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Biomedical subjects

R Kettmann

Publications and source records attributed to R Kettmann.

At least 19 recordsLinked to original sources

Nucleotide sequence of the ovine P53 tumor-suppressor cDNA and its genomic organization.

A 2155 bp cDNA clone corresponding to the ovine p53 tumor suppressor gene has been isolated from a cDNA library made from the BLV-transformed YR2 cell line RNA. After the sequencing analysis, it appeared that this clone contains the entire p53 coding region (including 126 bp upstream of the ATG initiation codon). The nucleotide sequence shows a high degree of homology with the human (73%), murine (74%) and rat (66%) cDNAs. The encoded ovine p53 protein is 382 amino acids long with an apparent molecular weight of 50 kDa and shares 79% and 72% amino acid homology with the human and the mouse p53 respectively. Furthermore, the homology is not equally distributed along the molecule but is mainly located within five highly conserved regions. As its mouse and human counterparts, the ovine p53 contains a high proportion of proline residues, an acidic N-terminal domain and a basic C-terminal domain. We also report the structure of the ovine p53 gene that is similar to those already defined from other species.

Amino Acid Sequence

Nucleotide sequence of the bovine P53 tumor-suppressor cDNA.

The bovine p53 open reading frame was cloned and characterized using a reverse transcription-polymerase chain reaction amplification (RT-PCR) method. After sequencing, it appeared that this cDNA is able to code for a 386 amino acids protein with high degree of homology with the ovine p53. Furthermore, the homology is not equally distributed along the molecule since the highest divergence is located within the exon 4. The bovine p53 shares 93% and 91% homology with the ovine p53 at the DNA and protein level respectively.

Amino Acid Sequence

The 19-27 amino acid segment of gp51 adopts an amphiphilic structure and plays a key role in the fusion events induced by bovine leukemia virus.

Previous results indicate that the external glycoprotein gp51 of bovine leukemia virus plays an important role in the process of cell fusion induced by bovine leukemia virus (Bruck, C., Mathot, S., Portetelle, D., Berte, C., Franssen, J. D., Herion, P., and Burny, A. (1982) Virology 122, 342-352; Vonèche, V., Portetelle., D., Kettmann, R., Willems, L., Limbach, K., Paoletti, E., Ruysschaert, J. M., Burny, A., and Brasseur, R. (1992) Proc. Natl. Acad. Sci. U. S. A. 89, 3810-3814) and suggest that a region encompassing residues 23 and 25 of gp51 is involved in this process (Portetelle, D., Couez, D., Bruck, C., Kettmann, R., Mammerickx, M., Van der Maaten, M., Brasseur, R., and Burny, A. (1989) Virology 169, 27-33; Mamoun, R., Morisson, M., Rebeyrotte, N., Busetta, B., Couez, D., Kettmann, R., Hospital, M., and Guillemain, B. (1990) J. Virol. 64, 4180-4188). X-ray diffraction studies performed on envelope glycoproteins of influenza virus indicate that the NH2-terminal part of the external glycoprotein lies very close to the fusion peptide. The same overall structure seems to exist in human immunodeficiency virus as suggested by site-directed mutagenesis followed by syncytia induction assays. Our theoretical studies indicate that a segment expanding between residues 19 and 27 of gp51 probably adopts an amphipathic beta-strand structure. We hypothesize that the amphipathic 19-27 structure of gp51 plays an important role in the process of membrane fusion by interacting with the fusion peptide or with another region of gp30. Mutational analysis disrupting the amphipathy of the 19-27 region strongly altered the fusogenic capacity of the gp51-gp30 complex.

Amino Acid Sequence

Fusogenic segments of bovine leukemia virus and simian immunodeficiency virus are interchangeable and mediate fusion by means of oblique insertion in the lipid bilayer of their target cells.

Modified bovine leukemia virus (BLV) glycoproteins were expressed by using vaccinia virus recombinants, and their fusogenic capacities were examined by a syncytia-formation assay. This analysis indicates that (i) both BLV envelope glycoproteins gp51 and gp30 are necessary for cell fusion; (ii) insertion of the N-terminal segment of gp30 (fusion peptide) into the lipid bilayer in an oblique orientation, as predicted by computer conformational analysis, results in fusogenic capacities higher than insertion in a perpendicular or parallel orientation; and (iii) replacement of the BLV fusion peptide with its simian immunodeficiency virus counterpart does not modify the fusogenic capacity of the BLV glycoprotein.

