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M Melli

Publications and source records attributed to M Melli.

At least 37 records · Page 2Linked to original sources

The chicken IL-1 receptor: differential evolution of the cytoplasmic and extracellular domains.

The evolutionary conservation of a sequence or part of it can help to identify the essential functional and structural domains within a protein. We have cloned and characterised a cDNA coding for the type-I interleukin-1 receptor (IL-1R) of chick (ch) embryo fibroblasts. The comparison of the amino acid (aa) sequences of the avian with that of murine (m) and human (h) IL-1Rs shows a 60% homology. The intracellular domain is the most conserved region of the chIL-1R, showing 76-79% homology to the murine and human sequences, respectively. The striking conservation of the cytoplasmic region of the receptor is confirmed by its homology with the Toll receptor protein of Drosophila melanogaster. The alignment between the chicken and D. melanogaster proteins shows the presence of four aa blocks with more than 80% homology. The possible functional significance of this homology is discussed. The extracellular binding region of the receptor has a clearly recognisable immunoglobulin-like structure although the sequence divergence is higher than in the cytoplasmic domain.

Amino Acid Sequence↗

Amino acids conserved in interleukin-1 receptors (IL-1Rs) and the Drosophila toll protein are essential for IL-1R signal transduction.

The cytoplasmic domain of the human T cell-type interleukin-1 receptor (hIL-1R) is not involved in the binding, internalization, or nuclear localization of interleukin-1 (IL-1), but is essential for signal transduction. We have previously localized a 50-amino acid region (residues 477-527) critical for IL-1-mediated activation of the interleukin-2 promoter in T cells. This region displays a striking degree of amino acid conservation in human, murine, and chicken IL-1Rs. Here we report the results of a site-directed mutational analysis of the cytoplasmic domain of the hIL-1R. We have introduced single-amino acid substitutions at positions conserved in all three receptors and at nonconserved positions and identified key amino acids for IL-1R function in signal transduction. Three basic (Arg431, Lys515, and Arg518) and 3 aromatic (Phe513, Trp514, and Tyr519) amino acids that are conserved in human, murine, and chicken IL-1Rs could not be replaced without abolishing IL-1R-mediated signal transduction. A substitution at another conserved position (Pro521) reduces significantly the ability of the IL-1R to transmit the IL-1 signal. Nonconserved residues could be replaced without affecting signal transduction. The cytoplasmic domain of the IL-1R is related to that of the Drosophila Toll protein, with a 26% identity and a 43% similarity in amino acid sequence. The amino acids shown to be essential for IL-1R function are conserved in the Toll protein. Our experimental data indicate that the amino acid sequence similarity between the IL-1R and the Drosophila toll protein reflects a functional homology between the two proteins.

Amino Acid Sequence↗

Dexamethasone induces the expression of the mRNA of lipocortin 1 and 2 and the release of lipocortin 1 and 5 in differentiated, but not undifferentiated U-937 cells.

The effect of dexamethasone on mRNA and protein synthesis of lipocortins (LCT) 1, 2 and 5 has been investigated in U-937 cells. A constitutive expression of both mRNAs and proteins was detected in undifferentiated U-937 cells. This constitutive level was increased time- and dose-dependently by incubation with phorbol myristate acetate (PMA). In U-937 cells differentiated by 24 h incubation with 6 ng/ml PMA, dexamethasone (DEX) (1 microM for 16 h) caused an increased synthesis of the mRNA level of LCT-1 and 2, but not of LCT-5, over the level induced by PMA. DEX had no effect in undifferentiated cells. Moreover, DEX stimulated the extracellular release of LCT-1 and 5, but not of LCT-2, and inhibited the release of PGE2 and TXB2 only in the differentiated U-937 cells. These results suggest that the responsiveness of these cells to glucocorticoids is dependent on the phase of cell differentiation. The selective release of lipocortins by differentiated U-937 cells may explain, at least in part, the inhibition by DEX of the prostanoid release.

Annexins↗

Cyclosporin A blocks calcium-dependent pathways of gene activation.

We have used an interleukin-2 (IL-2) promoter-CAT fusion gene to study activation of IL-2 gene expression by IL-1, phytohemagglutinin (PHA), phorbol myristate acetate (PMA), and calcium ionophore in the murine thymoma line EL4 and the human lymphoma line Jurkat. The two cell lines respond differently to combinations of these stimuli. IL-1 in combination with suboptimal concentration of PMA induced chloramphenicol acetyltransferase (CAT) activity in EL4. In Jurkat cells, IL-1 failed to synergize with PMA or PHA. Cotransfection with the IL-2/CAT gene and a construct capable of expressing murine T-cell type IL-1 receptors converted Jurkat cells to IL-1 responsiveness. IL-1 in combination with PHA but not with PMA resulted in induction of CAT activity in these cells. Induction of IL-2/CAT activity by all stimuli in both cell lines was blocked by the presence of EGTA in the culture medium. EGTA did not inhibit IL-1/PMA activation of an SV40 early promoter-CAT fusion gene in either EL4 or Jurkat cells; therefore, calcium was not required for IL-1 or PMA signal transduction. Jurkat cells were shown to differ from EL4 in their requirement for calcium mobilization. Two different calcium-dependent pathways of gene activation were distinguished, both of which were blocked by the immunosuppressive drug cyclosporin A.

