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Biomedical subjects

F Esch

Publications and source records attributed to F Esch.

At least 55 records · Page 3Linked to original sources

Distribution of fibroblast growth factors (FGFs) in tissues and structure-function studies with synthetic fragments of basic FGF.

Acidic and basic fibroblast growth factors (FGFs) are characterized by their high affinity for heparin and their capacity to stimulate angiogenesis in vivo. While both molecules are structurally distinct they have 53% homology in their primary sequence and exist in similar molecular forms. These heparin-binding growth factors are also characterized by a wide distribution, a characteristic that may be attributable, at least in part, to their production by endothelial cells and their storage in the extracellular matrix. Structure-function studies with synthetic fragments of basic FGF have identified two peptidic sequences that cross-react with FGF receptor and that can modulate the cellular response to basic FGF. Both functional domains bind radiolabeled heparin, inhibit cell growth, and can interfere with stimulation of neurite outgrowth, cell adhesion, and differentiated cell function. The possible application of these antagonists to defining the role of FGF in wound repair, nerve regeneration, and vascularization of the vasovasorum is discussed.

Amino Acid Sequence↗

The corticostatic (anti-ACTH) and cytotoxic activity of peptides isolated from fetal, adult and tumor-bearing lung.

The possibility that corticosteroids influence lung maturation was suggested in 1968 by Buckingham et al. and supported by studies mounted in humans and in rabbits by Liggins and Howie and by a collaborative study from the N.I.H. To our knowledge no reverse process, i.e. the regulation of adrenal function by the lung, has been postulated. In attempting to isolate ACTH from fetal lung we found peptides which depressed corticosterone production. Eventually, we isolated a group of peptides from rabbit fetal lung which showed potent inhibition of corticosterone production in rat adrenal cell suspensions. Using high-resolution reverse-phase HPLC and high-sensitivity gas-phase sequencing techniques the primary structure of one of these peptides has been determined and it was called corticostatin. The adult rabbit lung contains a large quantity of a very similar peptide, which elutes close to corticostatin but whose amino acid composition differs by a single glycine and possibly a serine. This peptide is also potently corticostatic. We have isolated homologous human peptides but these show no apparent corticostatic activity in rat adrenal cell suspensions. They do, however, show interesting effects on in vitro growth of lung cell lines.

Adrenal Glands↗

Isolation and partial characterization of basic fibroblast growth factor from bovine testis.

A basic fibroblast growth factor (FGF) has been purified to homogeneity from bovine testis, using ammonium sulfate precipitation of the crude extract followed by three chromatographic steps, involving cation-exchange, heparin-Sepharose, and reversed-phase HPLC. Gas-phase sequence analysis showed the amino-terminal amino acid sequence of the isolated polypeptide as His-Phe-Lys-Asp-Pro-Lys-Arg-Leu-Tyr-, which is identical to the amino-terminal of the (16-146) fragment of basic FGF previously characterized from corpus luteum, adrenal, and kidney. The purified FGF was shown to have the same biological activity as that of basic FGF (1-146). This finding suggests that basic FGF is present in testis and may act as a local regulator of testicular function. In addition, testicular FGF might play an important role in spermatogenesis and/or the development of testis.

Amino Acid Sequence↗

Isolation and partial characterization of follistatin: a single-chain Mr 35,000 monomeric protein that inhibits the release of follicle-stimulating hormone.

A Mr 35,000 protein with follicle-stimulating hormone release-inhibitory activity was isolated from porcine ovarian follicular fluid by heparin-Sepharose affinity chromatography, gel filtration on Sephacryl S-200, and multiple steps of high-performance liquid chromatography. The isolated molecule is highly enriched in cysteines and is composed of a single polypeptide chain. In addition, it has no sequence homology with the previously characterized follicular fluid inhibins, which are heterodimeric proteins of Mr 32,000 with follicle-stimulating hormone release-inhibiting activity. This protein specifically inhibits the basal secretion of follicle-stimulating hormone, but not that of luteinizing hormone, in the rat anterior pituitary monolayer culture system with a half-maximal effective dose of 2.5-6.0 ng/ml. Another form of the molecule of Mr 32,000 present in much lower concentration in follicular fluid was also isolated. It may differ from the Mr 35,000 form in glycosylation or carboxyl-terminal truncation. We suggest that this compound be called "follistatin" to signify its structural difference from inhibin.