Amino Acid Sequence

Mutations in the bovine leukemia virus Tax protein can abrogate the long terminal repeat-directed transactivating activity without concomitant loss of transforming potential.

The bovine leukemia virus Tax protein transactivates gene expression directed by the viral long terminal repeat (LTR) and contributes to immortalization of primary cells. Theoretical analysis of the protein sequence revealed the presence of a putative zinc finger structure at its amino end. Selected mutations in that region completely abolished transactivation, demonstrating its importance for LTR-directed gene regulation. However, these mutations did not interfere with the ability of tax to bind zinc or to contribute to immortalization of primary cells. Thus, transactivation of bovine leukemia virus LTR and target cell transformation are independent functions of Tax and involve different functional domains of the protein.

Animals

In vivo transfection of bovine leukemia provirus into sheep.

Bovine leukemia virus is horizontally transmitted mainly through infected cells by direct blood transfer. In this report, a cloned bovine leukemia virus (BLV) provirus was examined for its infectivity by direct inoculation into sheep. One hundred micrograms of plasmid DNA containing a complete provirus was mixed with a cationic liposome solution and injected intradermally into five sheep at three different locations. Seroconversion occurred 1 to 2 months after injection as demonstrated by immunodiffusion, indirect ELISA (for the gp51 envelope protein), and blocking ELISA (for gp51 and the major capsid protein, p24). These results demonstrate that BLV infection can be efficiently initiated by direct transfection into sheep. This approach should thus facilitate investigation of the involvement of BLV genetic determinants in the induction of leukemia in ruminants.

Animals

Mapping of sequential epitopes recognized by monoclonal antibodies on the bovine leukaemia virus external glycoproteins expressed in Escherichia coli by means of antipeptide antibodies.

A lambda gt11 cDNA library prepared from bovine leukaemia virus (BLV)-producing ovine cells was screened with a cocktail of anti-BLV gp51 monoclonal antibodies (MAbs). Four recombinant phages with inserts of about 2-5 kbp were isolated. One, lambda BLV-gp51-1, was sequenced and shown to encode the C-terminal part of gp51 and all of gp30. This insert was subcloned into pEV-vrf1 and expressed in Escherichia coli N-4830-1 cells. The BLV product and a series of antipeptide antibodies were used to localize the sequential epitopes defined on BLV envelope glycoprotein gp51 by their reactivity with MAbs. Epitope B was localized to amino acids 180 to 205, B' to residues 195 to 205, D and D' to residues 218 to 237, and A to amino acids 249 to 260. All the mapped sequential epitopes were localized in the C-terminal half of BLV gp51. The results of epitope mapping with bacterially produced gp51 confirm the map obtained using native viral glycoprotein.

Amino Acid Sequence

A cyclic AMP-responsive DNA-binding protein (CREB2) is a cellular transactivator of the bovine leukemia virus long terminal repeat.

To gain insight into the cellular regulation of bovine leukemia virus (BLV) trans activation, a lambda-gt11 cDNA library was constructed with mRNA isolated from a BLV-induced tumor and the recombinant proteins were screened with an oligonucleotide corresponding to the tax activation-responsive element (TAR). Two clones (called TAR-binding protein) were isolated from 750,000 lambda-gt11 plaques. The binding specificity was confirmed by Southwestern (DNA-protein) and gel retardation assays. Nucleotide sequence analysis revealed that TAR-binding protein is very similar to the CREB2 protein. It contains a leucine zipper structure required for dimerization, a basic amino acid domain, and multiple potential phosphorylation sites. A vector expressing CREB2 was transfected into D17 osteosarcoma cells. In the absence of the tax transactivator, the CREB2 protein and the cyclic AMP-dependent protein kinase A activate the BLV long terminal repeat at a basal expression level: trans activation reached 10% of the values obtained in the presence of tax alone. These data demonstrate that CREB2 is a cellular factor able to induce BLV long terminal repeat expression in the absence of tax protein and could thus be involved in the early stages of viral infection. In addition, we observed that in vitro tax-induced trans activation can be activated or inhibited by CREB2 depending on the presence or absence of protein kinase A. These data suggest that the cyclic AMP pathway plays a role in the regulation of viral expression in BLV-infected animals.

