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R Pasqualini

Publications and source records attributed to R Pasqualini.

At least 73 records · Page 4Linked to original sources

A peptide isolated from phage display libraries is a structural and functional mimic of an RGD-binding site on integrins.

Many integrins recognize short RGD-containing amino acid sequences and such peptide sequences can be identified from phage libraries by panning with an integrin. Here, in a reverse strategy, we have used such libraries to isolate minimal receptor sequences that bind to fibronectin and RGD-containing fibronectin fragments in affinity panning. A predominant cyclic motif, *CWDDG/LWLC*, was obtained (the asterisks denote a potential disulfide bond). Studies using the purified phage and the corresponding synthetic cyclic peptides showed that *CWDDGWLC*-expressing phage binds specifically to fibronectin and to fibronectin fragments containing the RGD sequence. The binding did not require divalent cations and was inhibited by both RGD and *CWDDGWLC*-containing synthetic peptides. Conversely, RGD-expressing phage attached specifically to immobilized *CWDDGWLC*-peptide and the binding could be blocked by the respective synthetic peptides in solution. Moreover, fibronectin bound to a *CWDDGWLC*-peptide affinity column, and could be eluted with an RGD-containing peptide. The *CWDDGWLC*-peptide inhibited RGD-dependent cell attachment to fibronectin and vitronectin, but not to collagen. A region of the beta subunit of RGD-binding integrins that has been previously demonstrated to be involved in ligand binding includes a polypeptide stretch, KDDLW (in beta 3) similar to WDDG/LWL. Synthetic peptides corresponding to this region in beta 3 were found to bind RGD-displaying phage and conversion of its two aspartic residues into alanines greatly reduced the RGD binding. Polyclonal antibodies raised against the *CWDDGWLC*-peptide recognized beta 1 and beta 3 in immunoblots. These data indicate that the *CWDDGWLC*-peptide is a functional mimic of ligand binding sites of RGD-directed integrins, and that the structurally similar site in the integrin beta subunit is a binding site for RGD.

Amino Acid Sequence↗

Subcellular distribution of technetium-99m-N-NOEt in rat myocardium.

UNLABELLED: The aim of this study was to determine the subcellular distribution of bis(N-ethoxy N-ethyl)dithiocarbamato nitrido technetium(V) (99mTcN-NOEt) in rat heart by differential centrifugation techniques. Extraction of the activity from homogenized rat heart tissue was also performed to assess whether myocardial retention might induce changes in the chemical identity of the complex. METHODS: Anesthetized rats were intravenously injected with 99mTcN-NOEt, the heart tissue was extracted and homogenized and tissue fractions were obtained by differential centrifugation. The efficiency of organelle separation was determined by assay of each centrifugal fraction using enzyme markers. Lactate dehydrogenase (LDH), acid phosphatase (ACP), alkaline phosphatase (ALP) and 5'-nucleotidase (5'ND) activities were assayed using standard spectrophotometric methods. Succinic dehydrogenase (SDH) activity was determined using a p-iodo-nitrotetrazolium-linked assay. Severe cell membrane and organelle disruption were induced by prolonging the homogenization time and their effect on the subcellular distribution of 99mTcN-NOEt was studied. The activity from homogenized heart tissue was extracted using the Folch technique and analyzed by TLC and HPLC. RESULTS: Most of the 99mTcN-NOEt activity was found to be associated with the hydrophobic components of the cell. No evidence of specific association of activity with the cytosolic and mitochondrial components was observed. Organelle and membrane cleavage did not cause release of activity into the cytosol. Approximately 90% of 99mTcN-NOEt activity was extracted from ventricular tissue and the chemical nature of 99mTcN-NOEt was not altered by uptake by myocardium. CONCLUSION: Cell membranes are the most apparent site of localization of 99mTcN-NOEt in heart tissue.

Animals↗

Myocardial kinetics of TcN-NOET: a neutral lipophilic complex tracer of regional myocardial blood flow.