Amino Acids↗

Purification and partial characterization of a mitogenic factor from bovine liver: structural homology with basic fibroblast growth factor.

Two mitogenic peptides in bovine liver extract were purified to apparent homogeneity by monitoring the purification steps with two in vitro bioassays; one based on stimulation of adult bovine aortic arch endothelial cell proliferation and the other incorporation of [3H]thymidine to mouse fibroblast 3T3 cells. The purification procedure involved cation-exchange chromatography followed by affinity chromatography on heparin-Sepharose and two steps of reversed-phase HPLC. The purified material showed the same biological activity as pituitary basic fibroblast growth factor (FGF). Amino acid analyses of the purified mitogen yielded a similar, but not identical composition to that of bovine pituitary basic FGF(1-146) reported previously. Gas-phase microsequencing identified two sequences in equal amounts in the purified preparation. Furthermore, the sequencing results are in accord with the theoretical data obtained when two truncated forms of basic FGF, corresponding to FGF(12-146) and (16-146), are being sequenced simultaneously. Basic FGF(12-146) is a novel truncated form of basic FGF which has not been isolated before although the (16-146) fragment has been found previously in kidney, corpus luteum, and adrenal. SDS-PAGE analysis could not separate the two forms and showed that both migrated as a protein of about 15,100 daltons, which is slightly smaller than intact basic FGF(1-146) (16,200 daltons). These results, taken together, indicate that at least some of the mitogenic activity in liver may be derived from basic FGF-related polypeptides.

Amino Acid Sequence↗

A homodimer of the beta-subunits of inhibin A stimulates the secretion of pituitary follicle stimulating hormone.

A 24,000 Dalton protein with follicle stimulating hormone (FSH)-releasing activity, named activin, has been characterized previously from porcine follicular fluid as a heterodimer composed of the beta-subunits of inhibins A and B linked by disulfide bond(s) [Ling et al. (1986) Nature, in press]. In this paper we report the isolation of another 24,000 Dalton protein with FSH-releasing activity from porcine follicular fluid, using successive steps of heparin-Sepharose affinity chromatography, gel filtration on Sephacryl S-200, and four steps of reversed-phase HPLC, followed by preparative sodium dodecyl-sulfate-polyacrylamide gel electrophoresis chromatography. Based on the molecular weight of the isolated molecule and its deduced NH2-terminal sequence, we propose that this second FSH-releasing substance present in porcine follicular fluid is a homodimeric protein composed of two beta-subunits of inhibin A joined together by disulfide bond(s). The name homo-activin-A is proposed for this substance.

Amino Acid Sequence↗

Isolation of an amino terminal extended form of basic fibroblast growth factor.

Extraction of bovine pituitaries in the presence of enzyme inhibitors (2 mM PMSF, 2 mM sodium tetrathionate, 15 microM pepstatin A, and 1 mM EDTA) resulted in the isolation of two distinct forms of basic fibroblast growth factor. Partial characterization of both molecules showed one form to be identical to basic FGF(1-146) which has already been reported by our laboratory. The second form was estimated by SDS-PAGE to have a molecular weight of 17,000 Daltons which is slightly larger than that of basic FGF(1-146). Amino acid analysis shows the presence of 8 new residues more than basic FGF(1-146) which accounts for the difference in molecular weight. Gas-phase sequencing of this molecule indicated that it bears a blocked amino terminus. Furthermore, this higher molecular weight form of basic FGF did not show immunoreactivity with antibodies specific for the amino terminus of basic FGF(1-146) but cross reacted with antibodies generated against midportion fragments of basic FGF(1-146), indicating that the molecule is amino terminally extended. Like basic FGF(1-146), the molecule is a potent mitogenic factor for vascular endothelial cells. Taken together these results demonstrate the existence of a precursor form of basic FGF which is extended by 8 residues at the amino terminus with the first residue being blocked.

