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Biomedical subjects

L Bracci

Publications and source records attributed to L Bracci.

15 recordsLinked to original sources

Binding of HIV-1 gp120 to the nicotinic receptor.

We previously described a significant sequence homology between HIV-1 gp120 and the functional sites responsible for the specific binding of snake curare-mimetic neurotoxins and rabies virus glycoprotein to the nicotinic acetylcholine receptor. Here we report findings about the existence of a mechanism of functional molecular mimicry which could enable the binding of HIV-1 gp120 to nicotinic acetylcholine receptors in muscle cells and neurons.

Acetylcholine

An antigenic determinant common to human chorionic somatomammotropin and human growth hormone revealed by limited proteolysis of immune complexes.

An epitope of human chorionic somatomammotropin for one of the monoclonal antibodies raised against the whole antigen has been identified. We compared the release of peptides from limited proteolysis of the antigen in the presence and absence of the related antibody. Using enzymes of different specificity, we could determine the amino acid sequence that can be considered at least inclusive of the epitope. The monoclonal antibody selected is 100% cross-reactive with human growth hormone, so the antigenic determinant identified is shared by the two protein hormones.

Amino Acid Sequence

Bar coding. An effective productivity concept.

Bar coding is becoming a major contributor to the information revolution taking place in the health-care industry. Besides improving nursing productivity, bar coding can improve the quality of documentation and enhance the manner in which staffing requirements are identified and patient classification information gathered.

California

Binding properties of monoclonal antibodies to rabies virus.

The monoclonal antibodies (mAbs) obtained by immunizing mice with a tetradecapeptide corresponding to the 190-203 region of rabies virus glycoprotein, involved in binding to the acetylcholine receptor (AchR), displayed different specificities to different rabies virus strains. These mAbs, when used in immunofluorescence tests, allowed differentiation of wild rabies viruses from the attenuated ones.

Amino Acid Sequence

HPLC immunoaffinity purification of rabies virus glycoprotein using immobilized antipeptide antibodies.

It has been reported that the acetylcholine receptor may be used by the rabies virus to concentrate at sites in proximal to peripheral nerves. It has also been reported that the binding site for the receptor is located within the 190-203 region of the virus glycoprotein on the basis of its structural homology with the toxic center of snake neurotoxins, which are well known cholinergic ligands. We prepared monoclonal antibodies against the synthetic tetradecapeptide having the same sequence as the putative binding site of the rabies virus. One of three antibodies (clone 2PV 36-74) was able to recognize both the whole virus and its peplomeric glycoprotein and could bind acetylcholine. It was also able to inhibit the binding both of alpha-bungarotoxin and rabies virus glycoprotein to the acetylcholine receptor. We have covalently bound 2PV 36-74 to an HPLC affinity column and utilized it for specific purification of rabies virus glycoprotein. The immunoaffinity chromatographic method we describe is very sensitive and highly specific. Moreover this procedure does not denature the sample and is vary rapid and efficient.

Animals

A monoclonal antibody to a synthetic fragment of rabies virus glycoprotein binds ligands of the nicotinic cholinergic receptor.

Rabies virus glycoprotein and snake venom curaremimetic neurotoxins share a region of high homology (30-45 for neurotoxins and 190-203 for the glycoprotein) in the regions that are believed to be responsible for binding the nicotinic acetylcholine receptor. Monoclonal antibodies raised to the 190-203 synthetic fragment of rabies virus glycoprotein were immobilized on a high performance affinity chromatography column and were able to bind neurotoxins. Toxins were displaced from the affinity column by elution at acidic pH and by affinity competition with acetylcholine at neutral pH. Furthermore, the affinity column proved to be useful for the purification of cholinergic ligands. Overall, these results indicate that the paratope of our monoclonal antibodies could behave as an 'internal image' of the nicotinic cholinergic receptor acetylcholine binding site.

Amino Acid Sequence

High performance liquid chromatography immunoaffinity purification of antibodies and antibody fragments.

A rapid antibody purification method is described which combines high performance liquid chromatography (HPLC) resolution with affinity chromatography specificity. The antigen used as immobilized ligand is bound to the HPLC column matrix by reacting the amino groups of the protein with the active epoxy groups of the latter. Once the reaction has finished, the unreacted groups of the column are saturated with an appropriate scavenger. Unrelated proteins are then washed out and the specific antibodies recovered by lowering the pH of the elution buffer.

Animals

Antipeptide monoclonal antibodies inhibit the binding of rabies virus glycoprotein and alpha-bungarotoxin to the nicotinic acetylcholine receptor.

