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Biomedical subjects

A Pessi

Publications and source records attributed to A Pessi.

At least 55 records · Page 3Linked to original sources

Chemical synthesis of a designed beta-protein through the flow-polyamide method.

A designed, 61-residue long, metal-binding protein was synthesized through the flow-polyamide method. This protein, named Minibody (Mini-antibody), contains a beta-sheet scaffold and two regions corresponding to immunoglobulin hypervariable loops (H1 and H2), onto which a metal binding site was engineered. The protein is extremely hydrophobic, with a 70% beta structure. Accordingly, it was anticipated, and actually found, to be a "difficult sequence" for all its length. Comparison of the standard, "minimum redundancy" protocol (single coupling, low excess of activated species) with a different protocol (double and triple coupling plus capping) showed that the two produced approximately the same amount of full-length product (3.7% after extensive purification). Capping was effective in blocking the unreacted amino groups, converting most failure sequences into truncated ones, a possible aid to implement affinity-type chromatographic protocols. Purification was complicated by the very low solubility of the molecule, coupled to a high tendency to aggregate even in concentrated chaotropic media (8 M urea). Nevertheless, a multi-dimensional purification scheme produced a highly homogeneous product, with the expected Ion Spray mass spectrum. The Minibody produced by recDNA methods showed identical chromatographic, spectroscopic and biochemical properties to those of the synthetic product.

Amino Acid Sequence↗

Affinity purification of a difficult-sequence protein. Implications for the inclusion of capping in synthetic protocols.

A biotinylated derivative of a designed, difficult-sequence protein (the Minibody, Bianchi, E., Tramontano, A., Sollazzo, M. & Pessi, A. (1993) Int. J. Peptide Protein Res. 41, 385-393) which represented only 3.7% of the crude, cleaved material was quantitatively recovered with about 70% purity, in a single step, by affinity chromatography on immobilised avidin. Purification to homogeneity was then easily achieved by preparative HPLC. This highly effective purification scheme must be contrasted with the previously shown multidimensional, low-yield chromatographic protocol. Since no facilitation of the purification had been obtained by capping alone, this result suggests that capping is useful only in conjunction with affinity chromatography.

Amino Acid Sequence↗

Use of human universally antigenic tetanus toxin T cell epitopes as carriers for human vaccination.

Synthetic constructs were assembled as multiple Ag peptide systems containing repetitive sequences of Plasmodium falciparum and Plasmodium berghei, the causative agents of human and murine malaria respectively, and two universal human tetanus toxin T cell epitopes 830-843 and 947-967. These constructs were tested for antibody production in mice and for their capacity to stimulate human PBL and tetanus toxin-specific T cell clones. A high antibody titer can be obtained in mice when multiple Ag peptide systems are injected in various adjuvants or in PBS alone. Furthermore, all constructs can activate PBL from every donor tested. However, a variable response was obtained when different clones specific for the two tetanus toxin universal epitopes were used. These constructs may represent possible candidates for a malaria vaccine.

Amino Acid Sequence↗

Anti-circumsporozoite protein antibodies measure age related exposure to malaria in Kataragama, Sri Lanka.

Antibodies to two peptides DDAAD and (NANP)40 representing the repetitive sequence of circumsporozoite antigens (CS protein) of P. vivax and P. falciparum respectively were measured in a cohort of 149 and 107 individuals respectively at four, 6 monthly blood surveys performed on residents of Kataragama, a P. vivax malaria endemic region in southern Sri Lanka. The prevalence of antibodies to the CS protein of both species was relatively low being less than 20% to either peptide in the population as a whole, this being consistent with the low entomological inoculation rates in the area. A marked age related prevalence pattern was evident, with the prevalence of antibodies increasing with age to reach between 25 to 30% in the 25-50 year age group in both P. vivax and P. falciparum. The population had had a life long exposure to P. vivax malaria but not to P. falciparum, an epidemic of which occurred in this region a few months prior to the beginning of this study. Nevertheless, the age-related prevalence of these antibodies was identical with respect to the two species. This suggests that the age-related prevalence pattern reflected differences in inoculation rates between the age groups due to differences in exposure to inoculation rather than an age acquired response resulting from a cumulative experience over several years. An analysis of antibody prevalence in individuals showed first, that sporozoite inoculations must have been clustered rather than homogeneously distributed in the population and secondly, that sero-conversion did not correlate with malaria infections in these individuals.

Adolescent↗

Side reactions in solid phase synthesis of histidine-containing peptides. Characterization of two major impurities by sample displacement chromatography and FAB-MS.