Calcium↗

Eicosanoid release and mepyramine, LTC4 and LTD4 binding in passively sensitized human lung parenchyma in vitro.

In vitro passive sensitization of human lung parenchyma with hyper-immune serum did not affect the release of prostaglandin D2 (PGD2) or leukotriene (LT)-like activity upon challenge with anti-IgE antibody with respect to control lung, despite a marked difference in IgE levels between control (C) and sensitized (S) tissue. Binding studies with [3H]LTC4, [3H]LTD4 and [3H]mepyramine (a histamine H1 antagonist) showed a statistically significant increase in the amount bound in sensitized vs control lung for [3H]mepyramine only. Contractile response to 5 x 10(-5) M histamine (H) in C and S lung parenchymal strips did not correlate with binding data. It is concluded that in vitro elevated IgE levels do not affect the interaction of sulfidopeptide leukotrienes with their putative receptors. As for the observed increase in [3H]mepyramine binding, this might not represent a true increase in histamine receptors on lung smooth muscle cells.

Animals↗

Internalization and nuclear localization of interleukin 1 are not sufficient for function.

The human fibroblast interleukin 1 (IL-1) receptor is a glycosylated transmembrane protein with a cytoplasmic domain of 213 amino acids. We have constructed a series of deletion mutants of the cytoplasmic region of the IL 1 receptor and have used these mutants to examine its role in ligand binding, internalization, signal transduction, and nuclear localization of IL-1. Mutant receptors lacking most of the cytoplasmic domain are expressed at the cell surface and can bind, internalize, and localize IL-1 at the nucleus, but they do not allow IL-1-mediated induction of interleukin 2 and SV40 promoters. We have localized a critical region for signal transduction to a 50-amino acid segment of the cytoplasmic domain of the receptor. These studies demonstrate that IL-1 internalization and nuclear localization are not sufficient to trigger IL-1 activation of gene expression in T-cells.

Autoradiography↗

Characterization of the human lipocortin-2-encoding multigene family: its structure suggests the existence of a short amino acid unit undergoing duplication.

Human genomic clones of the gene encoding lipocortin (LIP) 2 (p36) and of three pseudogenes have been isolated and characterized. The LIP2 gene is at least 40 kb long and consists of 13 exons. The three pseudogenes present typical features of retroposons and, together with the gene, probably represent the entire LIP2 multigene family. Chromosomal assignment of the four loci is proposed. The hypothesis that an ancestral unit coding for 15 to 20 amino acids may have been involved in the evolution of the gene is discussed.

Amino Acid Sequence↗

An inducible enhancer controls the expression of the human interleukin 1 beta gene.

This paper describes regulatory sequences responsible for the control of human interleukin 1 beta gene expression in cells of the monocytic lineage. Hybrid plasmids containing different regions of the interleukin 1 beta gene and the bacterial chloramphenicol acetyltransferase gene were transfected into human monocytic THP-1 or U937 cells. After treatment with 12-O-tetradecanoylphorbol-13-acetate, which triggers cell differentiation, we have identified an enhancer sequence which mediates the induction of gene activity by 12-O-tetradecanoylphorbol-13-acetate. The enhancer, approximately 180 base pairs long, is located between positions -2982 and -2795 upstream from the transcriptional start site. Further analysis has shown that 132 base pairs immediately upstream from the start site of transcription are sufficient to promote constitutive expression of the gene. Additional promoter elements, located within the first intron, maximize the level of gene expression. Although activated monocytes and macrophages are the main producers of interleukin 1 beta, both the enhancer and the constitutive promoter can function in monocytic cells as well as in nonmonocytic HeLa cells.

Base Sequence↗

Purified octamer binding transcription factors stimulate RNA polymerase III--mediated transcription of the 7SK RNA gene.

We have analyzed the upstream promoter of the human 7SK RNA gene to determine which protein factors are involved in the transcription of this gene by RNA polymerase III. Using a reconstituted in vitro system, we show directly that octamer binding transcription factors (OTFs) are required for efficient transcription and that they interact with a series of nonconsensus OTF binding sites between positions -70 and -240. The same purified factors that stimulate RNA polymerase II-dependent transcription of the histone H2b gene (OTF-1) and an immunoglobulin light chain gene (OTF-2) also stimulate 7SK transcription by RNA polymerase III. Moreover, OTF-dependent stimulation requires a sequence between positions -48 and -65 that is homologous to the proximal sequence element of the class II snRNA genes. Our findings indicate that some transcription factors are utilized in the transcription of both class II and class III genes.