Amino Acids↗

Type beta transforming growth factor (TGF-beta) is a potent stimulator of the basal secretion of follicle stimulating hormone (FSH) in a pituitary monolayer system.

In view of striking similarities between TGF-beta and inhibin, we investigated the possibility that TGF-beta might modulate pituitary hormone release in vitro. Long term incubations of beta transforming growth factor (TGF-beta) with rat anterior pituitary cells for 48 hr stimulates the basal secretion of FSH in a dose-dependent manner. The secretion of LH, TSH, GH, ACTH and PRL is not modified by TGF-beta. The minimal effective concentration of TGF-beta is 10 pg/ml (less than 500 attomolar) and is dose dependent over a range from 1 pg to 10 ng/ml. Treatment of cells with TGF-beta for short incubation times (4 hr) in assays similar to that used for hypophysial releasing factors is not effective, indicating that TGF-beta acts through a cellular mechanism distinct from that of LRF. Inhibin-A, recently characterized on the basis of its capacity to specifically inhibit the secretion of FSH in the 48 hr bioassay system inhibits the stimulatory effect of TGF-beta on FSH-release. Analyses of the dose response curves indicate that the interaction occurs in a typical non-competitive manner. The results suggest that a TGF-beta-like molecule, present in follicular fluid, may be responsible for the FSH-releasing activity ("anti-inhibin" activity) observed by us and others during the process of isolating inhibin from follicular fluids. They also suggest an important role for inhibin and the TGF-beta related molecules in modulating pituitary gonadotropin release.

Animals↗

Molecular cloning of the sphingolipid activator protein-1 (SAP-1), the sulfatide sulfatase activator.

A cDNA coding for SAP-1 was isolated from a lambda gt11 human hepatoma expression library using polyclonal antibodies raised against human SAP-1. Three positive clones were isolated with inserts of approximately 0.3 Kb (S1.1), 2 Kb (S1.2) and 2.2 Kb (S-1.3). The latter 2 contained an internal EcoRI site. All three clones cross-hybridized with one another, indicating sequence homology. The nucleotide sequence of S-1.1 was determined. Colinearity was established between 19 amino acids obtained by sequencing the amino terminus of pure SAP-1 and 57 bp from the 5' end of S-1.1. The open reading frame of S-1.1 coded for 67 amino acids. One glycosylation site was found 21 residues from the amino terminus, and no stop codons were found. S-1.1 codes for a mature polypeptide chain with a calculated molecular weight of 8955 daltons, corresponding to approximately 99% of mature SAP-1.

Amino Acid Sequence↗

A chick neural retina adhesion and survival molecule is a retinol-binding protein.

A 20,000-D protein called purpurin has recently been isolated from the growth-conditioned medium of cultured embryonic chick neural retina cells (Schubert, D., and M. LaCorbiere, 1985, J. Cell Biol., 101:1071-1077). Purpurin is a constituent of adherons and promotes cell-adheron adhesion by interacting with a cell surface heparan sulfate proteoglycan. It also prolongs the survival of cultured neural retina cells. This paper shows that purpurin is a secretory protein that has sequence homology with a human protein synthesized in the liver that transports retinol in the blood, the serum retinol-binding protein (RBP). Purpurin binds [3H]retinol, and both purpurin and chick serum RBP stimulate the adhesion of neural retina cells, although the serum protein is less active than purpurin. Purpurin and the serum RBP are, however, different molecules, for the serum protein is approximately 3,000 D larger than purpurin and has different silver-staining characteristics. Finally, purpurin supports the survival of dissociated ciliary ganglion cells, indicating that RBPs can act as ciliary neurotrophic factors.

