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Biomedical subjects

A Sirulnik

Publications and source records attributed to A Sirulnik.

2 recordsLinked to original sources

Two large insert vectors, lambda PS and lambda KO, facilitate rapid mapping and targeted disruption of mammalian genes.

The construction and the testing of two lambda phage vectors are described that greatly simplify the tasks of mapping genomic DNA and making replacement-type gene-targeting vectors for mammalian cells from a library of isogenic genomic DNA. The first vector, lambda PS, accommodates up to 20 kb and allows inserts to be automatically subcloned in plasmid form because of the presence of loxP sites flanking the insert. The second vector, lambda KO, accommodates up to 16.7 kb and allows inserts to be automatically subcloned as plasmids containing HSVtk genes that are positioned flanking the inserted genomic DNA. We have prepared highly redundant libraries from genomic DNA of 129/Sv-strain mice for the construction of targeting vectors. In our scheme, the locus of interest is characterized using a library made in lambda PS. For instance, suitable flanking probes can be derived to determine targeting events. The final targeting construct with flanking HSVtk genes is obtained using the lambda KO cloning vector. The entire procedure is exemplified by successful targeting of the X-linked mouse hprt locus.

Animals

Hepatocyte growth factor/scatter factor (HGF/SF), the c-met receptor and the behaviour of epithelial cells.

Hepatocyte growth factor/scatter factor (HGF/SF) is a multifunctional protein produced by fibroblasts and other mesenchymal cells and active on epithelial and endothelial cells. The factor shares the basic domain organization of plasminogen and other blood proteases and is produced as a single-chain high molecular weight precursor which is subsequently cleaved to produce a biologically active heterodimer. HGF/SF acts on target cells through binding to a cell surface, high-affinity receptor with tyrosine kinase activity encoded by the c-met proto-oncogene. Transduction of the HGF/SF signal in epithelial cells by the met receptor leads either to: (i) cell dissociation, with loss of adhesion and junctional communication, (ii) cell division or (iii) differentiation and morphogenesis. These responses depend on target cells and culture conditions. There is preliminary evidence for a role for HGF/SF in vivo, suggesting that the factor may be involved in the early stages of embryo development and in liver regeneration. A role in cancer growth or dissemination has been proposed but remains to be clarified.

Animals