Base Sequence↗

Isolation and structural characterization of cDNA clones encoding the mating pheromone Er-1 secreted by the ciliate Euplotes raikovi.

cDNA clones comprising the entire coding region for the mating pheromone Er-1 of Euplotes raikovi have been isolated by oligonucleotide screening of two cDNA libraries in the vectors lambda gt10 and pUC12. The cDNA sequence contains an open reading frame of 75 amino acids that constitute pre-pro-Er-1. The amino acid sequence of secreted Er-1 starts at aspartic acid-36 of pre-pro-Er-1 and completely matches that known by direct Er-1 protein sequencing. The coding region of Er-1 cDNA ends with codon TAA, which specifies glutamine in other ciliates. The 5'- and 3'-noncoding regions contain, respectively, two and one inverted repeats. The 3'-noncoding-region inverted repeat, which includes the unusual polyadenylylation signal AACAAA, has been related to RNA 3'-terminus formation.

Amino Acid Sequence↗

Assessment of plasma leukotriene and prostaglandin levels during adjuvant arthritis and kaolin-induced paw oedema in rats.

Plasma levels of some arachidonic acid metabolites were investigated in acute and chronic models of inflammation in rats. As a model of chronic inflammation, adjuvant arthritis in rats induced by the injection of Freund's complete adjuvant, and as an acute model for inflammation, kaolin-induced paw oedama were used. Plasma leukotriene(LT) C4-like and prostaglandin(PG) E2-like activities were quantitated by bioassay in guinea-pig ileum and rat stomach fundus respectively. In the course of adjuvant arthritis, plasma levels of LTC4- and PGEi2-like activities were increased. Plasma LTC4-like activity reached a maximum within 3 weeks, while PGE2-like activity reached a maximum 10 days after adjuvant injection. In the early phase of adjuvant arthritis, levels of both LTC4- and PGE2-like activities were found to be low but both activities were increased in the late phase of inflammation.

Animals↗

The in vitro transcription of the 7SK RNA gene by RNA polymerase III is dependent only on the presence of an upstream promoter.

Deletion analysis was carried out on the human 7SK RNA gene to map regions essential for in vitro transcription by RNA polymerase III. The sequence promoting transcription is located between 37 and 3 bp upstream of the 7SK RNA coding region. RNA polymerase III transcription of adjacent plasmid sequences can be directed by this promoter in the complete absence of the 7SK RNA coding region, indicating that no internal promoter sequences are required. Transcription is terminated by a stretch of T residues, typical of RNA polymerase III transcription. The promoter contains a TATA box at position -25, mutations within which dramatically reduce the efficiency of transcription. Upstream sequences from position -37 to -243 increase the promoter's efficiency. The promoter recognized by RNA polymerase III is structurally and functionally similar to the promoter of genes transcribed by RNA polymerase II.

Amanitins↗

Human interleukin-1 beta gene.

We report the nucleotide sequence of the human chromosomal gene which encodes the interleukin-1 beta protein (IL-1 beta). The gene spans a region of 7.5 kb and the coding part is divided into seven exons. Comparison with the homologous mouse gene reveals that the structural organization is conserved through evolution. In addition to this, human and murine IL-1 beta genes show extensive sequence homology within the intervening sequences.

Amino Acid Sequence↗

The murine interleukin 1 beta gene: structure and evolution.

We have isolated from a genomic library a murine recombinant clone containing the gene coding for interleukin-1 beta m-RNA. A 7000 b.p. DNA fragment has been sequenced. Sequences homologous with human IL-1 beta cDNA have been found distributed within 7 exons. The translation of these sequences allows the prediction of a protein 269 aminoacids long. Hybridization of P388D1 RNA from cells stimulated with phorbol myristic acetate with a genomic DNA probe shows the existence of a 1.6 Kb murine IL-1 beta mRNA which is absent in the unstimulated cells. The comparative analysis between the murine IL-1 beta and the human IL-1 alpha genes shows extreme conservation of the aminoacids at the exon junctions. This observation together with the similarity in number and size of the exons suggests that these genes have diverged from a common ancestor.

Amino Acid Sequence↗

A sequence upstream from the coding region is required for the transcription of the 7SK RNA genes.

We have isolated and characterized two recombinant lambda phages containing sequences homologous to 7SK RNA which code for a RNA 330 nucleotides long in an "in vitro" transcription system. S1 mapping of the transcript shows that this RNA corresponds to the 7SK RNA obtained from human cells, indicating that the two recombinant phages contain genes coding for 7SK RNA. The transcription of these genes is polymerase III dependent. Sequences upstream from the start of transcription are essential for "in vitro" synthesis of 7SK RNA, suggesting that internal promoter elements, if present, are not sufficient to support the synthesis of 7SK RNA. A region of homology with the upstream sequences of the genes for U6 RNA, 7SL RNA and Bombyx mori alanine tRNA is found within 50 bp from the transcription start point. Within the homologous region a motif common to the four genes is a "TATA"-like box, placed at position -30 to -25 of the 7SK RNA gene, which is typical of the polymerase II promoter region.

Base Sequence↗