The flow-polyamide synthesis of a histidine-containing sequence (Ac-YDNVLDHLTGR) produced two major impurities which were isolated through Sample Displacement Chromatography and characterized by Fast Atom Bombardment-mass analysis. The impurities correspond to the sequence Ac-YDNVLDH, and to a peptide with the Asp residue cyclized to a succinimide. The latter side-reaction took place during the acetylation procedure, and demands attention where capping procedures are planned in the synthesis of Asp-His sequences.

Amino Acid Sequence↗

Application of capillary zone electrophoresis to the characterization of multiple antigen peptides.

Capillary zone electrophoresis (CZE) was applied to the analysis of a recently described class of synthetic branched peptides, multiple antigen peptides (MAPs). In comparison with high-performance liquid chromatography (HPLC), CZE showed superior resolution of minor impurities in samples of MAPs obtained by preparative chromatography. MAPs that differed only in the substitution of uncharged residues (Ala-Ser) could be separated by the addition of organic solvents (acetonitrile, methanol, ethanol) to the aqueous background electrolyte.

Amino Acid Sequence↗

Lack of H-2 restriction of the Plasmodium falciparum (NANP) sequence as multiple antigen peptide.

The major surface antigen of malaria sporozoites, the circumsporozoite protein, contains a region of tandem amino acid repeats, which in the case of the human malaria parasite Plasmodium falciparum, consist of four amino acids Asn-Ala-Asn-Pro (NANP) repeated up to about 40 times. This repetitive sequence has been considered as the basis for the development of subunit vaccines against P. falciparum malaria. We and others had previously shown that synthetic and recombinant NANP peptides were immunogenic only in H-2b mice. In the present report we show that, when mice with different H-2 haplotypes are immunized with the repetitive NANP sequence incorporated in a synthetic branching multiple antigen peptide (MAP), all except one of the mouse strains tested mounted an anti-peptide antibody response. Such a response does not appear to be due to the peculiar assembly of the NANP sequence. In fact, MAP containing repetitive sequences from circumsporozoite proteins of other malaria parasites did not overcome the genetic restriction of the immune response to the linear peptides. These data show that in the case of the P. falciparum NANP repeats, their immunogenicity can be dramatically changed and increased when these peptides are assembled as MAP. This unexpected finding may be of interest in the design of synthetic candidate malaria vaccines.

Amino Acid Sequence↗

Mycobacterial heat-shock proteins as carrier molecules.

We have previously shown that the priming of mice with live Mycobacterium tuberculosis var. bovis (Bacillus Calmette-Guérin, BCG) and immunization with the repetitive malaria synthetic peptide (NANP)40 conjugated to purified protein derivative (PPD), led to the induction of high and long-lasting titers of anti-peptide IgG antibodies, overcoming the requirement of adjuvants and the genetic restriction of the antibody response to the peptide (Lussow et al., Proc. Natl. Acad. Sci. USA 1990. 87:2960). This initial work led us to the following observations. BCG had to be live for priming to lead to the induction of anti-peptide antibodies. Surprisingly, priming with other living microorganisms which chronically infect the macrophage (e.g. Salmonella typhimurium and Leishmania major) also induced anti-peptide antibodies in mice immunized with PPD-(NANP)40 conjugate. It was, thus, hypothesized that molecules expressed during active infection and also known to be highly conserved between species, namely the heat-shock proteins (hsp), could mediate the T cell sensitization required for the production of anti-peptide antibodies. In fact, when the PPD protion of the conjugate was replaced by a highly purified recombinant protein corresponding to the 65-kDa (GroEL-type) hsp of M. bovis, this resulted in the production of anti-(NANP) IgG antibodies in BCG-primed mice, irrespective of the major histocompatibility complex-controlled responsiveness to the (NANP) sequence itself. Further, similar induction of anti-peptide antibody response was also obtained with a recombinant 70-kDa (DnaK-type) hsp of M. tuberculosis, but not with a small molecular mass (18 kDa) of M. leprae. Finally, an adjuvant-free carrier effect for anti-peptide IgG antibody production in BCG-primed mice, was also exerted by the GroEL hsp of Escherichia coli. This finding that hsp can act as carrier molecules without requiring conventional adjuvants is of potential importance in the development of vaccine strategies.

Adjuvants, Immunologic↗

Characterization of murine monoclonal antibodies against a repetitive synthetic peptide from the circumsporozoite protein of the human malaria parasite, Plasmodium falciparum.

