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S B Blam

Publications and source records attributed to S B Blam.

4 recordsLinked to original sources

Development of a highly efficient expression cDNA cloning system: application to oncogene isolation.

We developed an expression cDNA cloning system capable of generating high-complexity libraries with unidirectionally inserted cDNA fragments and allowing efficient plasmid rescue. As an application of this system, a cDNA library was constructed from an NIH 3T3 transformant induced by mouse hepatocellular carcinoma DNA. Transfection of NIH 3T3 cells by the library DNA led to the detection of several transformed foci from which identical plasmids with transforming ability could be rescued. Structure and sequence analysis of the cDNA clones revealed that the oncogene was created by recombinational events involving an unknown gene and the mouse homologue of the B-raf protooncogene. Detection of the same genetic rearrangement in independent primary transformants implied that generation of the oncogene occurred within the tumor rather than during DNA transfection or cDNA library construction. The high frequency at which clones were identified and the large sizes of some of the transforming cDNA inserts isolated suggest wide applicability of this mammalian expression cloning system for isolating cDNAs of biologic interest.

Amino Acid Sequence↗

Addition of growth hormone secretion signal to basic fibroblast growth factor results in cell transformation and secretion of aberrant forms of the protein.

Basic fibroblast growth factor (bFGF) is a potent mitogen for a wide variety of cell types. Unlike most growth factors, the primary translation product for bFGF appears to lack a secretory signal peptide. To explore the normal mode of bFGF release, as well as to investigate the growth factor's oncogenic potential, expression vectors were created for a bFGF cDNA and for a chimeric molecule in which the bFGF coding sequence was linked to the human growth hormone signal peptide sequence. Transfection of NIH3T3 cells with the bFGF cDNA vectors caused the synthesis of high levels of biologically active, cell-associated bFGF, but no evidence of transformation was detected. In contrast, the chimeric bFGF-signal peptide expression vector induced foci of transformation at a very high frequency. The transformed cells grew in soft agar and were tumorigenic in nude mice. The majority of the immunoreactive bFGF species made by the transformed cells was found in the conditioned medium and appeared to be posttranslationally modified, indicating that the chimeric bFGF-signal peptide molecule was processed through the secretory pathway. The secreted bFGF exhibited little mitogenic activity, suggesting that interaction of bFGF with its receptor likely occurs while the fusion protein is being processed along the secretory pathway.

Animals↗

Broad spectrum antiretroviral activity of 2',3'-dideoxynucleosides.

Certain dideoxynucleosides have been shown to markedly inhibit the infectivity of human T-lymphotropic virus type III/lymphadenopathy-associated virus, the causative agent of acquired immunodeficiency syndrome (AIDS). Our present studies demonstrate that these drugs are broad spectrum antiretroviral agents capable of inhibiting the infectivity of evolutionarily divergent mammalian type C and animal lentiviruses. Under some conditions, virus infectivity could be inhibited by more than six orders of magnitude. However, the potency of these agents was shown to be greatly influenced by cell-specified determinants. Drug exposure during the initial 24 hr was almost as effective as prolonged treatment on the inhibition of a single cycle of virus infection and expression. Moreover, virus infection was shown directly to be inhibited at the level of proviral DNA synthesis. Thus the time period during which reverse transcription and provirus integration occur is the critical period required for drug action. Our findings have implications concerning strategies to be considered in attempts to utilize 2',3'-dideoxynucleosides in control and treatment of retrovirus-induced diseases of animals and humans.

Animals↗

Somatic cell hybrid selection with a transfectable dominant marker.

A recombinant plasmid vector, pSV2-neo, coding for resistance to neomycin and the related antibiotic G-418, was transfected into the mouse myeloma line X63-Ag8.653 by a modification of the protoplast fusion technique. The time interval required to obtain 10(6) G-418 resistant cells was 20 days and the efficiency was 10(-4)-10(-5), which represents a significant advantage over classical methods of selecting mutant cells bearing a dominant selection marker. To investigate the efficiency of this marker in somatic cell hybrid selection, these cells were fused to the human myeloma line U-266 and the hybrids were selected either in HAT + G-418 or HAT + ouabain. The pSV2-neo vector was as efficient as ouabain as a dominant marker with respect to the number of viable hybrid colonies selected and their levels of immunoglobulin secretion. The reciprocal experiment was also performed: HAT-sensitive, mutant U-266 cells were transfected with pSV2-neo, clones selected in G-418 and fused with X63-Ag8.653 cells, and hybrids selected in ouabain plus G-418, yielding HAT-sensitive hybrid "heteromyelomas" that were effective fusion partners with human B lymphocytes.

Animals↗