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F Mascarelli

Publications and source records attributed to F Mascarelli.

28 records · Page 2Linked to original sources

Fibroblast growth factor receptor deficiency in dystrophic retinal pigmented epithelium.

The retinal pigmented epithelium (RPE) is known to be the site of the primary lesion in inherited retinal dystrophy in the Royal College of Surgeons (RCS) rat, a model for retinitis pigmentosa. Although the only functional defect so far detected in these cells is their failure to efficiently phagocytose shed photoreceptor outer segment debris, the actual cause of photoreceptor cell death is still unknown. Recently the possibility of "trophic factors" important in photoreceptor survival produced by normal RPE but not by dystrophic RPE has been suggested. Hence we decided to investigate the presence and abundance of two candidate diffusible factors, the acidic and basic fibroblast growth factors (aFGF and bFGF, respectively), as well as their high affinity cell surface receptors (FGF-R). mRNA was isolated from primary cultures of purified normal and dystrophic RPE and analyzed by PCR amplification using specific oligonucleotide primers for aFGF and bFGF: the size and abundance of amplified fragments was similar for both cell types. Also, aFGF protein, detected by immunocytochemistry using specific antisera, appeared to be present in approximately equal amounts and distributed in a similar pattern. However, scatchard analysis of radio-labelled bFGF binding to primary cultures of normal and dystrophic rat RPE revealed that dystrophic RPE possess only 29% the number of surface receptors compared to congenic normal cells. Furthermore, the level of expression of FGF-R2 mRNA, but not that of FGF-R1, was significantly different. Other parameters measured (receptor affinity, profile of ligand internalization and degradation, receptor molecular weight and mitogenic activity) did not show any significant differences between normal and dystrophic RPE. The precise role of FGF-R deficiency in the etiology of the disease hence remains to be determined, but it indicates the importance of trophic factors in the normal functioning of the retina.

Animals↗

aFGF binding to low and high affinity receptors induces both aFGF and aFGF receptors dimerization.

Acidic Fibroblast Growth Factor (aFGF) binds on two classes of fibroblast growth factor receptors, the high affinity receptors (HAR) a family of four known transmembrane tyrosine kinases and the low affinity receptors (LAR), related to cell surface heparan sulfate proteoglycan (HSPG). We analysed the relationship between the binding of aFGF on the HAR and on the LAR in bovine lens epithelial (BEL) cells in the presence of heparin or suramin. Through Northern blotting analysis we demonstrated that the three immunoglobulin-like transcript of FGF receptor type 1 (FGF-R1) is the major expressed high affinity receptor in BEL cells. On the contrary, HAR-aFGF complexes are present in two forms (150 kDa and 135 kDa) revealed by cross-linking experiments with 125I aFGF. Moreover 125I aFGF binding to BEL cell surface induces the spontaneous formation of a 125I aFGF dimer (31 kDa) which is then internalized and degraded in the cells as the 15.5 kDa aFGF native form is. It has been observed that heparin at 10 micrograms/ml (1) in cross-linking experiments, reduces by half the total number of HAR complexes by preventing the formation of the 150 kDa complex but does not affect the 135 kDa complex, (2) in binding experiments, suppress the spontaneous formation of the 125I aFGF dimer bound to LAR, and then its internalization and degradation in the cells. Moreover, we demonstrate that (1) only HAR contributes specifically and directly to the aFGF internalization process, (2) HAR internalization is ligand concentration and time saturable, (3) there is no desensitization of aFGF internalization induced by ligand binding to HAR, (4) a FGF dimerization process is highly dependent on the apparent affinity of FGF for heparin, since aFGF mutant with a reduced affinity for heparin does not promote the dimerization. These data strongly suggest that a heteroreceptor-aFGF complex (150 kDa) is formed by one molecule of HAR (FGF-R1) associated to one molecule of LAR through their respective interactions with a very stable aFGF homodimer. Such a three component receptor induced by FGF dimerization may be a process involved in the mechanism of action of FGFs which could explain the diversity of the biological response of FGF depending on the presence of the HSPG on the extra cellular matrix. In addition prebinding of unlabelled aFGF to the cells induces a 4 fold increase in the affinity of HAR to 125IaFGF concomitant with its down regulation by 80% and initiates the formation of the HAR homodimer.(ABSTRACT TRUNCATED AT 400 WORDS)

Allosteric Regulation↗

[Heterocomplex formation between high and low affinity FGF receptors is mediated by the formation of a FGF dimer].

