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Biomedical subjects

B Dolder

Publications and source records attributed to B Dolder.

3 recordsLinked to original sources

H-ras induced transformation of mammary epithelium is favoured by increased oncogene expression or by inhibition of mammary regression.

The promoter of the mammary specific murine whey acidic protein gene was used to direct Ha-ras expression in different lines of transgenic mice. We found that this promoter contains a tissue specific enhancer which directed expression in both orientations albeit to different levels. We used this feature to generate low and high ras expressing transgenic lines. The reversed orientation led to a weak expression in lines 3 and 58 and to a tumor frequency of 2%. In contrast, 72% of mice from line 25 showing high ras expression developed mammary tumors. Nulliparity is one risk factor for human breast cancer, suggesting a protective effect of post-lactational mammary regression. In order to investigate the effect of post-lactational regression, the low tumor frequency lines were crossed with mice expressing ubiquitously the human growth hormone gene, which induces permanent development of the mammary epithelium. Indeed, mammary tumors were observed in 76% of double transgenic females. Thus, the tumorigenic potential of the ras oncogene in mammary cells in vivo correlates with the level of its expression and with the developmental history of the mammary gland. Transformation coincides with the escape of oncogene expression from the regulation of the Wap promoter and the extinction of endogenous Wap gene expression.

Animals

Solubilizing the T-cell receptor--problems in solution.

Recombinant DNA technology has been central in answering some of the most important questions in immunology and has recently helped to define the complex of membrane associated proteins on T-cell surfaces responsible for antigen recognition. Here André Traunecker and colleagues describe attempts to facilitate the analysis of this complex using genetic engineering to produce solubilized T-cell receptor and associated molecules.

Animals

A novel approach for preparing anti-T cell receptor constant region antibodies.

To obtain antibodies against the individual chains of the T cell receptor (TCR) complex, we have produced chimeric proteins containing domains from immunoglobulin (Ig) and TCR polypeptide chains. Basically, the Ig light chains were used as carriers for the TCR constant (C) region domains. The exons which encode the main body of the C regions of the alpha, beta and the related gamma polypeptide chains were "engineered" into the intronic region between the rearranged Ig variable (V) region and C kappa region genes. All three chimeric genes were expressed in myeloma cells, and the proteins of expected apparent molecular weight were produced. Secreted proteins containing the C beta domain were purified from the culture supernatant by using anti-kappa antibody affinity columns, and two rabbits were then immunized with the purified protein. Both rabbits produced antibodies able to immunoprecipitate the heterodimeric TCR protein.

Animals