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[Identification of peptides binding to Pisum sativum agglutinin from a phage-displayed random peptide library].

OBJECTIVE: To obtain peptides binding specifically to Pisum sativum agglutinin (PSA) from a phage-displayed random peptide library. METHODS: (1) A phage-displayed random hexapeptide library was screened with PSA as target. (2) Dot blot was used to analyze the influence of the alpha-Met-D-mannoside on binding between PSA and phage-displayed peptides. (3) Three peptides (RMWSF, RYDYSY, LRLRQL) were selectively synthesized, and different concentrations were used to inhibit PSA and ConA binding to the HRP. RESULTS: The enrichment occurred obviously after three rounds of screening. The insert sequences of amino acids, displayed on 22 phage DNAs from the third round of screening, were divided into three groups. The binding of phage-displayed peptides to PSA was specific as shown by dot blot and could be inhibited by alpha-Met-D-mannoside. LRLRQL was not dissolved in water. ARMWSF and RYDYSY inhibited binding of PSA to HRP, but failed to inhibit binding ConA to HRP. CONCLUSION: The binding site of peptides ARMWSF and RYDYSY is different to that of alpha-Met-D-mannoside.

Binding Sites↗

Epitope identification by polyclonal antibody from phage-displayed random peptide library.

Screening of bioactive peptides from random peptide libraries using monoclonal antibodies as ligates is an effective method to define epitopes of protein antigens. However, it is thought that polyclonal antibodies might also serve as promising ligates for screening. We illustrate this approach by using recombinant human lymphotoxin (rhLT) polyclonal antibody as a model. The procedure consists in (a) affinity purification of polyclonal antibody to obtain the "monospecific" antibody, (b) screening against a phage-displayed random peptide library using the affinity-purified antibody, (c) plating the enriched phage on agar plates, randomly picking clones, and selecting the positive ones by dot blotting, (d) DNA sequencing of the positive clones and conducting a homology search against the protein sequence databank, and (e) confirming the epitopes by chemical peptide synthesis. By employing this procedure, we identified a dominant epitope RQHPKM, located at residues 15-20 of the human lymphotoxin amino acid sequence. The usefulness of this general procedure is discussed.

Amino Acid Sequence↗

Decrypting class I MHC-bound peptides with peptide libraries.

Multiple peptides have been used as molecular tools to probe the selective, yet degenerative, recognition of peptides by class I major histocompatibility complex (MHC) molecules and T-cell receptors. The additive contributions from individual amino acids that have been identified experimentally can often be used to predict the binding of any peptide to class I MHC molecules, although other contributing factors will often result in this being an oversimplification.

Amino Acid Sequence↗

[Screening of antagonist peptide of BLyS from C7C phage display peptide library].

AIM: To screen an antagonist peptide of BLyS from C7C phage display peptide library. METHODS: C7C phage display peptide library was screened with BLyS. Indirect ELISA, competitive ELISA and MTT colorimetry were used to identify positive phage clones. RESULTS: After 3 rounds of screening, the gradual increase of the ratio of output to input and specific enrichment had been achieved. Two phage clones that could inhibit the BLyS activity were identified. CONCLUSION: Two phage display antagonist peptides of BLyS were obtained.

B-Cell Activating Factor↗

[Construction,identification and amplification of a yeast two-hybrid random cycle peptide library].

AIM: To construct a cycle peptide library composed of 16 random amino acids with yeast two-hybrid system. METHODS: Random oligonucleotides encoding 16-mer peptides were designed and synthesized artificially, and then were amplified by PCR. The amplified products were digested with BamH I and EcoR I and cloned into yeast expression plasmid pGADT(7) GH to construct the cycle library plasmids pGADT(7) GH-RP Then the number of different recombinants and the randomness of the library were tested, and the cycle peptide library plasmids were amplified, extracted and purified. RESULTS: A random cycle peptide library with 1.28 x10(7) different recombinant clones was obtained. No significant difference was found between amino acid distribution in the cycle peptide library and the expected frequency. CONCLUSION: The random cycle peptide library has been successfully constructed. And a lot of cycle peptide library plasmids with high purity were obtained.

Amino Acid Sequence↗

Unexpected frameshifts from gene to expressed protein in a phage-displayed peptide library.

