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Biomedical subjects

C Squillacioti

Publications and source records attributed to C Squillacioti.

10 recordsLinked to original sources

Pituitary adenylate cyclase activating peptide (PACAP) immunoreactivity and mRNA expression in the duck gastrointestinal tract.

The presence and distribution of pituitary adenylate cyclase activating peptide (PACAP) immunoreactivity were studied in the duck gastrointestinal tract using immunohistochemistry and radioimmunoassays. Expression and distribution of PACAP mRNA were also studied using reverse transcriptase polymerase chain reaction (RT-PCR) and hybridization techniques. In addition, a partial coding sequence (cds) of the duck growth hormone-releasing hormone (GRF)/PACAP gene was identified. The presence of both PACAP-38 and PACAP-27 was demonstrated, the former being the predominant form. PACAP immunoreactivity was found in neurons and fibers of the enteric nervous system (ENS), in endocrine cells and in the gut associated lymphoid tissue (GALT). Double immunostaining showed that PACAP is almost completely colocalized with vasoactive intestinal peptide (VIP) in the ENS. Moreover, PACAP was also found in nitric oxide synthase (NOS)-containing neurons and nerve fibers. Radioimmunoassay (RIA) performed on denervated gut showed that more than one-half of the duodenal PACAP is extrinsic in origin. RT-PCR, Northern blot analysis and in situ hybridization confirmed the immunohistochemical data. The findings of the present study suggest that, in birds, PACAP may have multiple roles in regulating gastrointestinal functions.

Animals↗

Pituitary adenylate cyclase activating peptide (PACAP) immunoreactivity in the ureter of the duck.

The presence, distribution and colocalisation of pituitary adenylate cyclase activating peptide (PACAP) immunoreactivity have been studied in the duck ureter by using Western blot analysis, radioimmunoassays (RIA) and immunohistochemistry. The presence of both PACAP-38 and PACAP-27 was demonstrated, PACAP-38 being the predominant form. PACAP-immunoreactive fibres and neurons were found in all the ureteral layers. Double immunostaining showed that PACAP was almost completely colocalised with vasoactive intestinal peptide (VIP). Moreover, PACAP was found in substance P (SP)-containing ureteral nerve fibres and in SP-containing dorsal root ganglion neurons. RIA performed on denervated ureters demonstrated that almost half of the ureteral PACAP was extrinsic in origin. These findings suggest that, in birds, PACAP has a role in diverse nerve-mediated ureteral functions.

Animals↗

Immobilised echistatin promotes platelet adhesion and protein tyrosine phosphorylation.

Echistatin, a 5000-Da disintegrin, is a strong competitive inhibitor of platelet alpha(IIb)beta(3) binding to fibrinogen. In addition to its antiplatelet activity, echistatin also exhibits activating properties by inducing a switch of alpha(IIb)beta(3) conformation towards an active state. However, soluble echistatin, which is a monomeric ligand, provides only receptor affinity modulation, but it is unable to activate integrin-dependent intracellular signals. Since proteins may exhibit a multivalent functionality as a result of their absorption to a substrate, in this study we evaluated whether immobilised echistatin is able to stimulate platelet adhesion and signalling. The immobilisation process led to an increase of echistatin affinity for integrin(s) expressed on resting platelets. Unlike the soluble form, immobilised echistatin bound at comparable extent either unstimulated or ADP-activated platelets. Furthermore, echistatin presented in this manner was effective in stimulating integrin-dependent protein tyrosine phosphorylation. Platelets adhering to immobilised echistatin showed a pattern of total tyrosine phosphorylated proteins resembling that of fibrinogen-attached platelets. In particular, solid-phase echistatin induced a strong phosphorylation of tyrosine kinases pp72(syk) and pp125(FAK). Inhibitors of platelet signalling, such as apyrase, prostaglandin E(1), cytochalasin D and bisindolylmaleimide, while not affecting platelet adhesion to immobilised echistatin, abolished pp125(FAK) phosphorylation. This suggests that signals activating protein kinase C function, dense granule secretion and cytoskeleton assembly might be involved in echistatin-induced pp125(FAK) phosphorylation.

Adenosine Diphosphate↗

H(2)O(2) activity on platelet adhesion to fibrinogen and protein tyrosine phosphorylation.