Monoclonal antibodies (mAbs) were raised in mice against the synthetic peptide (NANP)40, consisting of 40 (NANP) repeats of the circumsporozoite (CS) protein of the human malaria parasite, Plasmodium falciparum, and characterized. (i) Five of these mAbs recognized the P. falciparum CS protein in western blot experiments and in immunofluorescence assays using different preparations of sporozoites. The remaining two mAbs (CT3.2 and CT3.3, both IgG1) gave negative results by both techniques. (ii) When the anti-(NANP)40 peptide mAbs were functionally tested in vitro to assess their ability to inhibit the attachment and penetration of the parasites into cultured human liver cells, six of them exhibited inhibitory activities ranging between 66 and 90%. CT3.2 mAbs, also, inhibited sporozoite attachment and penetration, despite the negative results by immunofluorescence and western blot experiments. However, when immunofluorescence was repeated in the presence of calcium, CT3.2 did reveal a positive recognition of P. falciparum sporozoites, suggesting that this mAb could recognize the (NANP) sequence when calcium was bound to the repetitive peptide. (iii) Furthermore, the binding of an anti-(NANP)40 IgM mAb (CT1) to the solid-phase peptide was not inhibited by preincubation of the peptide with a mAb against the P. falciparum CS protein. (iv) Finally, one anti-(NANP)40 IgG1 mAb (CT3.1) was unable to bind to the shorter (NANP)3 peptide, although it recognized the (NANP)40 peptide and the P. falciparum CS protein. The results presented here suggest that heterogeneous antibody populations are produced upon immunization of mice with (NANP)40 synthetic peptide and that epitopes different from those simply related to the linear (NANP) amino acid sequence are likely to be present in long (NANP)n constructs as well as in the repetitive domain of the P. falciparum CS protein.

Amino Acid Sequence↗

Multiple antigen peptides for specific detection of antibodies to a malaria antigen in human sera.

Multiple antigen peptides (MAP), consisting of a number of peptide copies synthesized on a branching lysyl core, offer a novel approach for rendering small peptides immunoreactive in solid-phase immunoassays. An octameric MAP, carrying 6 repeats of the sequence -N-A-A-G-, tandem repeated in the immunodominant region of the circumsporozoite (CS) protein of Plasmodium malariae, was used as a model to evaluate the suitability of the MAP system in an indirect enzyme-linked immunosorbent assay (ELISA) for detecting antibodies against a parasite antigen in individuals exposed to natural infection. The reaction of endemic sera in ELISA on MAP8-(NAAG)6 was related to that obtained in immunofluorescence on sporozoites, indicating the specificity of the antibody-MAP interaction. The reactivity of immune sera was found to be directed only against the (NAAG)6 moiety of the MAP and not against the lysyl core, since antibody binding to MAP8-(NAAG)6 was completely inhibited by (NAAG)6-NA monomer, but remained uninfluenced when lysyl core was used as competing ligand. The levels of antibodies to MAP8-(NAAG)6, in two groups of individuals naturally exposed to malaria infection, appeared to be related to their respective exposure to the parasite.

Amino Acid Sequence↗

Synthetic peptides for Plasmodium vivax malaria sero-epidemiology. Application of Fmoc-polyamide and displacement chromatography.

The immunodominant epitope of Plasmodium vivax, one of the major causative agents of malaria in man, consists of the tandem repetitions of a nonapeptide sequence, AspArgAlaAsp/AlaGlyGlnProAlaGly, with Asp (variant d) or Ala (variant a), in the fourth position. Synthetic peptides corresponding to the P. vivax epitope, containing a different number of nonapeptide sequences, were prepared by solid-phase synthesis according to the Fmoc-polyamide method. Three peptides, containing 1, 2, and 4 copies of the d variant, were assembled on the gel polymer; none of these peptides, however, was suitable for P. vivax sero-epidemiology. A 45-peptide containing both the d and a variants, ddaad, was prepared by continuous-flow Fmoc-polyamide (flow-polyamide). Among the cleavage procedures evaluated for the removal of the five Mtr groups only TFMSA/TFA/1,2-ethanedithiol (1:89:10 by vol) brought deblocking to completion; a substantial level of impurities originated, however, from these procedures. The product was purified by reversed-phase displacement chromatography, a technique only recently applied to peptides, which shows distinct advantages over conventional, linear elution chromatography. In a single experiment, 107 mg of the crude mixture were loaded onto an analytical column (250 x 4 mm), obtaining in purified form 85% of the desired material present in the sample. An ELISA test base on the ddaad peptide was developed and is being applied to the sero-epidemiology of P. vivax malaria.