Interactions between the two classes of fibroblast growth factor receptors 1) the high affinity receptors (HAR) a membrane glycoprotein containing an intrinsic tyrosine kinase activity, 2) low affinity receptors (LAR) cell surface proteoglycans containing heparan sulfate side chains (HSPG), and aFGF (MW: 15.5 kDa) were studied in bovine lens epithelial (BEL) cells. By Scatchard analysis of the aFGF binding to the BEL cell surface, we show that heparin at 10 micrograms/ml abolishes completely aFGF binding to LAR and reduces by half the number of aFGF HAR. By using cross-linking experiments, aFGF-HAR complexes are present in two forms (150 kDa and 135 kDa). Addition of heparin at 10 micrograms/ml abolishes the formation of the 150 kDa complex and does not affect the 135 kDa complex. Furthermore, binding of aFGF to LAR induces the spontaneous formation of a 31 kDa aFGF dimer. The dimerization process of aFGF on LAR is abolished by addition of heparin. During aFGF internalization at 37 degrees C, we have shown that aFGF-dimer is internalized, accumulated and degraded in the cell as is the 15.5 kDa native form. Heparin at 10 micrograms/ml suppresses specifically aFGF dimer internalization and reduces by half the total amount of internalized aFGF native form. Moreover, after aFGF binding and internalization, the affinity of HAR for aFGF increases concomitantly with its downregulation. Heparin does not seem to affect this phenomenon. All these results strongly suggest that an heteroreceptor dimer-aFGF complex (150 kDa) is formed by one molecule of HAR associated to one molecule of LAR through their respective interaction with a very stable homodimer of aFGF. Such a three component receptor complex induced by FGF dimerization may be a general process of FGF receptor activation which could explain the diversity of the biological response to FGF of different cell type expressing different HAR and LAR or HSPG.

Animals↗

Effect of FGFs on adult bovine Muller cells: proliferation, binding and internalization.

A new method for culturing retinal Muller cells from adult bovine tissue is described. The identification of these glial cells was based on immunocytochemical analysis of specific Muller cell markers. Cultured cells from fourth to ninth passage showed positive labelling for S 100 protein, carbonic anydrase (CAA), glutamine synthetase (GS), alpha cristallin (alpha C) and polyclonal glial fibrillary acidic protein (GFAP) antibody, but were negative for both monoclonal GFAP antibody and also for Muller cells in the retina. Investigation of the effect of acidic fibroblast growth factor (aFGF), basic fibroblast growth factor (bFGF), and epithelial growth factor (EGF) on the proliferation of the Muller cells revealed that bFGF was the most potent mitogen (EC50 = 14 pM). Binding data revealed the presence of two classes of binding sites for aFGF and bFGF: (1) a high affinity binding site (Kd of 14 pM and 27 pM for aFGF and bFGF respectively); (2) a low affinity binding site (Kd of 3.2 nM and 0.6 nM for aFGF and bFGF respectively with great variability in the number of binding sites). In addition, the cross-linking experiments revealed the presence of high molecular weight FGF receptors (110-140 kDa). After aFGF or bFGF binding to Muller cells, aFGF and bFGF-cell surface receptors were rapidly downregulated with a half-life for disappearance of 35-50 min. Internalization and degradation of 125I-bFGF bound to the Muller cell receptors did not occur at 4 degrees C. At 37 degrees C, however, there was a rapid decrease in receptor-bound 125I-bFGF due to the downregulation of bFGF receptors. Concomitantly 125I-bFGF appeared inside the Muller cells. After 2 h, 125I-bFGF began to be degraded and after 6 h three fragments of 16 kDa, 8 kDa and 5.5 kDa were discernible. Degradation of bFGF appeared to occur in the lysosomal compartment since it was inhibited by chloroquine, an inhibitor of lysosomal proteases; aFGF internalization and degradation followed the same kinetics as bFGF with the appearance of 7 kDa and 5 kDa fragments. These results suggest that Muller cells may be the target for aFGF and bFGF contained in other cells of the retina. The fact that aFGF could be released from rod outer segment by a phosphorylation-dependent mechanism, and that apical prolongation of the Muller cells is connected with the photoreceptor cells suggest that these factors may be the mediators involved in the communication between glial cells and neurons.

Animals↗

[FGF and physiopathological implications].

The role of FGF in retinal pathologies can be considered in two respects: 1-as a causative agent (for instance, stimulating aberrant growth or abnormally affecting some aspects of cellular behaviour), or 2-as a possible therapeutic drug (for instance, its ability to rescue neuronal cells from programmed or surgically-induced death), there is evidence for both: the retina, particularly the photoreceptors (PR), seems to be highly succeptible to a host of genetic defects, for instance, in the rat mutant RCS a defect in the pigmented epithelial cells (RPE) leads to the destruction of the PR. Transocular injection of FGF into RCS rats reduces the rate of PR cell loss. On the other hand, we have recently identify a difference in FGF-Receptor cell biology in the RCS mutant which may underline this particular dystrophy. Cultures of purified RPE cells were established from the dystrophic RCS rat and its congenic normal sighted control, and the number and affinity of cell surface FGF-R determined by incubation with 125I-bFGF. Scatchard analysis of the bining data indicated that whereas affinites were in both strains around 60pM, there was a large reduction in receptor number, about 70% in the mutant. Analysis of other FGF/FGF-R criteria, such as mitogenic activity, receptor molecular weight and the profile of FGF degradatoin showed no significant differences between the strains. Thus, defects in the FGF/FGF-R regulating system may actually led to retinal degeneration (RCS rat). But, once again, the underlying principles of FGF mechanisms of action in vivo are at present too incompletely understood to permit rationalization of these various observations.

