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Biomedical subjects

M L Varban

Publications and source records attributed to M L Varban.

3 recordsLinked to original sources

Transformed phenotype conferred to NIH/3T3 cells by ectopic expression of heparin-binding growth factor 1/acidic fibroblast growth factor.

Heparin-binding growth factor 1 (HBGF-1), also known as acidic fibroblast growth factor, is a potent mitogen and angiogenic factor found in tissues such as brain, kidney and heart. The genomic and cDNA sequences indicate that HBGF-1 does not have a typical signal peptide sequence. HBGF-1 was shown to be localized to the extracellular matrix of cardiac myocytes, but the mechanism of secretion is not presently known. We have cloned the HBGF-1 cDNA which allowed us to directly test the biological activity, mechanism of secretion and transforming potential of the recombinant protein. A previous report showed that the truncated HBGF-1 confers partial transformed phenotype to the recipient fibroblasts. However, expression of full-length HBGF-1 has not been reported. The HBGF-1 coding sequence was cloned into the retroviral expression vector, SVX, and transfected into NIH/3T3 cells. Transfectants expressing full-length HBGF-1 protein at high levels form foci and grow to a higher cell density than the parental NIH/3T3 cells. Western blotting analysis showed that the recombinant HBGF-1 is a unique band of approximately 20 kDa and can be detected in the cell homogenate but not in the conditioned medium. NIH/3T3 cells were conferred anchorage independence when HBGF-1 was provided exogenously. We showed the transformed cells are capable of growing on soft agar even in the absence of exogenously-provided HBGF-1. Transfected cells expressing HBGF-1 also induced tumor formation when injected into nude mice. Thus NIH/3T3 cells acquired a full spectrum of transformed phenotype when full length HBGF-1 was expressed at high levels.

Animals

Cloning of the gene coding for human class 1 heparin-binding growth factor and its expression in fetal tissues.

We have identified four overlapping genomic DNA clones coding for human class 1 heparin-binding growth factor (HBGF-1), also known as acidic fibroblast growth factor, by screening genomic DNA libraries with an HBGF-1 cDNA probe. The exon-intron structure of the HBGF-1 gene was determined by Southern hybridization and nucleotide sequence analysis. The complete amino acid sequence of human HBGF-1 was deduced from the nucleotide sequence of these genomic DNA clones. The predicted amino acid sequence is identical to the published amino acid sequence determined by protein sequencing. Southern blot analysis of human DNA suggested that there is a single-copy gene coding for HBGF-1. A 4.5-kilobase mRNA and two minor species (3.4 and 2.0 kilobases) homologous to the HBGF-1 gene were detected in cellular RNA isolated from human adult brain and kidney. The HBGF-1 mRNAs from brain and kidney had slightly different sizes. The mechanism for the synthesis of different sizes of mRNA was not determined. We also detected HBGF-1 transcript from glioblastoma cells, fetal brain, and kidney but not from placenta or fetal liver. Since HBGF-1 is an angiogenic factor, these data suggest that it may play a role in embryonic angiogenesis during fetal development.

Amino Acid Sequence

Interference between coinoculated viroids.

Experiments were carried out to seek evidence of an interaction between two viroid RNAs introduced to tomato plants in the same inoculum. At the level of symptom expression, the severe isolate of potato spindle tuber viroid (PSTV) dominated the mild isolate. Seventy-five percent of the plants inoculated with a 100-fold excess of the mild isolate developed unattenuated symptoms of severe disease. Other experiments revealed that infectious RNA molecules transcribed from cloned DNA templates containing PSTV sequences reduced the level of hop stunt viroid (HSV) RNA present in nucleic acid extracts of plants which had been inoculated with a mixture of dimeric plus-strand transcripts of these two viroids. Plants inoculated with dual transcripts--containing two copies of PSTV linked to two copies of HSV--developed characteristic symptoms of severe PSTV. Dot hybridization demonstrated that only PSTV replicated to detectable levels in these plants. A likely interpretation of these results is that the HSV portion of the dual transcripts failed to replicate because of interference from PSTV. These results raise questions about how the process of viroid replication is related to symptom expression, and lead to suggested models for the effect of viroid-like RNAs in cells under both normal and pathogenic circumstances.

Plant Diseases