Animals

Nucleotide sequence of bovine interleukin-6 cDNA.

We report the cloning of bovine interleukin-6 (IL-6) cDNA. The clone was isolated from a bovine-leukemia virus (BLV)-induced B cell-lymphosarcoma cDNA library cloned in the bacteriophage lambda gt11. The cDNA encodes a full length IL-6 protein made of 208 amino acids with 65, 53, 42 and 42% homology to published sequences of porcine, human, mouse and rat IL-6, respectively. The significance of IL-6 expression in a BLV-induced tumor is briefly discussed.

Amino Acid Sequence

Nucleotide sequence of the bovine interleukin-6 gene promoter.

We report the cloning and sequencing of a 1252 base pairs (bp) DNA fragment containing the bovine interleukin-6 (IL-6) gene promoter. This fragment was isolated from a bovine genomic library constructed in the lambda GEM11 vector. Comparison with human, murine and rat IL-6 gene promoters reveals a high degree of conservation of the 200 bp immediately upstream of the RNA CAP site. This region contains nucleotide stretches matching with consensus sequences recognized by transcription factors, including NF-KB, CREB and NF-IL6. A potential AP-1 binding site is found 284 nucleotides upstream of the RNA CAP site. The bovine IL-6 gene promoter cloned upstream of the bacterial chloramphenicol acetyl transferase (CAT) gene was shown to be active in bovine and ovine cells.

Animals

Sequence of bovine interleukin 7.

We report the cloning and the sequencing of a cDNA coding for the mature bovine interleukin 7 (IL-7). The clone was isolated from a bovine leukemia virus (BLV)-induced B cell-lymphosarcoma cDNA library. The 5' non-coding sequence and the sequence of the signal peptide were obtained from a clone isolated from a bovine genomic library. The entire bovine IL-7 protein is 176 amino acids long and shows 75 and 65% homology to published sequences of human and murine IL-7, respectively.

Amino Acid Sequence

The bovine leukemia virus tax gene contains an enhancer sequence.

Transactivator proteins of the bovine leukemia (BLV) and human T-lymphotropic (HTLV) viruses increase long terminal repeat (LTR)-directed viral gene expression and act as immortalizing oncogenes in tissue culture. We report here that the BLV tax gene sequence contains an enhancer-like activity. The X long open reading frame was cloned up-stream of the beta-globin promoter linked to the chloramphenicol acetyltransferase (CAT) gene. In the presence of tax sequences, up to sevenfold enhancement of CAT expression was observed. A computer-assisted homology search revealed the presence of a consensus enhancer core sequence (GTGTTGTTGGTTG) into the third exon of the 2.1-kb X mRNA. These studies demonstrate that the tax gene contains a transcriptional enhancer which could be involved in early viral gene expression in vivo.

Animals

Nucleotide sequence of the bovine cyclic-AMP responsive DNA binding protein (CREB2) cDNA.

The bovine cyclic AMP responsive binding protein cDNA (CREB2) was isolated from a lambda-gt11 cDNA expression library using a 32P labelled oligonucleotide corresponding to the 21 bp enhancer sequence present in the BLV LTR. The deduced amino acid sequence revealed that CREB2 contains a leucine zipper structure (residue 295 to 316), a basic amino acid domain (residue 268 to 291) and several potential phosphorylation sites.

Amino Acid Sequence

The amino acid (157-197) peptide segment of bovine leukemia virus p34tax encompass a leucine-rich globally neutral activation domain.

The specific DNA-binding Gal4 amino-terminal portion (amino acids 1 to 147) was fused to protein segments of BLV transactivator p34tax and tested for its capacity to activate CAT-gene expression in mammalian cells. The p34tax peptide segment 157 to 197 encompasses an activating region. The segment is approximately located in the middle of p34tax and is globally neutral (net charge zero). The tax (157-197) domain contains 24% of leucine residues, possibly involved in heterologous protein interactions.

Amino Acid Sequence