UNLABELLED: [Bis (N-etoxy, N ethyl dithiocarbamato) nitrido] 99mTc (V) (TcN-NOET) is a new neutral lipophilic myocardial imaging agent proposed for clinical use for detecting coronary artery disease. We studied the relation between myocardial retention of TcN-NOET and myocardial blood flow (MBF) in a canine model. METHODS: A wide range of MBF was induced by partial regional coronary occlusion and dipyridamole infusion (protocols 1,2 and 3). Myocardial activity of TcN-NOET was determined by in vitro tissue counting at 15 or 90 min postinjection. Tracer activity was correlated with radiolabeled microspheres using linear regression analysis. RESULTS: There was a linear correlation between myocardial TcN-NOET activity and microspheres in protocol 1 (r = 094, 15 min postinjection, protocol 2 (r = 0.94, 15 min postinjection after dipyridamole) and protocol 3 (r = 0.91, 90 min postinjection after dipyridamole). When arterial occlusion was discontinued (protocol 4), there was no longer a close linear correlation (r = 0.26). The first-pass myocardial extraction action of TcN-NOET was 75.5% +/- 4% under basal conditions and 85% +/- 2% under hyperemic conditions (p < 0.01). CONCLUSION: Up to 90 min after injection, the relationship between TcN-NOET myocardial retention and blood flow is excellent over a wide range of flows. After reflow, TcN-NOET redistributes almost completely within 90 min.

Animals↗

Synthesis, characterization and biodistribution of new 99mTc oxo and nitrido complexes with bi- and tetradendate unsaturated NS and N2S2 Schiff bases derived from 2-aminocyclopentene-1-dithiocarboxylic acid as potential heart imaging agents.

The synthesis, characterization and 99mTc labelling of unsaturated diamino dithiol ligands with methyl dithiocarboxylate functions: 2-aminocyclopentene-1-dithiocarboxylic methyl ester (H2L1), N,N'-ethylene bis(methyl 2-aminocyclopentene-1-dithiocarboxylate) (H2L2) and N,N'-propylene bis (methyl 2-aminocyclopentene-1-dithiocarboxylate) (H2L3) are described. Cationic oxo (Tc = O) and neutral nitrido (Tc = N) complexes were obtained. Biodistribution studies in rat showed a good heart uptake of 99mTcN-L2 (2% ID at 5 min) with a high heart-to-blood ratio (5.8 at 5 min), but this complex also exhibited high lung and liver uptake.

Animals↗

Contrasting roles for integrin beta 1 and beta 5 cytoplasmic domains in subcellular localization, cell proliferation, and cell migration.

To carry out a detailed comparison of the roles of integrin beta 1 and beta 5 cytoplasmic domains, we expressed both wild type beta 1 and chimeric beta 1/5 constructs in CHO cells. In the latter, the cytoplasmic domain of beta 1 was replaced with that of beta 5. The human beta 1 and beta 1/5 constructs appeared at similar levels at the cell surface (mostly as alpha 5 beta 1 heterodimers) and contributed equally to CHO cell adhesion to fibronectin. However, beta 1 but not beta 1/5 localized to focal adhesion-like structures when CHO cells were spread on fibronectin. Furthermore, only the beta 1-CHO cells showed increased proliferation in response to fibronectin plus an integrin-activating anti-beta 1 antibody, and showed increased appearance of 32P-labeled protein (p90) that correlated with proliferation. In sharp contrast, the beta 1/5-CHO cells were notably more migratory than beta 1-CHO cells in a transwell haptotactic migration assay. These results indicate that the beta 1 and beta 5 integrin subunit cytoplasmic domains can translate similar adhesive information into highly contrasting subsequent events. Thus, we have established that "inside-out" and "outside-in" integrin signaling pathways are regulated by fundamentally distinct mechanisms. In addition, we suggest that the same properties of the beta 1 cytoplasmic domain that promote recruitment to visible focal adhesion-like structures may also be conductive to cell proliferation. Conversely, the properties of the beta 5 tail that make it less likely to localize into focal adhesion-like structures may contribute to enhanced cell migration.

Amino Acid Sequence↗

The I domain is essential for echovirus 1 interaction with VLA-2.

VLA-2, the alpha 2 beta 1 integrin, mediates cell adhesion to collagen and laminin, and is the receptor for the human pathogen echovirus 1. Because of its similarity to domains present in other proteins that interact with collagen, a 191 amino acid region within the alpha 2 subunit (the I domain) has been proposed as a potential site for ligand interactions. Although the alpha 2 subunits of human and murine VLA-2 are 84% identical, human alpha 2 promotes virus binding whereas murine alpha 2 does not. We used murine/human chimeric alpha 2 molecules to identify regions of the human molecule essential for virus binding. Virus bound efficiently to a chimeric protein in which the human I domain was inserted into murine alpha 2, indicating that the human I domain is responsible for specific virus interactions. Monoclonal antibodies that inhibited virus attachment all recognized epitopes within the human I domain, further suggesting that virus interacts with this portion of the molecule. Similarly, antibodies that prevented VLA-2-mediated cell adhesion to collagen also mapped to the I domain. These results indicate that the I domain plays a role in VLA-2 interactions both with virus and with extracellular matrix ligands.