Amino Acid Sequence↗

Growth hormone-releasing factor: a new chapter in neuroendocrinology.

The isolation and characterization of growth hormone-releasing factor (GRF) has initiated a new and exciting era in our understanding of the neuroendocrine regulation of pituitary growth hormone (GH) secretion. This report briefly describes the isolation and characterization of GRF, factors which modulate the GH response to GRF and the effects of chronic administration and deprivation of GRF on somatic growth. The intent of this report is to serve as a general introduction on biochemical and physiological aspects of GRF. The following reports from this symposium will then cover many of these topics in much greater detail.

Animals↗

Isolation of fibroblast growth factor from bovine adrenal gland: physicochemical and biological characterization.

The angiogenic growth factors present in the bovine adrenal gland have been purified by a combination of differential salt precipitation, ion exchange chromatography, and heparin-Sepharose chromatography. They consist of 2 single chain polypeptides with apparent mol wt of 16,000 and 15,000. Sequence analysis of the first 14 residues of both peptides identified the sequences as Pro-Ala-Leu-Pro-Glu-Asp-Gly-Gly-Ser-Gly-Ala-Phe-Pro-Pro for 1 of the peptides and His-Phe-Lys-Asp-Pro-Lys-Arg-Leu-Tyr-x-Lys-Asn-Gly-Gly for the other. The first sequence is identical to residues 1-14 of bovine pituitary and brain fibroblast growth factor (FGF), while the second is identical to residues 1-14 of the corpus luteum (CL) FGF, which is an amino-terminally truncated form of FGF and is otherwise similar, if not identical, to FGF. The biological activity of adrenal FGF is indistinguishable from that of pituitary or brain FGF and CL FGF. They are highly active in triggering the proliferation of culture bovine vascular endothelial cells derived from either large vessels (aortic arch) or CL and adrenal cortex capillaries (half-maximal stimulation at 20-40 pg/ml and saturation at 400-600 pg/ml). In vivo implants containing 50 ng to 1 microgram adrenal-derived growth factors stimulate neovascularization in the chorioallantoic membrane of the chick embryo. In addition to being mitogenic for vascular endothelial cells, adrenal FGFs stimulate the proliferation of a wide variety of mesoderm- and neuroectoderm-derived cells, including vascular smooth muscle cells, granulosa and adrenal cortex cells, rabbit costal chondrocytes, and corneal endothelial cells.

Adrenal Cortex↗

Retina- and eye-derived endothelial cell growth factors: partial molecular characterization and identity with acidic and basic fibroblast growth factors.

Two retina-derived growth factors have been isolated on the basis of their ability to stimulate the proliferation of capillary endothelial cells in vitro. Gas-phase sequence analysis identified the amino-terminal sequence of the major form of the mitogen as being identical with residues 1-35 of bovine basic fibroblast growth factor (FGF). Amino-terminal sequence analysis of the second form identified 28 residues that are indistinguishable from those of brain acidic FGF (residues 1-28). The possibility that these retina-derived endothelial cell growth factors are related to, if not identical with, basic and acidic FGF is supported by observations that they have similar molecular weights (15000-16000), similar retention behavior on all steps of chromatography (ion-exchange, heparin-Sepharose), and similar amino acid compositions and that they cross-react with antibodies to basic and acidic FGF. The eye-derived growth factors, like FGF, are potent stimulators of capillary endothelial cell growth in vitro. The results identify the major retina-derived endothelial cell growth factor as indistinguishable from basic FGF and demonstrate the presence of an acidic FGF in the eye. They suggest that at least some of the mitogenic, angiogenic, and neovascularizing activities described as being present in the retina are due to the existence of FGF in this tissue. The implications of this finding on the etiology and pathophysiology of vasoproliferative diseases of the eye are discussed.

Amino Acid Sequence↗

Primary structure of bovine brain acidic fibroblast growth factor (FGF).