Platelets represent a target of reactive oxygen species produced under oxidative stress conditions. Controversial data on the effect of these species on platelet functions have been reported so far. In this study we evaluated the effect of a wide range of H(2)O(2) concentrations on platelet adhesion to immobilized fibrinogen and on pp72(syk) and pp125(FAK) tyrosine phosphorylation. Our results demonstrate that: (1) H(2)O(2) does not affect the adhesion of unstimulated or apyrase-treated platelets to immobilized fibrinogen; (2) H(2)O(2) does not affect pp72(syk) phosphorylation induced by platelet adhesion to fibrinogen-coated dishes; (3) H(2)O(2) reduces, in a dose-dependent fashion, pp125(FAK) phosphorylation of fibrinogen-adherent platelets; (4) concentrations of H(2)O(2) near to physiological values (10-12 microM) are able to strengthen the subthreshold activation of pp125(FAK) induced by epinephrine in apyrase-treated platelets; (5) H(2)O(2) doses higher than 0.1 mM inhibit ADP-induced platelet aggregation and dense granule secretion. The ability of H(2)O(2) to modulate pp125(FAK) phosphorylation suggests a role of this molecule in physiological hemostasis as well as in thrombus generation.

Apyrase↗

Echistatin inhibits pp125FAK autophosphorylation, paxillin phosphorylation and pp125FAK-paxillin interaction in fibronectin-adherent melanoma cells.

Echistatin, a snake-venom RGD-containing protein, was previously shown to disrupt cell-matrix adhesion by a mechanism that involves the reduction of pp125FAK tyrosine phosphorylation levels. The aim of this study was to establish the sequence of events downstream pp125FAK dephosphorylation that could be responsible for echistatin-induced disassembly of actin cytoskeleton and focal adhesions in fibronectin-adherent B16-BL6 melanoma cells. The results obtained show that echistatin induces a decrease of both autophosphorylation and kinase activity of pp125FAK. One hour of cell exposure to echistatin caused a 39% decrease of pp125FAK Tyr397 phosphorylation and a 31% reduction of pp125FAK autophosphorylation activity as measured by immune-complex kinase assay. Furthermore, 1 h of cell treatment by echistatin produced a 63% decrease of paxillin phosphorylation, as well as a reduction in the amount of paxillin bound to pp125FAK. Immunofluorescence analysis of echistatin treated cells showed the concomitant disappearance of both paxillin and pp125FAK from focal adhesions. The reduction of paxillin phosphorylation may represent a critical step in the pathway by which disintegrins exert their biological activity, including the inhibition of experimental metastasis in vivo.

Animals↗

The mycotoxin fumonisin B1 inhibits integrin-mediated cell-matrix adhesion.

Fumonisin B1 (FB1), a mycotoxin produced by the corn fungus Fusarium moniliforme, causes a variety of animal diseases and is a suspected human carcinogen. The FB1 molecule bears remarkable structural resemblance to the long-chain sphingoid base backbones of sphingolipids. The toxicity and carcinogenicity of FB1 has been ascribed to its ability to inhibit ceramide synthase, a key enzyme in the metabolism of complex sphingolipids. In this study we have investigated whether the exposure of B16-BL6 mouse melanoma cells to FB1 affects cell growth and integrin-mediated cell matrix adhesion. Cell treatment with the highest tested dose (75 microM) of FB1 for 72 h induced an about 20% inhibition of cell growth. FB1 strongly affected B16-BL6 cell adhesion to immobilized fibronectin, by causing a dose-dependent inhibition of cell attachment to this substrate. FB1 also inhibited in a dose-dependent manner the adhesion of B16-BL6 cells to the immobilized anti-fibronectin receptor antibody, whereas it affected only to a low extent cell attachment to concanavalin A. Our results demonstrate that FB1 treatment alters integrin adhesive activity, thus affecting all cellular integrin-dependent functions.

Animals↗

Echistatin inhibits pp72syk and pp125FAK phosphorylation in fibrinogen-adherent platelets.

