International symposium on new leads in experimental and clinical gene targeting in cancer.
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Biomedical subjects
Publications and source records attributed to R Brentani.
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Several studies have demonstrated that chronic intracerebroventricular nerve growth factor (NGF) infusion has a beneficial effect on cognitive performance of lesioned as well as old and developing animals. Here we investigate: (i) the effect of post-training infusion of NGF into the CA1 region of hippocampus on inhibitory avoidance (IA) retention in rats; (ii) the extension of the effect, in time and space, of NGF infusion into CA1 on the activity of mitogen-activated protein kinase (MAPK, syn: ERK1/2, p42/p44 MAPK). NGF was bilaterally injected into the CA1 regions of the dorsal hippocampus (0.05, 0.5 or 5.0 ng diluted in 0.5 microL of saline per side ) at 0, 120 or 360 min after IA training in rats. Retention testing was carried out 24 h after training. The injection of 5.0 and 0.5, but not 0.05, ng per side of NGF at 0 and 120 min after IA training enhanced IA retention. The highest dose used was ineffective when injected 360 min after training. The infusion of 0. 5 microL of NGF (5.0 ng) induced a significant enhancement of MAPK activity in hippocampal microslices; this enhancement was restricted to a volume with 0.8 mm radius at 30 min after injection. The MAPK activation was still seen 180 min after NGF infusion, although this value showed only a tendency. In conclusion, localized infusion of NGF into the CA1 region enhanced MAPK activity, restricted in time and space, and enhanced IA retention in a time- and dose-dependent manner.
The origin and evolution of matrix metalloproteinases represent an exciting subject of study. Recently, various reports have searched for a relationship between bacterial and eukaryotic metalloproteinases. In this report, we constructed a phylogenetic tree using the amino acid sequence of one bacterial metalloproteinase and eight eukaryotic matrix metalloproteinases and performed multiple alignments with some of these sequences. We concluded that there is a familial relationship between members of the four major branches represented in the tree.
Tissue degradation and invasion are hallmarks of the metastatic phenotype. While several extracellular matrix components can be digested by proteases, degradation of interstitial collagen is selectively initiated by collagenase. It is obvious that inhibitors of collagenase activity would be extremely useful in preventing tissue destruction and tumor cell invasion and thus prove invaluable therapeutic agents. We describe here the possible development of such inhibitors through the use of the principle of complementary hydropathy. A peptide was deduced from the nucleotide sequence complementary to that coding for the region in interstitial collagen surrounding the bond between Gly775 and Ile776 which is cleaved by the enzyme. Labeled collagen binds specifically and quantitatively to this peptide. A polyclonal mouse serum raised against this peptide recognized purified human collagenase, was able to immunoprecipitate collagenase from cultured human keratinocyte supernatants and was effective in inhibiting collagenolytic activity with a K(iapp) = 0.3 microM.
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.
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.
Metastasis, the major cause of cancer deaths, is represented by a complex, multistep cascade of events characterized by the interaction between neoplastic cells and host tissue elements (cells and extracellular matrix components). These interactions are mediated by specific receptors; among them are members of a growing family of heterodimeric cell surface glycoproteins, called integrins. The role of integrins along tumor progression key steps, as well as their value as diagnostic and prognostic markers are discussed herein. Emphasis on the nature of integrin-ligand interaction is given; in particular, concerning the role of carbohydrate moieties on the generation of diversity in integrin specificity and varying affinity states.
A cDNA clone encoding the B2 chain of laminin has been isolated from a human endothelial lambda gt11 cDNA library. The nucleotide and deduced amino acid sequences of the clone were determined and showed one amino acid substitution (Ser1519 instead of Asn) when compared to lung laminin B2 chain and one silent nucleotide change (G4200 instead of A) in relation to the human placenta laminin B2 chain. Other differences in the 3'-untranslated region were also found.
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A ribosomal fraction of Trypanosoma cruzi was isolated with detergent lysis and differential ultracentrifugation. This ribosomal fraction directed in vitro protein synthesis, in a heterologous incorporation system (rat liver pH 5 fraction), leading to values up to 10 times higher than endogenous control. The ideal concentrations of Mg2+, K+, and ribosomal proteins and the time of incubation of the incorporation mixtures were 6 mM, 21 mM, 60 microliters, and 45 min, respectively. The product thus obtained was analyzed by fluorography after polyacrylamide-sodium dodecyl sulfate gel electrophoresis and showed the presence of many protein bands, but few bands were present in the immunoprecipitate obtained with serum from Chagas' disease patients. This product was able to react with anti-T. cruzi antibodies when submitted to an immunoenzymatic assay.
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Organs of fish, amphibian, reptile, bird and mammals when stained by Sirius Red and studied with polarization microscopy present different colors in regions where collagens I, II and III have been described. Collagen type I presented a yellow, orange or red color while collagen type III appeared green. Collagen type II, present in cartilage and chondrosarcoma showed a variable color according to the tissue and the species. Its color and morphology however always permitted its clear distinction from collagens type I and type III.
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Collagen mRNA has already been purified and characterized by us. Its purity has now been enhanced by two different methods. Gel electrophoresis shows in either method, a single peak with the same mobility already reported: 1.05 X 10(6) daltons. Base composition analyses of collagen mRNA purified by either method were almost identical. Chemical analyses of the isolated polyadenylic acid stretch show that it is, 0.48 X 10(5) daltons-long, (about 140 nucleotides-long), contains 75% AMP, and is located at the 3' end of the polymer.
Collagen-synthesizing polysomes were isolated by low-speed centrifugation of the post-mitochondrial supernatant of chick homogenates. Electron microscopy of the fraction thus isolated shows it to be exclusively composed of ribosomes. Amino acid incorporation in vitro showed that these particles were efficient in the incorporation of proline, but not tryptophan, as opposed to ribosomes obtained from the supernatant of the low-speed centrifugation. The incorporation process was highly dependent on GTP, and exibited an optimal Mg2+concentration of 5.6mM. The reaction was inhibited by RNase, elongation inhibitors as anysomycin, sparsomycin, fusidic acid and GDPCP. It was also moderately inhibited by initiation inhibitors such as aurintricarboxilic acid and pyrocatechol violet. The product of the incorporation was characterized as collagen by its sensitivity towards purified collagenase, lack of tryptophan, chromatography in CM-cellulose and molecular sieve chromatography in Sephadex G-200.
Chick embryo collagen-synthesizing polysomes were isolated by differential centrifugation. RNA extracted from these particles was chromatographed in oligo(dT)-cellulose solumns and the mRNA thus obtained characterized as collagen mRNA by its electrophoetical mobility in acrylamide gels (equivalent to 1.05 x 10-6 daltons) and its effect upon a cell-free system derived from Krebs ascites tumor cells. The incorporation of 3H-proline was markedly dependent upon rabbit reticulocyte initiation factors and inhibited by initiation inhibitors such as aurintricaboxilate and pyrocatechol violet. The incorporation product was characterized as collagen by its lack of tryptophan, digestibility by purified bacterial collagenase, and by its co-chromatography with unlabled chick collagen in Sephadex G-200 and CM-cellulose columns.