Amino Acid Sequence↗

Bis(dithiocarbamato) nitrido technetium-99m radiopharmaceuticals: a class of neutral myocardial imaging agents.

UNLABELLED: The synthesis and biodistribution in various animal models (rat, dog, pig and monkey) of 99mTc radiopharmaceuticals containing the Tc = N multiple bond are reported. METHODS: The complexes are represented by the general formula 99mTcN(L)2, where L is the monoanionic form of a dithiocarbamate ligand of the type [R1(R2)-N-C(=S)S]-, and R1 and R2 are variable, lateral groups. The preparations were carried out, both as a liquid and freeze-dried formulation, through a simple procedure involving the initial reaction of [99mTcO4]- with S-methyl N-methyl dithiocarbazate [H2NN(CH3)C(=S)SCH3], in the presence of tertiary phosphines or Sn2+ ion as reductants, followed by the addition of the sodium salt of the ligand (NaL) to afford the final product. The chemical identity of the resulting complexes was determined by comparing their chromatographic properties with those of the corresponding 99Tc analogs characterized by spectroscopic and x-ray crystallographic methods. The complexes are neutral and possess a distorted, square pyramidal geometry. RESULTS: No decomposition of the complexes, in physiological solution, was observed over a period of 6 hr. Imaging and biodistribution studies demonstrated that these radiopharmaceuticals localize selectively in the myocardium of rats, dogs and primates, but that they failed to visualize the pig heart. The kinetics of heart uptake and clearance were studied in rats and dogs, and found to be strongly influenced by variation of the lateral R1 and R2 groups. CONCLUSION: The high quality of myocardial images obtained in dogs and monkeys demonstrates that the derivative 99mTcN[E-t(EtO)NCS2]2 [99mTcN(NOEt)] exhibits the most favorable distribution properties for further studies in humans.

Animals↗

Targeted disruption of CD43 gene enhances T lymphocyte adhesion.

CD43 is a major leukocyte surface glycoprotein thought to have important functions for T lymphocyte adhesion and activation. We investigated the function of CD43 by using gene targeting to eliminate CD43 expression in the human T lymphocyte line CEM and then testing their adhesive phenotype. Loss of CD43 expression by the CEM cells enhanced their homotypic adhesion and binding to two distinct ligands, fibronectin and HIV-1 gp120. The enhanced homotypic adhesion was blocked specifically by an anti-beta 1 integrin mAb, and the enhanced binding to fibronectin and gp120 was blocked specifically by anti-beta 1 integrin and anti-CD4 mAb, respectively. Partial reconstitution of CD43 expression in the CD43-negative cells resulted in a corresponding reversion to a less adhesive phenotype. These data suggest that CD43 interferes with T lymphocyte adhesion and that CD43 can regulate lymphocyte adhesion by providing a threshold that must be overcome for cell-cell and cell-ligand interactions to occur.

Antigens, CD↗

The function and distinctive regulation of the integrin VLA-3 in cell adhesion, spreading, and homotypic cell aggregation.

To assess directly the functional role of the integrin VLA-3 (alpha 3 beta 1), we transfected human alpha 3 cDNA into erythroleukemia (K562) cells and rhabdomyosarcoma (RD) cells. The resulting transfectants (KA3 and RA3) expressed alpha 3 beta 1 on the cell surface as confirmed using a panel of nine anti-alpha 3 monoclonal antibodies. Neither of the transfected cells exhibited increased adhesion to the extracellular matrix proteins fibronectin, laminin, and collagen. However, the KA3 transfectants did bind strongly to the extracellular matrix deposited by epidermal and carcinoma cell lines, allowing the cells to attach and spread. Binding to this cell-deposited ligand, probably containing epiligrin/kalinin, was specific to VLA-3 and could be inhibited by anti-alpha 3 antibodies and by EDTA, but not by RGD peptides. In marked contrast to other integrins (VLA-2 and VLA-4), VLA-3 showed high constitutive activity in K562 cells, but was minimally active in RD cells. Also contrasting with other beta 1 integrins, VLA-3 was minimally stimulated by the anti-beta 1 monoclonal antibody TS/216 under normal conditions. VLA-3-mediated adhesive function was well supported by either Mg2+ or Mn2+, but was almost completely abolished by the presence of 1 mM Ca2+. Surprisingly, this negative Ca2+ effect was completely overcome by the addition of the stimulatory anti-beta 1 monoclonal antibody TS2/16. Together, these results point to markedly distinct regulation for VLA-3 function compared to other beta 1 integrins. Also, all anti-VLA-3 antibodies were able to induce temperature-dependent homotypic cell aggregation of KA3 cells, but not K562 cells. However, this aggregation did not appear to be directly mediated by VLA-3 since it was not inhibited by EDTA. In addition, no enhancement of heterotypic cell-cell adhesion was observed in alpha 3-transfected cells.