Amino Acid Sequence↗

Multiple antigen peptides (MAPs) as candidate vaccines against malaria.

Multiple Antigen Peptides (MAPs), branched molecules where multiple copies of a desired antigenic sequence are assembled on a small peptide core, have been recently described as an alternative approach to the synthesis of high molecular weight immunogens. In comparison with conventional peptide-carrier conjugates, the MAPs show several advantages, including chemical unambiguity and ease of synthesis. A MAP based on the sequence of the repetitive domain of P. malariae sporozoites was immunogenic in a large number of mouse strains. When covalently linked to the corresponding sequence of the P. falciparum circumsporozoite protein, [NANP]40, the resulting conjugate showed the properties of a multivalent vaccine, overcoming the severe genetic restriction of the [NANP] sequence. A second generation of MAPs including both sequences, with more desirable chemical properties, was equally effective. These compounds represent a promising step towards the development of synthetic, multivalent peptide vaccines against human malaria.

Amino Acid Sequence↗

A multiple antigen peptide from the repetitive sequence of the Plasmodium malariae circumsporozoite protein induces a specific antibody response in mice of various H-2 haplotypes.

The major repetitive epitopes of the surface circumsporozoite (CS) protein of malaria sporozoites represent candidates for the development of subunit vaccines against malaria. However, previous experimental work has shown that repetitive peptides from the CS proteins of Plasmodium falciparum, P. vivax, P. yoelii and P. berghei are immunogenic only in mice with the H-2b or H-2k haplotype. This led to the conclusion that strong T helper epitopes from the non-repetitive CS sequences were required in the design of sporozoite vaccines. In the present study, we investigated the immunogenicity in mice of a octa-branched multiple antigen peptide (MAP) containing repeats of the CS protein of the human malaria parasite, P. malariae, [MAP8(NAAG)6], and found that mice with an H-2b, H-2d, H-2k, H-2f, H-2q, and H-2s haplotype produced anti-peptide antibodies after immunization and that only H-2r mice were nonresponsive. This antibody response, not induced in athymic H-2b nu/nu mice, was directed against the (NAAG) sequence, but not against the lysine core of the MAP construct. Finally, when covalently linked to a synthetic polymer of the repetitive (NANP) sequence of the P. falciparum CS protein, [MAP8(NAAG)6] behaved as a carrier molecule for the production of anti-(NANP)n antibodies in H-2d and H-2k mice, genetically nonresponder to the (NANP)n sequence. Should this wide immunogenicity of the P. malariae CS (NAAG) repetitive sequence also apply to humans, it might be considered for the design of multivalent subunit malaria vaccines.

Adjuvants, Immunologic↗

Reduced antibody response to the repetitive sequence of the Plasmodium falciparum circumsporozoite protein in mice infected with Plasmodium yoelii blood forms.

The immunogenicity of the carrier-free synthetic peptide, (NANP)40, from the repetitive region of the Plasmodium falciparum circumsporozoite (CS) protein was investigated in genetically responder mice (C57BL/6, H-2b) acutely infected with blood forms of the non-lethal murine malaria parasite, P. yoelii. As compared to non-infected mice, P. yoelii-infected C57BL/6 mice produced significantly lower titers of anti-(NANP)40 IgG antibodies. This decrease in the anti-(NANP)40 antibody response peaked with the peak of parasitemia, and involved all the IgG subclasses. Interestingly, this P. yoelii-mediated effect was evident both on the development of the antibody response to the (NANP)40 peptide, and on an already established anti-(NANP)40 antibody titer, as seen in mice immunized with the peptide 1 month before the infection. Since (NANP)n-based constructs are strongly envisaged as potential vaccines against falciparum malaria, these results might be important in the evaluation of the efficacy of these vaccine candidates, when they will be used in individuals living in endemic areas.

Amino Acid Sequence↗

Intraerythrocytic administration of a synthetic Plasmodium antigen elicits antibody response in mice, without carrier molecules or adjuvants.

The synthetic peptide (NANP)40, reproducing the tandem-repeated epitope of the circumsporozoite protein of Plasmodium (Laverania) falciparum, was entrapped into murine, autologous erythrocytes by a hypotonic dialysis method. Mice immunized intravenously with minute amounts of encapsulated peptide produced considerable antibody titres. This result indicates that intraerythrocytic antigen administration may have a potential as an immunization system for humans, since it dispenses with adjuvants and carrier molecules.

