton protein with a novel tumor necrosis factor alpha-inducible cellular protein containing leucine zipper domainsRegulation of apoptosis by viral gene productsMurine cytomegalovirus m41 open reading frame encodes a Golgi-localized antiapoptotic protein.Novel role for E4 region genes in protection of adenovirus vectors from lysis by cytotoxic T lymphocytesInhibition of TRAIL-induced apoptosis and forced internalization of TRAIL receptor 1 by adenovirus proteins.Molecular and epidemiological analyses of human adenovirus type 7 strains isolated from the 1995 nationwide outbreak in JapanLentivectors encoding immunosuppressive proteins genetically engineer pancreatic beta-cells to correct diabetes in allogeneic mice.Adenovirus E3-6.7K maintains calcium homeostasis and prevents apoptosis and arachidonic acid release.The adenovirus E3 RID complex protects some cultured human T and B lymphocytes from Fas-induced apoptosis.Inhibition of chemokine expression by adenovirus early region three (E3) genes.Human adenovirus type 37 and the BALB/c mouse: progress toward a restricted adenovirus keratitis model (an American Ophthalmological Society thesis)The adenovirus E3 10.4K and 14.5K proteins, which function to prevent cytolysis by tumor necrosis factor and to down-regulate the epidermal growth factor receptor, are localized in the plasma membraneRegion E3 of subgroup B human adenoviruses encodes a 16-kilodalton membrane protein that may be a distant analog of the E3-6.7K protein of subgroup C adenoviruses.Induction of susceptibility to tumor necrosis factor by E1A is dependent on binding to either p300 or p105-Rb and induction of DNA synthesisThe adenovirus death protein (E3-11.6K) is required at very late stages of infection for efficient cell lysis and release of adenovirus from infected cells.The adenovirus E3-14.7K protein and the E3-10.4K/14.5K complex of proteins, which independently inhibit tumor necrosis factor (TNF)-induced apoptosis, also independently inhibit TNF-induced release of arachidonic acid.Analysis of early region 3 mutants of mouse adenovirus type 1Adenovirus E3-10.4K/14.5K protein complex inhibits tumor necrosis factor-induced translocation of cytosolic phospholipase A2 to membranes.Adenovirus E3 14.7-kilodalton protein, an antagonist of tumor necrosis factor cytolysis, increases the virulence of vaccinia virus in severe combined immunodeficient mice.The adenovirus E3-10.4K/14.5K complex mediates loss of cell surface Fas (CD95) and resistance to Fas-induced apoptosisE1B 19K inhibits Fas-mediated apoptosis through FADD-dependent sequestration of FLICE.Identification of a new human adenovirus protein encoded by a novel late l-strand transcription unit.The adenovirus E3 14.7-kilodalton protein which inhibits cytolysis by tumor necrosis factor increases the virulence of vaccinia virus in a murine pneumonia model.Characterization of transgenic mice containing adenovirus early region 3 genomic DNAFunctional complementation of the adenovirus E1B 19-kilodalton protein with Bcl-2 in the inhibition of apoptosis in infected cellsDeletion mutation analysis of the adenovirus type 2 E3-gp19K protein: identification of sequences within the endoplasmic reticulum lumenal domain that are required for class I antigen binding and protection from adenovirus-specific cytotoxic T lymphCharacterization of mutants within the gene for the adenovirus E3 14.7-kilodalton protein which prevents cytolysis by tumor necrosis factor.The adenovirus E3 14.5-kilodalton protein, which is required for down-regulation of the epidermal growth factor receptor and prevention of tumor necrosis factor cytolysis, is an integral membrane protein oriented with its C terminus in the cytoplasmMap of cis-acting sequences that determine alternative pre-mRNA processing in the E3 complex transcription unit of adenovirus.The 19-kilodalton adenovirus E1B transforming protein inhibits programmed cell death and prevents cytolysis by tumor necrosis factor alphaAdenovirus E3-6.7K protein is required in conjunction with the E3-RID protein complex for the internalization and degradation of TRAIL receptor 2Viral proteins E1B19K and p35 protect sympathetic neurons from cell death induced by NGF deprivation.The adenovirus e3 promoter is sensitive to activation signals in human T cells.Suppression of Type I Interferon Signaling by E1A via RuvBL1/Pontin.The cytomegaloviral protein pUL138 acts as potentiator of tumor necrosis factor (TNF) receptor 1 surface density to enhance ULb'-encoded modulation of TNF-α signaling.The role of mouse adenovirus type 1 early region 1A in acute and persistent infections in mice.The role of human adenovirus early region 3 proteins (gp19K, 10.4K, 14.5K, and 14.7K) in a murine pneumonia model.Genetic organization, size, and complete sequence of early region 3 genes of human adenovirus type 41
P2860
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P2860
The 10,400- and 14,500-dalton proteins encoded by region E3 of adenovirus function together to protect many but not all mouse cell lines against lysis by tumor necrosis factor
description
1991 nî lūn-bûn
@nan
1991年の論文
@ja
1991年論文
@yue
1991年論文
@zh-hant
1991年論文
@zh-hk
1991年論文
@zh-mo
1991年論文
@zh-tw
1991年论文
@wuu
1991年论文
@zh
1991年论文
@zh-cn
name
The 10,400- and 14,500-dalton ...... lysis by tumor necrosis factor
@en
type
label
The 10,400- and 14,500-dalton ...... lysis by tumor necrosis factor
@en
prefLabel
The 10,400- and 14,500-dalton ...... lysis by tumor necrosis factor
@en
P2093
P2860
P1433
P1476
The 10,400- and 14,500-dalton ...... lysis by tumor necrosis factor
@en
P2093
A E Tollefson
L R Gooding
P Duerksen-Hughes
T M Horton
T S Ranheim
P2860
P304
P407
P577
1991-08-01T00:00:00Z