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HLA class I binding motifs derived from random peptide libraries differ at the COOH terminus from those of eluted peptides.

Recombinant HLA-A2, HLA-B8, or HLA-B53 heavy chain produced in Escherichia coli was combined with recombinant beta2-microglobulin (beta2m) and a pool of randomly synthesised nonamer peptides. This mixture was allowed to refold to form stable major histocompatability complex (MHC) class I complexes, which were then purified by gel filtration chromatography. The peptides bound to the MHC class I molecules were subsequently eluted and sequenced as a pool. Peptide binding motifs for these three MHC class I molecules were derived and compared with previously described motifs derived from analysis of naturally processed peptides eluted from the surface of cells. This comparison indicated that the peptides bound by the recombinant MHC class I molecules showed a similar motif to naturally processed and presented peptides, with the exception of the peptide COOH terminus. Whereas the motifs derived from naturally processed peptides eluted from HLA-A2 and HLA-B8 indicated a strong preference for hydrophobic amino acids at the COOH terminus, this preference was not observed in our studies. We propose that this difference reflects the effects of processing or transport on the peptide repertoire available for binding to MHC class I molecules in vivo.

Amino Acid Sequence↗

Comparison of bacterial and phage display peptide libraries in search of target-binding motif.

Genetic engineering allows modification of bacterial and bacteriophage genes, which code for surface proteins, enabling display of random peptides on the surface of these microbial vectors. Biologic peptide libraries thus formed are used for high-throughput screening of clones bearing peptides with high affinity for target proteins. There are reports of many successful affinity selections performed with phage display libraries and substantially fewer cases describing the use of bacterial display systems. In theory, bacterial display has some advantages over phage display, but the two systems have never been experimentally compared. We tested both techniques in selecting streptavidin-binding peptides from two commercially available libraries. Under similar conditions, selection of phage-displayed peptides to model protein streptavidin proved convincingly better.

Amino Acid Sequence↗

Use of a conformationally restricted secondary structural element to display peptide libraries: a two-stranded alpha-helical coiled-coil stabilized by lactam bridges.

A model for an alpha-helical peptide library based on a lactam bridged stabilized two-stranded alpha-helical coiled-coil is described. Sites for library display were incorporated in the middle of the peptide sequence of the most solvent accessible sites of a coiled-coil. A comparison was made between this coiled coil and a native coiled-coil based on the same sequence but lacking the lactam bridges. A lactam bridged peptide where the hydrophobic repeat consisted of all alanine residues, such that the tendency to dimerize would be diminished, was also prepared. This enabled us to determine the role tertiary interactions play in maintaining library positions in a helical conformation. The consensus sequence derived from a Zn finger library screened against an IgA reactive against the lipopolysaccharide of Shigella flexneri was transplanted into the peptides. CD spectroscopy revealed that although both coiled-coils are highly helical at 100 microM, the lactam bridge enhanced dimerization and allow the peptide to maintain its coiled-coil conformation at lower peptide concentrations. The helical content of the alanine based peptide was 69% and was independent of concentration over a range of 1.4 to 1410 microM. Urea denaturation studies indicated that the coiled-coils were considerably more stable than the alanine based peptide and that the lactam bridge coiled-coil was more stable than the native coiled coil by 1.6 kcal/mol. The lactam bridged coiled-coil was found to inhibit binding of the Zn finger peptide to the IgA in a concentration dependent manner with an IC50 of 5.0 microM whereas the peptide lacking the lactam bridges was much less effective in inhibiting binding. The alanine peptide was less active than the lactam bridged coiled-coil but more effective than the native coiled-coil with an IC50 of 16 microM. The versatility of the lactam stabilized coiled-coil template was demonstrated by incorporating five Gly residues into the library display sites. While the native coiled-coil adopted a random conformation the lactam bridged coiled-coil was 59% helical. Incorporation of a Cys-Gly-Gly linker to the N terminus and formation of a disulfide bond stabilized the peptide to the extent that it adopted a highly helical coiled-coil (94%) with a [urea]1/2 value of 5.9 M. Since the five glycine residues represent one of the most destabilizing combinations of amino acids that would be encountered at the five library display sites (with the exception of Pro), this stabilized coiled-coil should maintain its folded conformation regardless of the amino acids occupying the library positions.

Amino Acid Sequence↗

Bicyclic homodetic peptide libraries: comparison of synthetic strategies for their solid-phase synthesis.

Preliminary studies and synthesis development for the preparation of a bicyclic homodetic peptide library have been carried out using orthogonal protection schemes. The best results have been obtained using two Fmoc/tBu-based strategies, in which the first cycle is carried out in the solid phase through side chain functional groups previously protected with Aloc/Al groups. The second cycle is performed either in the solid phase, which requires side chain anchoring of a trifunctional amino acid and Dmb protection for the C-terminus carboxyl group, or in solution, which requires the use of highly labile resins, such as the 2-chlorotrityl (Barlos) resin. Only when the cycles are formed in a ziplike manner, that is, first the small cycle and then the larger ring, is the desired final product obtained.