The major anionic mitogenic polypeptide for endothelial cells, acidic fibroblast growth factor (FGF), has been purified to homogeneity from bovine brain and its complete primary structure established by gas-phase sequence analysis. The 140 amino acid (Mr 16,000) protein has been previously shown to be a potent growth factor for many diverse cell types of mesodermal origin, in vitro, and an angiogenic agent, in vivo. The amino acid sequence of bovine brain acidic FGF has a 53% absolute homology with that of bovine pituitary basic FGF suggesting that these endothelial cell mitogens are derived from a single ancestral gene.

Amino Acid Sequence↗

Isolation and partial characterization of an endothelial cell growth factor from the bovine kidney: homology with basic fibroblast growth factor.

Two kidney-derived mitogens have been isolated by ion exchange, heparin-Sepharose and reverse-phase high-performance liquid chromatography on the basis of their capacity to stimulate the proliferation of bovine vascular endothelial cells in vitro. Gas phase sequence analysis identified the amino terminal sequences His-Phe-Lys-Asp-Pro-Lys-Arg-Leu-Tyr-X-Lys-Asn-Gly-Gly-Phe-Phe-Leu and His-Phe-Lys-Asp-Pro-Lys-Arg-Leu, respectively. The sequences are identical to residues 16-32 and 16-23 of bovine basic pituitary Fibroblast Growth Factor (FGF). The possibility that these kidney-derived mitogens are related, if not identical, to pituitary basic FGF is supported by the observations that they have similar molecular weights (15-16 kDa), similar retention behavior on all steps of chromatography and similar amino acid compositions, and they share at least some structural homology. Moreover, the kidney-derived growth factors, like basic FGF, are potent stimulators of capillary endothelial cells, granulosa cells, adrenocortical cells and vascular smooth-muscle cells (ED50 = 50 pg). The results demonstrate the existence of a kidney-derived FGF and suggest that at least some of the mitogenic, angiogenic and neovascularising activities described to be present in the kidney are due to the presence of an FGF-like molecule in this tissue.

Amino Acids↗

Human brain fibroblast growth factor. Isolation and partial chemical characterization.

Fibroblast growth factor (FGF) has been purified to homogeneity from human brain by a procedure involving salt precipitation, cation-exchange chromatography, Heparin-Sepharose affinity chromatography and reverse-phase HPLC. Isolation was monitored by radioimmunoassay and/or by testing column fractions for their capacity to stimulate the proliferation of vascular endothelial cells in vitro. The amino-terminal sequence of human brain FGF was determined as Pro-Ala-Leu-Pro-Glu-Asp-Gly-Gly-Ser-Gly-Ala-Phe-Pro-. This sequence is identical to that of the amino-terminal region of bovine FGF. Additional evidence, including amino acid composition, chromatographic retention behavior, and immunoreactivity suggest that the human and bovine mitogens are very similar in structure.

Amino Acid Sequence↗

Acidic fibroblast growth factor (FGF) from bovine brain: amino-terminal sequence and comparison with basic FGF.

Acidic fibroblast growth factor (FGF) from bovine brain has been isolated by a combination of salt precipitation, ion-exchange chromatography, heparin-Sepharose affinity chromatography and reverse phase h.p.l.c. The amino acid composition of the mitogen is indistinguishable from that of acidic FGF previously purified. The amino-terminal sequence of acidic FGF was established as Phe-Asn-Leu- Pro-Gly-Asn-Tyr-Lys-Pro-Lys-Leu-X-Tyr-X-Ser-Asn-Gly-X-Tyr-Phe-Leu-Arg-Il e-Leu-Pro-Asp-Gly. Acidic FGF is structurally different from basic FGF as judged by mol. wt., amino acid composition and sequence. In vitro biological comparison of the two growth factors indicates that acidic and basic FGFs possess the same intrinsic activities to stimulate the proliferation of aorta, vein or capillary endothelial cells and adrenal cortex cells, but acidic FGF is 30-100 times less potent, depending on the cell type.

Amino Acid Sequence↗