Animals↗

Synthesis, characterization and biodistribution of new 99mTc Oxo and nitrido complexes of unsaturated tetradentate (N2S2)ligands.

Three unsaturated Schiff base tetradentate (N2S2 or N2SO) ligands were synthesized and characterized. Oxo and nitrido 99m-technetium complexes were obtained with these ligands. The nitrido complexes were formed using a new easy method available as a kit. When injected into rats and mice, these lipophilic complexes were able to cross the blood-brain barrier but brain perfusion imaging could not be performed due to the insufficient uptake and retention time.

Animals↗

A study of the structure, function and distribution of beta 5 integrins using novel anti-beta 5 monoclonal antibodies.

Here, we have utilized six new anti-human beta 5 monoclonal antibodies to perform a detailed investigation of the structure, function and distribution of beta 5 integrins. Monoclonal anti-beta 5 specificity was confirmed by reactivity with beta 5-transfected CHO cells, by direct binding to the beta 5 subunit (immunoblotting), and by immunodepletion experiments using polyclonal anti-beta 5 serum. The beta 5 subunit was predominantly associated with the alpha v subunit, although on some cell lines, the level of beta 5 exceeded that of alpha v for unknown reasons. Cell adhesion studies showed that the adhesive function of beta 5 could be stimulated, inhibited or unaltered by different anti-beta 5 monoclonal antibodies. The beta 5 subunit was involved in adhesion to both vitronectin and fibronectin and, at least for K562 cells, fibronectin appeared to be the preferred ligand. Flow-cytometry studies showed that the beta 5 subunit was expressed at moderate to high levels on all adherent cell lines examined, was absent from all lymphoid cell lines, and was only weakly expressed on myeloid cell lines. Staining of thymic sections showed the distribution of beta 5 on blood vessels, Hassal's corpuscles, cortical and medullary stromal cells, and basement membranes. Skin sections showed beta 5 on the basal layer of the epidermis and on some dermal blood vessel walls, and kidney sections showed staining of glomerular regions, juxta glomerular apparatus, proximal convoluted tubules and collecting tubules, and at least one anti-beta 5 antibody also stained epithelial cells of proximal tubules.

Animals↗

Synthesis of potential 99mTc nitrido tumor imaging disposition in mice.

Several cationic or neutral technetium-nitrido complexes of Schiff bases [for which 5-methyl 3-(2-hydroxyphenyl methylene) dithiocarbazate (L1) was a prototype], bis-aminoethanethiol (BAT-TM) and macrocyclic amines were prepared. We report here, the synthesis and isolation of these TcNLn complexes from reaction mixtures by high pressure liquid chromatography or sephadex G25 column. In vivo tissue distribution studies were performed on tumor bearing mice (B16, EMT6, 3LL) after i.v. injection of 10-20 microCi of TcNLn. Although pharmacokinetic differences appeared between the three studied ranges, we did not obtain proof of any particular specificity to tumor tissues. Nevertheless, the complexes were very stable and some of the ligands could be used as chelators after linking side chains or groups inducing specific tumor localization.

Animals↗

A monoclonal antibody (IID510g52) for the determination of functional domains within integrin cell surface receptors.

Monoclonal antibodies against cell surface receptors can be useful for the study of structural and biochemical features involved in protein interactions underlying platelet adhesion and aggregation. We report here the characterization of a monoclonal antibody, IID510g52 (hereafter referred to as IID5), which has been selected based on its specific binding properties against the platelet membrane glycoprotein IIIa. Characterization of the reactive epitope, including evolutionary conservation and identification of related IID5 target antigens in tumor cells, suggest that the IID5 epitope is implicated in the ligand-binding function of integrin receptors. Indeed, we show that this MoAb acts as a potent inhibitor of platelet aggregation and cell adhesion. Taken together, these results indicate that such a monoclonal may be a strategic tool for better understanding multiple integrin-mediated adhesive reactions, as well as the determination of interacting recognition sites.