The adhesion of ADP-stimulated platelets to immobilized fibrinogen induces the tyrosine phosphorylation of multiple proteins which include pp72syk and pp125FAK. The phosphorylation of these two proteins increases as function of time of platelet adhesion to fibrinogen; however, pp72syk results strongly phosphorylated already after 15 min, whereas pp125FAK reaches high levels of phosphorylation after 1 h of platelet adhesion. Phosphorylation of both proteins is only slightly detectable when platelets are held in suspension or when platelets are allowed to adhere to bovine serum albumin, a non-specific substrate. Echistatin, an Arg-Gly-Asp (RGD)-containing snake-venom protein, affects protein tyrosine phosphorylation promoted by platelet adhesion to fibrinogen, by causing an approximately 44% and 39% decrease of pp72syk and pp125FAK phosphorylation, respectively. The interaction of echistatin with fibrinogen receptor glycoprotein IIb-IIIa on platelet surface might be responsible for the block of integrin-mediated signaling cascade, including pp72syk and pp125FAK inactivation.

Blood Platelets↗

Echistatin induces decrease of pp125FAK phosphorylation, disassembly of actin cytoskeleton and focal adhesions, and detachment of fibronectin-adherent melanoma cells.

B16-BL6 mouse melanoma cells cultured on fibronectin-coated dishes were detached by treatment with echistatin, an RGD-containing disintegrin. Echistatin was active at micromolar concentrations and was not cytotoxic. Its effect was dose-dependent and reversible. Sequential morphological changes leading to rounding up of the cells were detected by phase-contrast microscopy and by immunofluorescence analysis. A dramatic reduction in the number and size of focal adhesions and loss of cytoplasmic actin filaments were observed well before cell detachment occurred. Echistatin treatment down-regulated the phosphorylation of pp125FAK in fibronectin-adherent cells in a dose- and time-dependent fashion. The reduction of pp125FAK phosphorylation preceded cell detachment and occurred even in the presence of orthovanadate, an inhibitor of protein tyrosine phosphatases. These results suggest that echistatin detaches cells from the fibronectin substratum by inducing a decrease of pp125FAK phosphorylation and that echistatin acts by inhibiting protein tyrosine kinase activity rather than activating protein tyrosine phosphatases.

Actin Cytoskeleton↗

Echistatin inhibits the adhesion of murine melanoma cells to extracellular matrix components.

Echistatin, an RGD containing peptide isolated from Echis carinatus snake venom, inhibited the in vitro attachment of B16-BL6 mouse melanoma cells to fibronectin, vitronectin and laminin. Its inhibitory activity on cell adhesion was non-cytotoxic, dose-dependent and fully reversible. Kinetic analysis showed a competitive type of inhibition for all the three substrates examined here. Chemical reduction and alkylation of echistatin almost abolished its effect on cell adhesion to extracellular matrix components. Native echistatin was also able to inhibit B16-BL6 cell attachment to IgG antihuman fibronectin receptor-coated wells, thus suggesting that the molecule binds to adhesive receptors on melanoma cell surface. Our results indicate that echistatin is an useful disintegrin for research on cell adhesion.

Amino Acid Sequence↗

Glutathione depletion induced in rat liver fractions by seven pesticides.

Glutathione (GSH) plays a central role in the chemical detoxication. Xenobiotics which induce GSH depletion, either via GSH conjugation or via oxidation of GSH to glutathione disulfide (GSSG), alter the mechanism of natural cellular defence against toxicants. The aim of this study was to evaluate the ability of seven widely used pesticides (Alachlor, Atrazine, Benomyl, Captan, Linuron, Methyl Parathion and Propanil) and/or of their metabolites to deplete GSH in rat liver fractions. In our experimental conditions, Atrazine, Linuron and Propanil failed to interact with rat liver GSH. Conversely, Alachlor, Benomyl and Methyl Parthion were able to deplete GSH in rat liver, probably by forming GSH conjugates. The fungicide Captan rapidly reduced the rat liver concentration of GSH by converting it to the oxidized form GSSG. But a longer incubation of Captan with rat hepatic enzymes produced the formation of metabolites which depleted GSH via conjugation. Our results suggest that exposure to the pesticides Alachlor, Benomyl, Captan and Methyl Parathion may induce an alteration of natural mechanisms of defence against toxicants in mammals, including humans.

Amino Acid Sequence↗