Bridged Bicyclo Compounds↗

Screening phage-displayed combinatorial peptide libraries.

Among the many techniques available to investigators interested in mapping protein-protein interactions is phage display. With a modest amount of effort, time, and cost, one can select peptide ligands to a wide array of targets from phage-display combinatorial peptide libraries. In this article, protocols and examples are provided to guide scientists who wish to identify peptide ligands to their favorite proteins.

Combinatorial Chemistry Techniques↗

Determination of the sequence specificity of XIAP BIR domains by screening a combinatorial peptide library.

Inhibitor of apoptosis (IAP) proteins regulate programmed cell death by inhibiting members of the caspase family of proteases. The X-chromosome-linked IAP (XIAP) contains three baculovirus IAP repeat (BIR) domains, which bind directly to the N-termini of target proteins including those of caspases-3, -7, and -9. In the present study, we defined the consensus sequences of the motifs that interact with the three BIR domains in an unbiased manner. A combinatorial peptide library containing four random residues at the N-terminus was constructed and screened using BIR domains as probes. We found that the BIR3 domain binds a highly specific motif containing an alanine or valine at the N-terminus (P1 position), an arginine or proline at the P3 position, and a hydrophobic residue (Phe, Ile, and Tyr) at the P4 position. The BIR2-binding motif is less stringent. Although it still requires an N-terminal alanine, it tolerates a wide variety of amino acids at P2-P4 positions. The BIR1 failed to bind to any peptides in the library. SPR analysis of individually synthesized peptides confirmed the library screening results. Database searches with the BIR2- and BIR3-binding consensus sequences revealed a large number of potential target proteins. The combinatorial library method should be readily applicable to other BIR domains or other types of protein modular domains.

Amino Acid Sequence↗

Identification of receptor ligands by screening phage-display peptide libraries ex vivo on microdissected kidney tubules.

A novel method to identify receptor ligands for defined renal tubular segments has been developed. Ex vivo screening of phage-display peptide libraries on isolated intact rat proximal convoluted tubules (PCT) and cortical collecting ducts (CCD) allowed the direct access of phage to the basolateral surface of tubular epithelial cells. Two distinct peptide motifs were selected for CCD and PCT, indicating differential expression of some membrane receptors on the basolateral surface of defined kidney tubule segments. Using the linear peptide motif ELRGD(R/M)AX(W/L), recovered from freshly isolated rat CCD, mediated 16-fold selectivity of phage binding to CCD compared with PCT. Binding to CCD was 39-fold higher than that of a random control phage. Binding and subsequent internalization of phage, most likely by an integrin-mediated endocytosis pathway, was abolished by the addition of the corresponding synthetic peptide. Furthermore, the results demonstrate that presentation and flanking amino acids determine the specific binding properties of RGD ligands to their putative integrin receptors. The results emphasize the need of a native cell system for the identification of renal epithelial cell surface ligands. Such ligands are of potential relevance for the analysis of interactions between extracellular matrix and kidney tubules or for the development of improved vectors for kidney-specific drug delivery or gene transfer.

Animals↗

Structural requirements for the biosynthesis of backbone cyclic peptide libraries.

BACKGROUND: Combinatorial methods for the production of molecular libraries are an important source of ligand diversity for chemical biology. Synthetic methods focus on the production of small molecules that must traverse the cell membrane to elicit a response. Genetic methods enable intracellular ligand production, but products must typically be large molecules in order to withstand cellular catabolism. Here we describe an intein-based approach to biosynthesis of backbone cyclic peptide libraries that combines the strengths of synthetic and genetic methods. RESULTS: Through site-directed mutagenesis we show that the DnaE intein from Synechocystis sp. PCC6803 is very promiscuous with respect to peptide substrate composition, and can generate cyclic products ranging from four to nine amino acids. Libraries with five variable amino acids and either one or four fixed residues were prepared, yielding between 10(7) and 10(8) transformants. The majority of randomly selected clones from each library gave cyclic products. CONCLUSIONS: We have developed a versatile method for producing intracellular libraries of small, stable cyclic peptides. Genetic encoding enables facile manipulation of vast numbers of compounds, while low molecular weight ensures ready pharmacophore identification. The demonstrated flexibility of the method towards both peptide length and composition makes it a valuable addition to existing methods for generating ligand diversity.

Amino Acid Sequence↗

Sequences of antigenic epitopes of streptokinase identified via random peptide libraries displayed on phage.