A library of long peptides displayed on the pIII protein of filamentous phage was used in biopanning experiments against several protein targets. We find that a large percentage of phage clones that bind specifically to a target contain peptide-encoding genes that do not have an ORF. Instead, the reading frame is either interrupted by one or more nonsuppressed stop codons, or a post-transcriptional frameshift is needed to account for the expression of the minor phage coat protein pIII. The percentage of frameshifted clones varies depending on the target. It can be as high as 90% for clones specific for soluble forms of certain cytokine receptors. Conversely, biopanning against four mAbs did not yield any frameshifted clones. Our studies focused on one clone that binds specifically to rat growth hormone binding protein (GHBP) yet does not have an ORF. A secondary peptide library containing random mutations of this sequence was constructed and panned against GHBP to optimize and correct the reading frame. In the last round (round two) of panning with this library, none of the phage clones that bound to GHBP had an ORF. However, careful analysis of these clones allowed us to design a synthetic peptide capable of binding to GHBP. The results of this study indicate that ORFs are not required to obtain gene expression of the minor coat protein of filamentous phage and suggest that some ORF- clones may have a selective advantage over the clones having ORFs.

Amino Acid Sequence↗

Heteroduplex mobility assay (HMA) pre-screening: an improved strategy for the rapid identification of inserts selected from phage-displayed peptide libraries.

Phage-displayed peptide libraries represent an efficient tool to isolate peptides that bind a given target molecule. After several selection rounds, generally a large pool of target binding phages is obtained. Conventional analysis of the selected phage population involves extensive sequencing of many clones, most of which can be identical. We have adapted the Heteroduplex Mobility Assay (HMA) for pre-screening of phage inserts that were amplified by direct colony PCR of ELISA-positive clones. This strategy allowed for the rapid and reproducible assignment of insert sequences to different 'heteroduplex migration groups'. Sequence analysis of only one representative of each HMA migration group then completes the characterisation of the binding phage population. In our model experiments, only 16% of HMA pre-screened clones required further sequence analysis.

Animals↗

Synthetic peptide libraries in the determination of T cell epitopes and peptide binding specificity of class I molecules.

Major histocompatibility complex (MHC) class I molecules combine with short peptides of defined length and sequence. Here we describe an approach that may be used in the analysis of peptide preference of different allelic MHC class I molecules, and in the determination of T cell epitopes. We produced synthetic "peptide libraries" of limited complexity by standard peptide chemistry. Using these peptide mixtures we show that H-2 Kb molecules can accommodate both 8- and 9-residue peptides, whereas Db molecules are unable to combine with peptides shorter than 9 amino acids present in these libraries. When these peptide mixtures are used to provide "fingerprints" of Db molecules and mutants thereof, both loss and gain of the ability to combine with certain peptides is observed. For the Kbm1 mutant a strong influence of amino acid substitutions in class I molecules on the peptides selected is observed. In these synthetic peptide mixtures, the presence of a specific T cell epitope, known to be represented once, can be detected. This approach may be extended to the identification of new T cell epitopes from larger peptide libraries.

Amino Acid Sequence↗

Characterization of phage that bind plastic from phage-displayed random peptide libraries.

During routine screenings of random peptide libraries displayed at the N terminus of the pIII coat protein of M13 bacteriophage, clones were isolated that bound directly to the polystyrene (PS) surface used to immobilize the target protein. The plastic-binding phage (P-b phi) bind to both unblocked plastic (PS and polyvinyl chloride, PVC) and plastic blocked with bovine serum albumin (BSA) but require non-ionic detergent to bind to plastic blocked with milk. Comparison of the P-b phi to antibody-binding phage (Ab-b phi) indicates that similar numbers of phage particles are bound, but fewer P-b phi the recovered by acid elution. Sequence determination of the displayed peptides reveals they lack amino-acid sequence similarity yet are highly enriched for the Tyr and Trp residues. However, because not all phage that display peptides rich in Tyr and Trp residues bind to plastic, and other methods of screening random peptide libraries have identified different classes of plastic-binding peptides, the relative abundance of Tyr and Trp residues should not be considered diagnostic of plastic-binding. In summary, these results help characterize one of the most common methods used to screen random peptide libraries and suggest strategies to avoid isolating P-b phi. Furthermore, while it is generally believed that proteins bind to plastic by non-specific interactions, these results show that a bias in aa composition can exist.

Amino Acid Sequence↗

Combinatorial peptide library methods for immunobiology research.

The field of combinatorial peptide chemistry has emerged as a powerful tool in the study of many biological systems. This review focuses on combinatorial peptide library methodology, which includes biological library methods, spatially addressable parallel library methods, library methods requiring deconvolution, the "one-bead one-compound" library method, and affinity chromatography selection method. These peptide libraries have successfully been employed to study a vast array of cell surface receptors, as well as have been useful in identifying protein kinase substrates and inhibitors. In recent immunobiological applications, peptide libraries have proven monumental in the definition of MHC anchor residues, in lymphocyte epitope mapping, and in the development of peptide vaccines. Peptides identified from such libraries, when presented in a chemical microarray format, may prove useful in immunodiagnostics. Combinatorial peptide libraries offer a high-throughput approach to study limitless biological targets. Peptides discovered from such studies may be therapeutically and diagnostically useful agents.

