Basic fibroblast growth factor gene expression.
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Biomedical subjects
Publications and source records attributed to F Shibata.
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In order to understand the regulation of basic fibroblast growth factor (bFGF) gene expression, we have cloned and characterized the human bFGF gene and its regulatory elements. Using restriction endonuclease digestion, we have mapped the entire gene and sequenced all intron/exon boundaries to confirm authenticity and to determine organization. The data show that intron 1 is at least 16 kb long while intron 2 is 16 kb long. The human bFGF gene, including its three exons, is therefore at least 36 kb long. There are five GC boxes which may represent SP-1 binding sites and one potential AP-1 binding site within the core promoter region. Primer extension analysis indicates the presence of one bFGF-RNA transcription start site. We used a standard bacterial CAT gene expression system to identify the DNA sequence containing the functional bFGF gene promoter. Deletion analysis suggests the presence of two negative regulatory elements; one in the non-transcribed 5'-promoter region and the other within transcribed (but non-translated) sequences 3' of the promoter core.
Recently, an inhibitory polypeptide that could block the follicle-stimulating hormone-induced estradiol and progesterone production in rat ovary granulosa cells has been isolated from porcine ovarian follicular fluid. Amino-terminal sequence analysis of the purified inhibitor suggests that it could be the porcine congener of the 53-kDa subunit of the growth hormone-dependent insulin-like growth factor binding protein (IGF-BP3). Using amino acid sequence information derived from the purified inhibitor to construct oligonucleotide probes, we have now identified the complementary deoxyribonucleic acids (cDNAs) encoding the inhibitory polypeptide from a porcine liver and a porcine ovary library. The nucleotide and predicted amino acid sequences revealed that the cDNAs indeed encode the porcine homolog of the recently characterized human IGF-BP3. The mature polypeptide consists of 266 amino acids, which is 2 amino acids longer than the human sequence. Between the two species, there are 42 amino acid substitutions, but the 18 cysteines and the three Asn-linked glycosylation sites are totally conserved. A single mRNA species of 2.6 kilobases encoding the IGF-BP3 was detected in porcine gonadal, brain, and liver tissues by Northern analysis.
Plasma and red blood cells cyanide concentrations during hypotension induced by sodium nitroprusside and a nitroprusside-trimetaphan mixture were studied in 29 male rabbits under halothane anesthesia. They were randomly divided into three groups; Nitroprusside (group N; n = 10), A nitroprusside-trimetaphan mixture (group M; n = 10), Controls (group C; n = 9). No changes were noted in plasma and red blood cells cyanide concentrations in group C throughout the experiment. During and after induced hypotension, in group N, plasma cyanide concentration was significantly higher than the control value. The maximum increase occurred 60min after induction of hypotension and the highest concentration of plasma cyanide was six times the control value. In contrast, in group M, plasma cyanide concentration was unchanged from the control value. However, during and after induced hypotension, red blood cells cyanide concentrations of group N and group M were significantly higher compared with the control values. Red blood cells concentrations of cyanide increased for 30 and 60 min during induced hypotension in group N (27.11 +/- 3.9 micrograms.ml-1, P less than 0.001, 46, 73 +/- 4.7 micrograms.ml-1, P less than 0.001, respectively) and in group M (0.31 +/- 0.05 micrograms.ml-1, P less than 0.05, 0.29 +/- 0.03 micrograms.ml-1, P less than 0.05, respectively). In conclusion, the data suggest that a nitroprusside-trimetaphan mixture is a safe method for hypotensive anesthesia.
Three cDNA clones encoding rat basic fibroblast growth factor (FGF) were isolated from 10(6) independent clones prepared from a pregnant mare serum gonadotropin (PMSG)-stimulated rat ovarian cDNA library. One of the cDNA clones contained the entire coding sequence for basic FGF. The other two possessed the sequence coding the carboxy terminal 61 amino acids of rat basic FGF, the putative upstream intron sequence, and a 3'-noncoding region. The cDNAs encoding rat basic FGF predict a molecule consisting of 154 amino acid residues, which is one amino acid shorter than the human and bovine basic FGF. Otherwise, there are only 5 conservative amino acid substitutions between the rat and the human/bovine sequences. Poly A+ RNA from brain cortex and hypothalamus show a single 6.0 kb band that hybridizes to the cloned cDNA probe by Northern analyses. The observation that basic FGF mRNA is below the limits of detection in adrenal, spleen, heart, lung, kidney, liver, stomach, small intestine, large intestine, testis, and ovary support the notion that the that the high levels of the protein found in these tissues is due to storage of the mitogen in the extracellular matrix and not continuous gene expression. The significance of the abundance of mRNA in tissues which are not undergoing either active angiogenesis or cell proliferation (hypothalamus and brain cortex) is unclear but emphasizes the potential neuronotrophic function of basic FGF.
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Explore the source record for details and available documents.
Explore the source record for details and available documents.