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E L Barsoumian

Publications and source records attributed to E L Barsoumian.

10 recordsLinked to original sources

Excitotoxicity mediated by Ca2+-permeable GluR4-containing AMPA receptors involves the AP-1 transcription factor.

Cells preferentially expressing GluR4-containing alpha-amino-3-hydroxy-5-methyl-4-isoxazole-propionic acid (AMPA) receptors are particularly sensitive to excitotoxicity mediated through non-N-methyl-D-aspartate receptors. However, the excitotoxic signalling pathways associated with GluR4-containing AMPA receptors are not known. In this work, we investigated the downstream signals coupled to excitotoxicity mediated by Ca2+-permeable GluR4-containing AMPA receptors, using a HEK 293 cell line constitutively expressing the GluR4flip subunit of AMPA receptors (HEK-GluR4). Glutamate stimulation of GluR4-containing AMPA receptors decreased cell viability, in a calcium-dependent manner, when the receptor desensitisation was prevented with cyclothiazide. The excitotoxic stimulation mediated through GluR4-containing AMPA receptors increased activator protein-1 (AP-1) DNA-binding activity. Inhibition of the AP-1 activity by overexpression of a c-Jun dominant-negative form protected HEK-GluR4 cells against excitotoxic damage. Taken together, the results indicate that overactivation of Ca2+-permeable GluR4-containing AMPA receptors is coupled to a death pathway mediated, at least in part, by the AP-1 transcription factor.

6-Cyano-7-nitroquinoxaline-2,3-dione↗

The lethal expression of the GluR2flip/GluR4flip AMPA receptor in HEK293 cells.

alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionate (AMPA) -type glutamate receptors play a critical role in excitotoxicity associated with cerebral hypoxia, ischaemia and other acute brain insults. AMPA receptors are composed of GluR1-GluR4 subunits in homomeric and heteromeric assemblies, forming nonselective cation channels. In addition, each subunit has alternative splice variants, flip and flop forms. Heterologous expression studies showed that the AMPA receptor channels exhibit diverse properties depending on subunit/variant composition. For example, the absence of the GluR2 subunit makes AMPA receptor assemblies Ca2+-permeable. Excitotoxicity induced by activating AMPA receptor channels has been linked to excessive Ca2+ influx through the GluR2-lacking channels. Here we demonstrate that coexpression of the AMPA receptor GluR2flip and GluR4flip subunits exerts a lethal effect on HEK293 cells, whereas no lethal activity is observed in other homomeric or heteromeric combinations of AMPA receptor subunits. Patch clamp recordings and Ca2+ imaging analyses have revealed that this GluR2flip/GluR4flip receptor exhibits a low Ca2+ permeability. This subunit combination, however, showed prolonged Na+ influx following AMPA stimulation, even in the absence of cyclothiazide, which attenuates AMPA receptor desensitization. Furthermore, the GluR2flip/GluR4flip-mediated lethality was potentiated by the interruption of cellular Na+ extrusion mechanisms using ouabain or benzamil. These observations suggest that the GluR2flip/GluR4flip receptor-mediated excitotoxicity is attributed to Na+ overload, but not Ca2+ influx.

6-Cyano-7-nitroquinoxaline-2,3-dione↗

Stable expression of human homomeric and heteromeric AMPA receptor subunits in HEK293 cells.

Human homomeric and heteromeric alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionate (AMPA)-type glutamate receptors (GluRs) were stably expressed in HEK293 cells with cDNAs encoding the flip splice variant of GluR1, GluR2, GluR3, GluR4 subunit, and the GluR1/GluR2, GluR3/GluR2, and GluR4/GluR2 combination. The lethal combination of GluR2 and GluR4 subunits was found in high expression levels of both receptors. The AMPA-evoked current voltage relationships demonstrated the functional channel properties, such as a double rectification in GluR1, GluR3, and GluR4 receptors, and a linear relation in receptors assembled from GluR2 alone and coexpression of GluR2 with the other subunits. All the transfectants exhibited higher selectivity for AMPA than glutamate in dose-dependent current responses. [3H]AMPA binding revealed that the homomeric and heteromeric receptors displayed a single binding site in Scatchard analysis, with dissociation constant (Kd) values in the range of 14.5-49.3 nM. The Bmax values were in the range of 0.57-7.66 pmol/mg protein. The ligand displacement potency for [3H]AMPA binding was CNQX > glutamate > NS257 in all of the transfectants. These results suggest that stable transformants expressing human homomeric and heteromeric AMPA receptors will be useful tools to define selectivity and potential site of action for AMPA receptor modulators.

6-Cyano-7-nitroquinoxaline-2,3-dione↗

Molecular cloning and characterization of a human brain ryanodine receptor.

We have cloned and sequenced the cDNA of the human brain ryanodine receptor (RyR3), which is composed of 4866 amino acids and shares characteristic structural features with the rabbit RyR3. Northern blot analysis shows that the human RyR3 mRNA is abundantly expressed in hippocampus, caudate nucleus and amygdala as well as in skeletal muscle. The human RyR3 mRNA is also detected in several cell lines derived from human brain tumors. Functional expression of RyR3 and a chimeric RyR suggests that RyR3 forms a calcium-release channel with a very low Ca2+ sensitivity.

Animals↗

Generation of cell transfectants expressing cardiac calcium ion channel and calcium indicator protein aequorin.