Animals↗

Use of a tuberculin purified protein derivative--Asn-Ala-Asn-Pro conjugate in bacillus Calmette-Guérin primed mice overcomes H-2 restriction of the antibody response and avoids the need for adjuvants.

Because of its immunodominancy, and because it is conserved in different geographical isolates of Plasmodium falciparum, the repetitive sequence of the circumsporozoite protein, (Asn-Ala-Asn-Pro)n [(NANP)n], has been envisaged for the development of an anti-falciparum malaria subunit vaccine. However, the murine immune response to (NANP)n peptides, either carrier-free or coupled to carrier proteins, was shown to be inducible only by using strong (e.g., Freund's) adjuvants. Furthermore, response to the carrier-free peptide, administered in adjuvant, is genetically restricted to I-Ab mice. In the present paper, we report that high titers of antibodies against the NANP repetitive epitope were obtained in responder C57BL/6 (H-2b) mice when they were primed with live BCG (bacillus Calmette-Guérin Mycobacterium tuberculosis var. bovis) and immunized once with the synthetic peptide (NANP)40 coupled to tuberculin purified protein derivative (PPD) without the use of any adjuvant. This approach also led to the production of high titers of anti-NANP antibodies in ASW (H-2s), B10.RIII (H-2r), BALB/c (H-2d), C3H/He (H-2k), and DBA/1 (H-2q) nonresponder mice after two injections of the conjugate. In both cases, BCG priming was obligatory for the induction of antibodies reacting with the synthetic peptide. The levels of anti-NANP antibodies in nonresponder BALB/c mice were demonstrated to be comparable to the levels induced after PPD-(NANP)40 immunization in Freund's complete or incomplete adjuvant. The antibodies induced were also capable of recognizing P. falciparum sporozoites in immunofluorescence assays and, furthermore, these antibodies inhibited the penetration of live sporozoites into human hepatocytes in vitro. This system functioned independently of the subjects' resistance or susceptibility to BCG infection. Given the widespread natural exposure to mycobacterial antigens and the extensive use of BCG and PPD in the human population, this approach might be envisaged for vaccination with malaria peptides.

Adjuvants, Immunologic↗

A rapid inhibition micro ELISA for detecting antibodies to Plasmodium falciparum sporozoites in human blood.

A sensitive and specific micro ELISA, named MONOPLATE ELISA, for the detection of antibodies against P. falciparum sporozoites was developed. It can be applied to many kinds of samples including serum, plasma, whole blood, eluted bloodspot and mosquito bloodmeal as well. The method makes use of a single microtiter plate and the chemically synthesized (Asn-Ala-Asn-Pro)20 (NANP20) antigen both as coating material and as competitive (binding) inhibitor in the samples. The specific value of each sample is obtained as the absorbance difference between the uninhibited and the fully inhibited sample. Using appropriate conditions, the results can be evaluated by simple visual inspection of the plate, without any instrument. A rapid procedure, where the incubation times for sample and conjugate are just 15 minutes, is also described. When unknown samples from a P. falciparum endemic area were tested, a close correlation was found between our results and those obtained with the only commercial ELISA kit now available (Sclavo S.p.A). For screening purposes, as many as 48 samples per plate can be tested by this method.

Amino Acid Sequence↗

Use of synthetic peptides in the study of the antibody response to Plasmodium vivax sporozoites.

Synthetic peptides reproducing 4 DRADGQPAG (D4) and a sequential array of DRADGQPAG and DRAAGQPAG repeats (DDAAD) of the Plasmodium vivax circumsporozoite (CS) protein were investigated for their potential use in the detection of P. vivax sporozoite antibodies in human sera. These peptides specifically inhibited the binding of monoclonal antibodies to the P. vivax CS protein in Western blots. However, when D4 and DDAAD peptides were used in an enzyme-linked immunosorbent assay (ELISA) for the detection of human antibodies, more sera bound to the DDAAD (61%) than to the D4 peptide (22%). This binding was specific, and suggested that the DDAAD peptide contained epitopes constituted by the sequential array of DRADGQPAG and DRAAGQPAG repeat variants and absent in the D4 peptide. The ELISA using the DDAAD peptide was applied to the detection of P. vivax CS protein antibodies in a large number of sera from Kataragama, an endemic area in Sri Lanka. The prevalence of these antibodies increased with age, reaching 40% in adults greater than 50 years old. The ELISA employing the DDAAD peptide represents a simple and useful tool for the analysis of the antibody response to P. vivax sporozoites in naturally exposed individuals.

Age Factors↗