Animals↗

Fibroblast growth factor phosphorylation and receptors in rod outer segments.

Acidic and basic fibroblast growth factors (aFGF and bFGF) have been isolated and purified from rod outer segments (ROS). aFGF is tightly bound to ROS membranes and can be specifically released by ATP. We show that this mechanism is dependent on the phosphorylation of aFGF itself. Phorbol 12-myristate 13-acetate (PMA) enhances this phenomenon independently of rhodopsin phosphorylation. This demonstrates that aFGF release from ROS membranes is dependent on its phosphorylation by endogenous kinase C. In addition specific binding sites for exogenous FGFs have been identified on ROS and disc membranes. A single high affinity site with a Kd of 40 pM was present in intact ROS while an additional low affinity site with a Kd of 300-600 pM was present in leaky ROS or in disc membranes. Light or ATP modified neither these Kd nor the apparent number of sites. The presence of specific receptors for FGFs and the kinase C dependent release of endogenous membrane bound aFGF suggest an autocrine mechanism which may be involved in photoreceptor cell biology.

Animals↗

The effect of eye-derived-growth-factor (EDGFs) on methionine incorporation in the different cell populations of bovine adult lens in organ culture.

When adult bovine lenses were cultured in vitro, the purified retina-derived growth factors EDGF I or EDGF II, as well as the soluble fraction of the retina RE, increased the rate of incorporation of [35S]methionine into protein in cells belonging to different populations in the anterior epithelium as well as in fibers from the most superficial region of the cortex. These fiber cells were the most sensitive to stimulation by the retinal factors as they exhibit a significant increase of total protein synthesis 24 hr after addition of the factors to the culture medium. The epithelial cells studied--central epithelial cells and germinative cells--appeared stimulated only 1 day later. The stimulation of incorporation was not directed towards a particular subset of proteins but to all major polypeptides constituting the electrophoretic pattern of each cell population. It is suggested that this type of ocular signal, which stimulates the expression of a definite program, may act as a permissive signal.

Animals↗

In vivo binding of topically applied human bFGF on rabbit corneal epithelial wound.

We present the results of the first evaluation of human placenta extracted basic fibroblast growth factor (bFGF) in a rabbit corneal epithelium wound-healing model. Healing dose-response experiments after selective epithelial wounding with iodine vapors demonstrated that bFGF accelerated the repair process in a saturable manner. Corneal binding of topically applied 125I-labeled bFGF was investigated using radioassay and autoradiographic techniques. Basic FGF was shown to bind specifically to denuded epithelial basement membrane in a very stable fashion and not to the intact epithelium. No transfer of the topical bFGF to the aqueous humor or any intraocular structure could be observed. The stability of this interaction was further demonstrated by reextracting and characterizing the labeled factor from treated corneas. The specificity of the fixation was documented by in vivo topical competition with unlabeled bFGF or heparin. We propose that bFGF-basement membrane interactions play a role in corneal wound healing.

Administration, Topical↗

Regulation of eye derived growth factor binding to membranes by light, ATP or GTP in photoreceptor outer segments.

Eye derived growth factor II (EDGF II), the retinal form of acidic fibroblast growth factor (aFGF) is present in rod outer segments (ROS) purified in the dark, which display higher EDGF specific activity than all other parts of the retina. EDGF binds to ROS disc membranes upon illumination. This binding is not reversible in the dark. ATP, but not GTP, readily releases EDGF from either dark-adapted or previously bleached ROS. The release of EDGF activity from ROS membranes would require a phosphorylation mechanism since AMP-PNP, an ATP analogue, is not efficient. ROS membranes compete with cellular EDGF receptors of retinal pigment epithelial cells in vitro for the binding of labelled EDGF II, suggesting that they also possess specific binding sites. These data suggest that EDGF II is involved in photoreceptor cell biology.

Adenosine Triphosphate↗

Characterization of acidic and basic fibroblast growth factors in brain, retina and vitreous chick embryo.

We have purified acidic and basic fibroblast growth factors (c-aFGF, c-bFGF) from 11 day-old chick embryo brain, retina and vitreous by heparin-Sepharose chromatography and reverse phase HPLC. The analysis of their biological activity as well as their molecular weight indicates that they were analogous to basic or acidic human and bovine FGF. The ratio of c-aFGF to c-bFGF activity depended of the tissue. In brain c-aFGF represented 66% of the total mitogenic activity retained on the heparin-sepharose column and c-bFGF 34% while retina contained 16% of c-aFGF and 84% of c-bFGF; vitreous 78% of c-aFGF and 22% of c-bFGF. Like human aFGF, Heparin stimulated purified c-aFGF mitogenic activity in the absence of serum but inhibited the activity of the retina acid soluble extract, in the presence of foetal calf serum (FCS). Thus, chick embryo and adult human acidic and basic FGF respectively share the same biochemical properties. Since there are no blood vessels in chick retina or vitreous, their presence in these tissues suggests that angiogenesis is not the only role of these growth factors.

Animals↗