Chinese hamster ovary (CHO) cells stably coexpressing cardiac calcium ion channel [L-type calcium channel or ryanodine receptor (RyR)] and the calcium-sensitive bioluminescent protein aequorin were generated by transfecting aequorin cDNA. In a selected clone, C1-17, carrying the L-type calcium channel, depolarization induced by high concentration of K+ produces aequorin luminescence. In another clone, R3-7, carrying RyR, caffeine produces aequorin luminescence. In the presence of selective calcium ion channel blockers, the aequorin luminescence was inhibited in a dose-dependent manner. These results indicate that functionally expressed calcium ion channels in these transformants can be monitored through the activation of endogenous aequorin luminescence following a physiological signal similar to that of native calcium channel. Moreover, the aequorin system compared very well with Fura-2 measurements. Thus, the recombinant cell models, which expressed cloned calcium channel and aequorin, will contribute to the elucidation of Ca2+ movement through the cell surface and intracellular calcium ion channels.

Aequorin↗

Three distinct IL-2 signaling pathways mediated by bcl-2, c-myc, and lck cooperate in hematopoietic cell proliferation.

Two interleukin-2 receptor-dependent signaling pathways have thus far been identified: the c-fos/c-jun induction pathway mediated by src family protein-tyrosine kinases and the c-myc induction pathway. Here, we provide evidence for the existence of a third, rapamycin-sensitive pathway, which results in the induction of another proto-oncogene, bcl-2. In the hematopoietic cell line BAF-B03, the expression of any two of lckF505 (an active form of p56lck), Bcl-2, or c-Myc is sufficient to promote transit of the cell cycle, regardless of the activation state of the third pathway. We also provide evidence that epidermal growth factor receptor signaling may act through the same pathway that involves p56lck. These studies demonstrate a novel approach to dissecting signaling pathways regulating cellular proliferation.

Animals↗

[Relation between structure and anti-viral activity in interferon system].

The interferons (IFN) were discovered in 1957 as biological agents interfering with viral replication. IFNs were initially classified according to their sources as leukocyte, fibroblast and immune IFNs. Both leukocyte and fibroblast IFNs are designated as Type I IFNs and immune IFN as a Type II IFN. There are almost twenty related IFNs which belong to the group of Type I IFN. IFN-alpha 2 and IFN-omega 1 are described as members of the large group of Type I IFN. Both natural IFN-alpha 2 and IFN-omega 1 are isolated from human leukocytes. IFN-alpha 2 carries an O-linked carbohydrate moiety, whereas IFN-omega 1 has an N-linked complex oligosaccharide. Recombinant IFN-alpha 2 expressed in E coli. and Sf-9 cells have been characterized. Moreover, recombinant IFN-omega 1 expressed in CHO cells and Sf-9 cells have also been characterized. In the present study, the recombinant human IFN-alpha 2 and IFN-omega 1 were analyzed for their anti-viral activity compared with native products.

Animals↗

Functional dissection of p56lck, a protein tyrosine kinase which mediates interleukin-2-induced activation of the c-fos gene.

Members of the newly identified receptor family for cytokines characteristically lack the intrinsic protein tyrosine kinase domain that is a hallmark of other growth factor receptors. Instead, accumulating evidence suggests that these receptors utilize nonreceptor-type protein tyrosine kinases for downstream signal transduction by cytokines. We have shown previously that the interleukin-2 receptor beta-chain interacts both physically and functionally with a Src family member, p56lck, and that p56lck activation leads to induction of the c-fos gene. However, the mechanism linking p56lck activation with c-fos induction remains unelucidated. In the present study, we systematically examined the extent of c-fos promoter activation by expression of a series of p56lck mutants, using a transient cotransfection assay. The results define a set of the essential amino acid residues that regulate p56lck induction of the c-fos promoter. We also provide evidence that the serum-responsive element and sis-inducible element are both targets through which p56lck controls c-fos gene activation.

Base Sequence↗

Signal transduction by interleukin 2 receptor beta chain: importance of the structural integrity as revealed by site-directed mutagenesis and generation of chimeric receptors.

The functional interleukin 2 receptor (IL-2R) consists of at least two IL-2 binding cell surface molecules, IL-2R alpha and IL-2R beta, the latter component being responsible for the intracellular growth signal transduction. In this study we attempted to identify the critical amino acid residues in the cytoplasmic domain of human IL-2R beta for such signal transduction by expressing mutated IL-2R beta cDNAs in a pro-B cell line, BAF-B03. We demonstrate that a single amino acid substitution within the 'serine-rich' cytoplasmic region of IL-2R beta (i.e. Leu299 changed to Pro) completely abrogates the receptor function in growth stimulation, but not in ligand binding. We also show that the murine erythropoietin receptor (EPO-R) is functional in BAF-B03, but that chimeric receptors, essentially possessing the IL-2R beta extracellular and a homologous region derived from EPO-R cytoplasmic domain, are not capable of transducing the IL-2-induced signal.

Amino Acid Sequence↗

Induction of endogenous IFN-alpha and IFN-beta genes by a regulatory transcription factor, IRF-1.

Interferons (IFNs) have an important role in cell growth and differentiation. The most well-known function of IFNs is their antiviral activity; viral infections result in induction of the transcription of the IFN-alpha and IFN-beta genes. Recently we isolated the gene encoding a transcription factor, IRF-1, that may play a part in the induction of IFN genes. Interestingly, the IRF-1 gene itself is virus-inducible, suggesting the importance of de novo production of IRF-1 in IFN gene induction. Here we show that high-level expression of the cloned mouse IRF-1 gene in monkey COS cells results in the induction of endogenous IFN-alpha and IFN-beta genes without viral stimulation. Furthermore, we demonstrate the induction of these genes by an IRF-1/yeast GAL4 chimaeric transcription factor. This may be the first demonstration of the specific induction of silent chromosomal genes by transfection of a single transcription factor gene in mammalian cells.

Animals↗