Animals↗

Identification of mimotopes of the Japanese encephalitis virus envelope protein using phage-displayed combinatorial peptide library.

The phage-displayed combinatorial peptide library is a revolutionary method for discovering epitopes, in particular conformational epitopes. In this study, we characterized a Japanese encephalitis virus (JEV) conformational epitope by biopanning of phage-displayed random peptide libraries with a JEV envelope (E) protein-specific monoclonal antibody (mAb) 2H2. Eleven identified phage clones with high affinity to mAb 2H2 were identified using direct and inhibitory binding ELISA. Sequence alignment, structure modeling and mutational analysis revealed that the identified mimotopes for mAb 2H2 possess a conserved motif X(1)(D/E)(Y/T/S)X(2), fitting into a region at the domain III lateral surface of the E protein. The results of our study could provide useful information on the development of effective mimotope-based vaccines and diagnostic kits for the JEV infection.

Amino Acid Motifs↗

Selection of immunodominant mimics of IROMP-99 of rabbit Pasteurella multocida from a random 12-peptide library.

A random 12-peptide library was used to screen immunodominant mimics of 99kDa iron-regulated outer membrane protein (IROMP-99) of rabbit Pasteurella multocida. In the present study, expression of IROMPs of rabbit P. multocida strain C51-12 were analyzed by SDS-PAGE, and Western blot to determine the specificity of rat antiserum antibodies against IROMP-99. Only IROMP-99 whose expression was induced under iron-restricted conditions was detected on nitrocellulose paper. The phage display library was screened with rat normal and IROMP-99-specific antiserum. The positive phage clones were identified using enzyme-linked immunoadsorbent assay (ELISA) and inhibition assays for their reactivity to the antiserum. Out of the 18 randomly selected positive clones that showed higher reactivity to rat antiserum, only ten clones efficaciously inhibited binding of rat antisera to IROMPs and their displayed peptides were determined. Alignment using DNAStar-MegAlign software, results showed that motif WHxTxP was highly conserved among nine clones, only clone A7 had no obvious linear homology with either. Our findings suggest that the motif WHxTxP could be an immunodominant mimic epitope of IROMP-99 of rabbit P. multocida strain C51-12.

Amino Acid Sequence↗

Epitope mapping of rat neutralizing monoclonal antibody against human immunodeficiency virus type-1 by a phage peptide library: comparison with ELISA using synthetic peptides.

We generated a rat monoclonal antibody (mAb W#10) with the ability to neutralize human immunodeficiency virus type 1IIIB (HIV-1IIIB) infection. The epitope recognized by mAb W#10 was defined as R-I-Q-R-G-P-G by enzyme-linked immunosorbent assay (ELISA) with the use of synthetic peptides. The filamentous phage clones displaying random 15-amino-acid peptides on the amino terminus of the pIII coat protein reacting with mAb W#10 were identified with affinity and immunological selection procedures. Thirteen out of 16 selected phage clones contained the G-X-G-R-X-F sequence in the coat protein region representing significant homology to a part of conserved G-P-G-R-A-F sequence in the V3 loop of various HIV-1 strains. In addition, the phage clones included the G-X-G sequence in the sequence detected by synthetic peptides as the recognition site. The selected phage clones were stained by mAb W#10 specifically and were able to compete with mAb binding to cells expressing viral antigens.

Amino Acid Sequence↗

A new hybrid resin for stepwise screening of peptide libraries combined with single bead Edman sequencing.

A library system was developed for the discovery of bioactive peptides. Library synthesis and peptide sequencing was performed on a solid support while the screening for bioactivity was done with peptides in solution. The peptides were synthesized by split and mix, one-bead-one-peptide library synthesis, using a Tentagel S-NH2 solid support with a loading of approximately 100 pmol/bead. The major part of the peptide was connected to the support by a single acid-labile linker and a minor part of the peptide was acid-stabile attached to the polymer. The percentage of acid-stabile attached peptides could easily be controlled during modification of the amino functionalities of the resin at the start of the process. The cleavage rate of the acid-labile attached peptide from the resin depends on the composition of the cleavage mixture. When cleavage conditions were carefully controlled, a three-step partial cleavage protocol allowed for convergent bioactivity screening on peptide libraries using only one type of acid-labile linker. The partial cleavage and convergent screening procedure was repeated three times, after which the bead containing the bioactive peptide was sequenced. As such a bead still contained acid-stabile attached peptide, the Edman sequencing was straightforward and repetitive yields were excellent because the immobilized peptide was not washed out.

