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D Kioussis

Publications and source records attributed to D Kioussis.

At least 91 records · Page 5Linked to original sources

Human bcr-abl gene has a lethal effect on embryogenesis.

The chimaeric bcr-abl oncogene is thought to have a crucial role in the development or maintenance of chronic myelogenous leukaemia. To study this oncogene in a more direct way, the bcr-abl gene encoding the P210 protein under control of the bcr gene promoter was introduced into fertilized one-cell embryos, which were then re-implanted into foster mothers. Our data, obtained after several experiments, demonstrate that no live transgenic progeny could be obtained using this bcr-abl construct. The bcr gene is expressed in the course of embryogenesis and the bcr-abl gene product appears to have a pleiotropic lethal effect during this period of development. In concordance, several gross abnormalities were observed while no evidence of neoplastic formation was found. These results suggest that the bcr-abl encoded protein severely affects the process of normal embryogenesis.

Animals↗

Human CD2 is functional in CD2 transgenic mice.

We aimed to study the biochemical consequences of T-cell activation via the CD2 antigen in mouse T cells. The lack of stimulatory monoclonal antibodies against the mouse CD2 antigen led us to analyse this problem in transgenic mice carrying and expressing the human CD2 gene. Monoclonal antibodies to the human CD2 antigen that were mitogenic for human T cells induced proliferation of mouse T cells from the CD2 transgenic mice. Stimulation was accompanied by rapid phosphorylation of the murine CD3 gamma chain and T-cell receptor zeta chain. These results demonstrate that the human CD2 antigen is functional in the CD2 transgenic mice and indicate a considerable conservation of the signal transducing processes and also the activation mechanisms between mouse and man.

Animals↗

Complex lymphoid and epithelial thymic tumours in Thy1-myc transgenic mice.

T-lymphocyte development takes place mainly in the thymus, where stromal cells of epithelial and haemopoietic origin are involved in inductive and selective mechanisms, which enable specific lymphocyte populations to migrate to the periphery and establish a network of immune responses. Experiments with intact animals have clarified the precursor-product relationships between thymocyte subpopulations, but the molecular mechanisms of cell interactions in the thymus are difficult to study in vivo. In an attempt to expand thymic cell populations in vivo and maintain them in vitro for such studies, we directed high levels of expression of the murine c-myc proto-oncogene in transgenic mice by inserting it into the mouse Thy-1 transcriptional unit. Such mice develop thymic tumours which contain proliferating thymocytes and, interestingly, expanded populations of epithelial cells. Both cell types can be maintained in vitro.

Animals↗

Human CD2 3'-flanking sequences confer high-level, T cell-specific, position-independent gene expression in transgenic mice.

We have localized a set of T cell-specific DNAase I hypersensitive sites in the 3'-flanking region of the human CD2 gene. A 5.5 kb BamHI-XbaI fragment containing these DNAase I hypersensitive sites conferred efficient, copy number-dependent, T cell-specific expression of a linked human CD2 minigene, independent of the position of integration in the transgenic mouse genome. When linked to the mouse Thy-1.1 gene or the human beta-globin gene, this fragment conferred the same T cell-specific expression, independent of its orientation. These results suggest that this flanking region is both necessary and sufficient for full tissue-specific activation of homologous and heterologous genes in transgenic mice.

Animals↗

The structure of the human CD2 gene and its expression in transgenic mice.

We report the genomic organization of the human CD2 gene and its expression in transgenic mice. A 28.5 kb segment of DNA consisting of 4.5 kb 5' flanking sequences, 15 kb containing the gene's five exons and 9 kb of 3' flanking sequences can direct the expression of the CD2 gene only on thymocytes, circulating T cells and megakaryocytes of the transgenic mice. The expression of each copy of the human CD2 transgene appears to be as high as the endogenous mouse CD2 gene and as high as the expression on the surface of human T lymphocytes, independent of the site of integration and dependent on the copy number of genes that have integrated.

Amino Acid Sequence↗

Expression and rescuing of a cloned human tumour necrosis factor gene using an EBV-based shuttle cosmid vector.

A cosmid vector carrying the Epstein-Barr virus origin of replication, the EBNA-1 gene, the hygromycin phosphotransferase (hph) gene and pBR322 sequences has been constructed. This cosmid can replicate autonomously in the nucleus of human tissue culture cells, even when it carries a 35-kb long insert. The cosmid can be rescued from the transfected cells by cloning it directly into ampicillin-sensitive Escherichia coli. A gene for human tumour necrosis factor (TNF) cloned into this cosmid vector was introduced in tissue culture cells, where it was transcribed into mature mRNA.

Cell Line↗

A minority of patients with rheumatoid arthritis show a dominant rearrangement of T-cell receptor beta chain genes in synovial lymphocytes.

The clonality of T lymphocytes isolated from the synovial fluid and peripheral blood of patients with rheumatoid arthritis was investigated by restriction enzyme fragment mapping of the rearrangements of the beta chain gene of the T-cell antigen receptor. Three patients showed a dominant rearrangement amongst their synovial fluid T cells which was not seen in their peripheral blood T-cell population, suggesting the presence of a predominating T-cell clone. However, most of the patients examined (8 out of 11) demonstrated polyclonal T-cell populations in both their synovial fluid and peripheral blood. Of four synovial fluid T-cell lines investigated, one showed evidence of a dominant T-cell clone.

Arthritis, Rheumatoid↗

Gamma delta beta-thalassaemias 1 and 2 are the result of a 100 kbp deletion in the human beta-globin cluster.

The DNA spanning two large deletions in the human beta-globin gene cluster (gamma beta-thalassaemia 1 and 2) has been cloned by cosmid cloning and chromosomal walking. The entire region was mapped and analyzed for the presence of repetitive sequences. The results show that the affected loci have lost almost 100 kb of DNA in a deletion event not involving homologous or repetitive sequences.