Adult↗

Anti-platelet autoantibodies from ITP patients recognize an epitope in GPIIb/IIIa deduced by complementary hydropathy.

Idiopathic thrombocytopenic purpura (ITP) is a frequent platelet disorder due to the presence of anti-platelet autoantibodies. Recently a fibronectin/fibrinogen receptor in platelets, integrin GPIIb/IIIa, has been implicated as the antigen in chronic ITP. To examine the epitopes involved in the autoimmune response against GPIIb/IIIa we have used concepts from the complementary hydropathy principle. We used the peptide Trp-Thr-Val-Pro-Thr-Ala, WTVPTA (deduced from the complementary nucleotide sequence to that which codes for the Arg-Gly-Asp, RGD, domain in fibronectin), to test the immunologic activity of ITP sera. Sera from 31 patients with clinically defined ITP were tested in ELISA for reactivity towards WTVPTA and affinity purified GPIIb/IIIa. Seventeen sera (57%) reacted strongly with the glycoprotein complex, five of which reacted with the peptide. By affinity chromatography of one of these sera, we were able to show that antibodies that bind to the peptide are within the population that binds to GPIIb/IIIa. Liquid phase competition experiments revealed that binding of ITP serum to WTVPTA was inhibited only by a hydropathically compatible peptide. Our data indicate that autoantibodies can bind to hydropathically generated antigenic determinants and thus, render these peptides clinically important as diagnostic tools.

Adolescent↗

Recombinant peptides as immunogens: a comparison of protocols for antisera production using the pGEX system.

Using an inducible vector system that directs high-level production and rapid purification of recombinant protein, we have immunized mice with peptides prepared by several methods: 1) samples fractionated by sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) subsequently transferred to PVDF membrane and subcutaneously implanted in mice; 2) samples cut directly from SDS-PAGE gels and injected intraperitoneally; 3) injection of recombinant protein bound to agarose beads; and 4) injection of log-phase E. coli transformed with recombinant vector. All four strategies yielded specific antisera reacting with both the parental fusion protein and the recombinant fragment as determined by enzyme-linked immunosorbent assay and immunoblot analysis. Specific recognition of the recombinant fragment was demonstrated by a competitive inhibition assay in which the parental fusion protein abrogated reactivity of serum with the isolated recombinant fragment.

Acrylic Resins↗

Direct 99mTc labeling of monoclonal antibodies: radiolabeling and in vitro stability.

Direct labeling involves 99mTc binding to different donor groups on the protein, giving multiple binding sites of various affinities resulting in an in vivo instability. The stability has been considerably improved by activating the antibody using a controlled reduction reaction (using 2-aminoethanethiol). This reaction generates sulfhydryl groups, which are known to strongly bind 99mTc. The direct 99mTc antibody labeling method was explored using whole antibodies and fragments. Analytical methods were developed for routine evaluation of radiolabeling yield and in vitro stability. Stable direct antibody labeling with 99mTc requires the generation of sulfhydryl groups, which show high affinity binding sites for 99mTc. Such groups are obtained with 2-aminoethanethiol (AET), which induces the reduction of the intrachain or interchain disulfide bond, with no structural deterioration or any loss of immunobiological activity of the antibody. The development of fast, reliable analytical methods has made possible the qualitative and quantitative assessment of technetium species generated by the radiolabeling process. Labeling stability is determined by competition of the 99mTc-antibody bond with three ligands, Chelex 100 (a metal chelate-type resin), free DTPA solution and 1% HSA solution. Very good 99mTc-antibody stability is obtained with activated IgG (IgGa) and Fab' fragment, which makes these substances possible candidates for immunoscintigraphy use.

Animals↗

Labeling of ethambutol with 99mTc using a new reduction procedure. Pharmacokinetic study in the mouse and rat.

Certain 99mTc-labeled derivatives of ethylene diamine substituted in NN', when labeled with 99mTc, have been proposed for studying renal excretion, and others for brain imaging. Ethambutol, a well known antituberculosis drug, possesses a structure very similar to these derivatives. We prepared a complex of [99mTc]ethambutol using hypophosphorus acid as the reducing agent. The complex was then analyzed by paper and cellulose F chromatography and by FAB mass spectrometry. A pharmacokinetic study in the mouse and rat indicated that the complex is eliminated by the kidney faster than DTPA, slower than [131I]hippuran and without significant renal retention. The [99mTc]ethambutol complex is easy to prepare and shows good stability in water at physiological pH, making it potentially useful in renal excretion studies.

Animals↗