CD4-Positive T-Lymphocytes↗

Cytotoxic T cell induction with ratchet peptide libraries.

Immunization with synthetic peptides are used to induce cytotoxic T cell (CTL) responses in vivo. However, CTL peptide vaccines require the use of multiple peptides to overcome genetic diversity associated with MHC restriction, and prior epitope identification from the chosen protein template. We describe here a method whereby all nonamer sequences from a longer template can be synthesized simultaneously in a ratchet peptide library (RPL) covering all potential epitopes within a protein. We synthesized an RPL based on a template sequence from the Plasmodium berghei circumsporozoite (CS) protein (CSRPL). Using a lipopeptide formulation we immunized mice i.p. with the CSRPL and elicited CS specific CTL, which recognized the CS252-260 H-2Kd restricted CTL epitope.

Amino Acid Sequence↗

A simple and effective method for producing nonrandom peptide libraries using cotton as a carrier in continuous flow peptide synthesizers.

A method has been developed for generating nonrandom peptide libraries on cotton. Disks of cotton fabric were chemically modified to enable peptide synthesis. Incorporation of a 6-aminocaproic acid residue handle on the cellulose turned out to be advantageous. Disks were labeled with silver ink, stacked one on top of another in a continuous flow peptide synthesizer column, and simultaneously subjected to automated synthesis procedures. Depending on the sequences to be synthesized, the automatic synthesis procedure was stopped, and the disks were removed from the column, sorted, and reapplied to subsequent synthesis steps. In this way, individual peptides could be easily prepared in milligram quantities on each of the cotton disks.

Automation↗

A new ligand for immunoglobulin g subdomains by screening of a synthetic peptide library.

By screening a synthetic peptide library of general formula (NH(2)-Cys1-X2-X3-X4)(2)-Lys-Gly-OH, a disulfide-bridged cyclic peptide, where X2-X3-X4 is the tripeptide Phe-His-His, has been selected as a ligand for immunoglobulin G (IgG). The peptide, after a preliminary chromatographic characterization, has proved useful as a new affinity ligand for the purification of polyclonal as well as monoclonal antibodies from biological fluids, with recovery yields of up to 90% (90% purity). The ligand is able to bind antibody fragments containing both Fab and Fc from different antibody isotypes, a fact suggesting the presence of at least two different antibody-binding sites. While the recognition site on Fab is unknown, comparative binding studies with Fc, in association with the striking similarities of the peptide (named Fc-receptor mimetic, FcRM) with a region of the human FcgammaRIII receptor, strongly indicate that the peptide could recognize a short amino acid stretch of the lower hinge region, which has a key role in autoimmune disease triggering. The unique properties make the ligand attractive for both the purification of antibody fragments and as a lead for the generation of Fc-receptor antagonists.

Amino Acid Sequence↗

Selection of human elastase inhibitors from a conformationally constrained combinatorial peptide library.

A resin-bound cyclic peptide library was constructed based on the sequence of the reactive-site loop of Bowman-Birk inhibitor, a proteinase inhibitor protein. The constrained loop sequence, which incorporates the minimal proteinase-binding motif, was retained throughout the library, but selected residues known to be important for inhibitor specificity were randomised. The approach was used to create a 'one bead, one peptide' library with 8000 variants resulting from randomization at three target locations in the sequence (P4, P1 and P2'). This library allows us to examine the degree to which variations in this proteinase-binding motif can redirect activity, as well as providing information about the binding specificity of a proteinase target. Screening this library for binding to human leucocyte elastase identified sequences with a strong consensus, and on resynthesis all were found to act as inhibitors, with Ki values as low as 65 nM. Human leucocyte elastase is known to have a substrate preference for small alkyl chains at the P1 locus, with valine being preferred. However, alanine and not the expected valine was found in 21 out of 23 identified sequences. The remaining two sequences had threonine at P1, a finding that would be hard to predict based on substrate specificity alone. Further analysis of resynthesized peptides demonstrated that valine substitution results in an analogue that is hydrolysed far more rapidly than ones having library-selected P1 residues. Testing of the human leucocyte elastase-selected sequences as inhibitors of porcine pancreatic elastase demonstrates a significant difference in the specificity of the P4 locus between these two proteinases.

Animals↗