Chromosome Deletion↗

Differential expression of human globin genes introduced in K562 cells.

We have constructed a series of hybrid globin genes between the 5' half of the human epsilon-, gamma- and beta-globin genes, and the 3' half of the rabbit beta-globin gene. These hybrid genes were introduced into the cell line K562. Analysis of the hybrid mRNA populations show that only the hybrid epsilon- and gamma-globin genes are expressed in these cells in concordance with the endogenous K562 globin gene expression. It is therefore likely that these cells contain transcriptional factors which allow the specific expression of introduced epsilon- and gamma-, but not beta-globin genes, irrespective of their chromosomal localization.

Animals↗

Two non-allelic human interferon alpha genes with identical coding regions.

A hitherto undescribed human interferon-alpha (IFN-alpha) gene, IFN-alpha 13, has been isolated and characterized. Its entire coding sequence is completely identical with that of IFN-alpha 1; the 5' and 3' non-coding regions differ by 4.5% and 3.8%, respectively. As the two genes are not allelic, we conclude that the similarity is due to a very recent gene conversion event. Both genes are expressed in virus-induced leukocytes.

Base Sequence↗

Unexpected relationships between four large deletions in the human beta-globin gene cluster.

Two independent gamma delta beta-thalassemias are each associated with large deletions. We show, by comparing DNA sequences, that the deletions are due to non-homologous DNA exchanges. The 5' breakpoints are located approximately the same distance apart and in the same order along the DNA as their 3' breakpoints. Two independent cases of hereditary persistence of fetal hemoglobin, also involving large deletions, show the same unexpected relationship between their 5' and 3' breakpoints. This relationship is most simply explained if, within each pair, the deletions are of approximately the same length. The results suggest that the four deletions were generated by a common mechanism. Perhaps their 5' and 3' breakpoints are physically close in the nucleus, although far apart on the linear DNA.

Base Sequence↗

The evolution of alpha-fetoprotein and albumin. II. The structures of the alpha-fetoprotein and albumin genes in the mouse.

The murine alpha-fetoprotein (AFP) and albumin genes have been cloned from genomic libraries derived from Balb/c DNA. By restriction endonuclease mapping and electron microscopy, we have shown that both genes are organized similarly into 15 coding segments interrupted by 14 intervening sequences. The sizes of the corresponding coding segments in each gene are identical, lending support to the hypothesis that the two genes, were derived from a common ancestral gene. However, no nucleotide homology between coding segments was observed. Both the sizes and the nucleotide sequence of flanking and intervening sequences have diverged significantly as well. Two regions of the AFP gene, 925 base pairs in the 5' flanking DNA and 180 base pairs in the third intervening sequence, hybridized to the same region of DNA in the third intervening sequence of albumin. The 180-base pair homologies within each gene are present in opposite orientation relative to the direction of transcription, and are associated with reiterated DNA. Thus, it is unlikely that they represent true sequence conservation. An examination of the sizes of the coding segments in each gene reveals a thrice repeated domain, consisting of 4 coding segments. We propose that these correspond to the three domains observed in several mammalian albumins, and in murine AFP.

Albumins↗

Molecular cloning of developmentally regulated, low-abundance mRNA sequences from embryonic muscle.

To study the role of low-abundance, embryonic muscle-specific gene transcripts, we have developed a method to screen cDNA clones from embryonic muscle for such sequences. The protocol involves two stages: first, partial enrichment for cDNA clones carrying possible embryo-specific sequences by selecting clones of low-abundance sequences; and second, determination, by hybridization to RNA attached to diazobenzyloxymethyl-paper, which sequences from this category are regulated in an embryonic muscle-specific manner during development. At least three different clones were obtained which hybridized to sequences present in early muscle development but absent, or present at relatively low levels, at late embryonic and adult muscle stages. Two of these clones were not muscle-specific because they hybridized to poly(A)+RNA from liver or brain or both. The third clone, 106A4, did not detectably hybridize to total poly(A)+RNA at any stage of brain or liver development tested. This sequence also was not detectable in poly(A)+RNA from embryonic muscle progenitor cells. Thus, the 106A4 sequence is a likely candidate for an embryonic muscle-specific sequence. We have demonstrated that the 106A4 sequence is a mRNA, although the specific identity and function of the translated product is unknown. The method used to identify embryonic muscle-specific cDNA clones should be generally applicable for obtaining clones for low abundance transcripts regulated in a tissue-specific or developmental stage-specific manner.

Animals↗

Construction and cloning of rat albumin structural gene sequences.

A recombinant plasmid containing a DNA segment complementary to rat liver albumin mRNA has been constructed, cloned, and used to examine the organization of albumin gene. The 18S fraction of total liver poly(A)-containing RNA was copied into a double-stranded cDNA by avian myeloblastosis virus reverse transcriptase and Escherichia coli DNA polymerase I. The cDNA was inserted into the HindIII site of the plasmid pBR322 via the addition of specific oligonucleotide linkers. Recombinant plasmids were screened by hybrid arrest of mRNA translation and hybridization with specific cDNAs. Thereby, a plasmid was identified that contained a 1200-nucleotide insert corresponding to a segment adjacent to the 5'-terminal region of albumin mRNA. The inserted sequence was used as a hybridization probe to detect five EcoRI fragments of genomic DNA which encode albumin mRNA. These were compared to eight EcoRI fragments identified within the rat genome by albumin cDNA. We conclude that the albumin gene (or genes) is interrupted at more than one site in the coding DNA by intervening sequences. Furthermore, we were able to distinguish those fragments that encode the 5' and 3' ends of the mRNA.

Animals↗