It has been reported that binding to muscle nicotinic acetylcholine receptor at the post-synaptic membrane is an important event of the rabies virus neurotropism. The binding site can be located within the 190-203 region of the virus glycoprotein sharing a high degree of homology with the "toxic loop" of the curare-mimetic snake neurotoxins. We have synthesized a tetradecapeptide corresponding to this glycoprotein region and used it, following conjugation with an immunogenic carrier to raise MAbs. We found that some MAbs raised against the peptide were able to recognize both the virus glycoprotein and the snake neurotoxin alpha-bungarotoxin; moreover, they can inhibit the binding of rabies virus glycoprotein and alpha-bungarotoxin to the nicotinic acetylcholine receptor extracted from the electric organs of Torpedo marmorata. On the basis of this cross-reactivity, we suggest that rabies virus glycoprotein and curare-mimetic snake neurotoxins share three-dimensionally similar structures in order to bind to the nicotinic cholinergic receptor. The potential use of the immunogenic properties of the peptide for the rational design of a synthetic vaccine against rabies is proposed.

Antibodies, Monoclonal

Role of physical therapy in management of pulmonary alveolar proteinosis. A case report.

Pulmonary alveolar proteinosis is a rare disease in which alveoli are filled with a lipoproteinaceous material. Treatment of pulmonary alveolar proteinosis by whole-lung lavage demands the full participation of a skilled team including a physical therapist to ensure the reversal of the patients' symptoms and pulmonary function abnormalities. This case report illustrates the role of physical therapy in management of pulmonary alveolar proteinosis.

Drainage

Immunogenicity of a free synthetic peptide: carrier-conjugation enhances antibody affinity for the native protein.

The synthetic peptide 166-174 of hCS sequence, corresponding to an antigenic determinant of the protein, was used to elicit MAbs to the native hCS molecule. The synthetic peptide was administered according to different immunization protocols to BALB/c mice, both in the free form or conjugated to carrier proteins. Spleens and popliteal lymph nodes from primed mice were fused with a myeloma cell line to produce MAbs, and selected clones were characterized for isotype and affinity. Spleen fusions gave rise to IgM MAbs, whereas lymph node fusions gave preferentially IgG MAbs. No correlation was found between antibody class and affinity since affinity is highly increased by carrier-conjugation, while it did not enhance IgG production. The free synthetic peptide showed a low immunogenicity: affinities of MAbs produced ranged from 10(5) to 10(7) l/mole, an average 1000-fold lower than the values obtained with carrier-conjugated peptide. In one case, however, carrier conjugation did not give rise to anti-hCS MAbs. Overall, these studies provide a rational approach to the production of anti-protein MAbs by synthetic peptide immunization and offer the opportunity to obtain MAbs of the desired isotype and affinity.

Animals

Determination of antigen-specific immunoglobulin content in ascitic fluids and antisera.

A rapid and sensitive method is described for the determination of the antigen-specific immunoglobulin contents of ascitic fluids and/or antisera. Immunoglobulins are quantitatively separated from the biological fluid by immunoaffinity chromatography on the insolubilized antigen using the Millipore Millititer filtration system to perform the simultaneous assay of multiple samples. The specific immunoglobulins are then eluted at acidic pH and their concentration is estimated by solid-phase competitive radioimmunoassay. Radioimmunoassay values, corrected for dilutions, give the antigen-specific immunoglobulin concentration of ascitic fluids and/or antisera.

Ascitic Fluid

Production and characterization of monoclonal antibodies to anti-human chorionic somatomammotropin by immunization with two free synthetic peptides.

The peptides corresponding to the fragments 135-140 and 166-174 of human chorionic somatomammotropin (hCS) were synthesized, and used to raise monoclonal antibodies to the native hCS molecule. The synthetic peptides were injected into BALB/c mice in the free form, i.e. not conjugated to a carrier, and the spleens were fused with Sp2/01Ag8 myeloma line to produce monoclonal antibodies. The antibodies produced belonged to the IgM and IgG classes and, once purified by affinity chromatography on hCS-Sepharose, they were covalently coupled to macroporous polystyrene beads and characterized by competitive radioimmunoassay. Their affinity constants were determined by elaborating the radioimmunoassay data by nonlinear regression analysis and they were found to range from 10(5) to 10(6) M-1. The evaluation of the affinity constant of the antibodies produced is always important as a measure of the immunogenicity of an antigen, particularly when synthetic peptides are used as immunogens.

Animals

Micro-determination of amino acid composition of proteins electroblotted onto polyvinylidene difluoride membranes.

A method for determination of amino acid composition of proteins separated by SDS-polyacrylamide gel electrophoresis and transferred to polyvinylidene difluoride (PVDF) membranes is described. A single blotted band containing 50 to 200 pmoles of protein was cut out and submitted to acid hydrolysis with HCl followed by derivatization with phenylisothiocyanate. The amino acid derivatives were separated by reverse phase high-performance liquid chromatography. Bovine serum albumin, lysozyme, myoglobin, ovalbumin, soybean trypsin inhibitor and carbonic anhydrase were analyzed; the results revealed a good correspondence with reported values. This can be considered an analytical method to determine the amino acid composition of samples from microquantities of protein mixtures, particularly in those cases in which SDS-polyacrylamide gel electrophoresis is the most suitable separation system.

Amino Acids