Though streptokinase (SK) is widely used to treat humans with thrombotic disease, it is antigenic and anti-SK antibody causes allergic reactions and neutralizes SK's therapeutic effects. To pinpoint the fine structure of two immunodominant, continuous epitopes in SK, we used unconstrained 15 and 6-mer random peptide libraries displayed on phage (theoretical complexity of 3.2 x 10(19) and 0.64 x 10(8) unique sequences). The first epitope, recognized by both human Ab and murine monoclonal (m)Abs, was previously localized to the amino terminus of SK. Repeated panning and selection experiments against a 15-mer peptide phage library, using a representative mAb (A2.5) to this epitope, identified a dominant structural motif (GP[R/L]WL) corresponding to amino acids 3 to 7 of native SK, which was consistent with previous epitope mapping. These findings were further confirmed by: (1) the fact that a synthetic peptide spanning the epitope of A2.5 (AGPEWLL) specifically inhibited the binding of A2.5 to SK and (2) the finding that mAb 9D10, which competes with mAb A2.5 for binding to SK, independently selected, from a different random hexamer library, an epitope sequence spanning residues 4 to 9 that overlaps the A2.5 epitope. Similar studies of the second epitope in SK, which is immunodominant for murine but not human antibodies, identified a consensus sequence KS(K/L)P(F/Y) corresponding to amino acids 59 to 63 of SK; this was confirmed by epitope peptide binding experiments. This epitope is cleaved and destroyed when SK reacts with human but not murine plasminogen. Thus, pinpointing the sequences of antigenic epitopes of SK: (1) provides a potential explanation for species differences in SK's antigenicity, (2) demonstrates the overlapping fine structure of epitopes recognized by competitive mAbs, (3) confirms previous epitope mapping studies and (4) has the potential to identify antigenic sequences that lead to allergic reactions in patients treated with SK.

Amino Acid Sequence↗

Combinatorial peptide libraries reveal the ligand-binding mechanism of the oligopeptide receptor OppA of Lactococcus lactis.

The oligopeptide transport system (Opp) of Lactococcus lactis has the unique capacity to mediate the transport of peptides from 4 up to at least 18 residues. The substrate specificity of this binding protein-dependent ATP-binding cassette transporter is determined mainly by the receptor protein OppA. To study the specificity and ligand-binding mechanism of OppA, the following strategy was used: (i) OppA was purified and anchored via the lipid moiety to the surface of liposomes; (ii) the proteoliposomes were used in a rapid filtration-based binding assay with radiolabeled nonameric bradykinin as a reporter peptide; and (iii) combinatorial peptide libraries were used to determine the specificity and selectivity of OppA. The studies show that (i) OppA is able to bind peptides up to at least 35 residues, but there is a clear optimum in affinity for nonameric peptides; (ii) the specificity for nonameric peptides is not equally distributed over the whole peptide, because positions 4, 5, and 6 in the binding site are more selective; and (iii) the differences in affinity for given side chains is relatively small, but overall hydrophobic residues are favored-whereas glycine, proline, and negatively charged residues lower the binding affinity. The data indicate that not only the first six residues (enclosed by the protein) but also the C-terminal three residues interact in a nonopportunistic manner with (the surface of) OppA. This binding mechanism is different from the one generally accepted for receptors of ATP-binding cassette-transporter systems.

Amino Acids↗

Selection of poly-alpha 2,8-sialic acid mimotopes from a random phage peptide library and analysis of their bioactivity.

Poly-alpha 2-8 sialic acid (PSA), attached to the neural cell adhesion molecule, is a permissive determinant for numerous morphogenetic and neural plasticity processes, making it a potential therapeutic target. Here, using a monoclonal antibody specific for PSA, we screened a phage-display library and identified two cyclic nine-amino acid peptides (p1, p2) that are PSA epitope analogues. We evaluated their bioactivity in vitro and in vivo. In culture, micromolar concentrations of the peptides promoted axon growth, defasciculation, and migration of neural progenitors. When injected into developing chicken retina, the peptides modified the trajectory of retinal ganglion cell axons. Moreover, they enhanced migration of grafted neuroblasts in mouse brain. These effects were selective and dependent upon the presence of PSA on transplanted cells. Our results demonstrate the feasibility and therapeutic potential of enhancing PSA biological activity.

Animals↗

Selection of novel structural zinc sites from a random peptide library.

Zinc ion (Zn(2+)) can be coordinated with four or three amino acid residues to stabilize a protein's structure or to form a catalytic active center. We used phage display selection of a dodecamer random peptide library with Zn(2+) to identify structural zinc sites. The binding specificity for Zn(2+) of selected sequences was confirmed using enzyme-linked immunosorbent and competitive inhibition assays. Circular dichroism spectra indicated that the interaction with Zn(2+) induced a change in conformation, which means the peptide acts as a structural zinc site. Furthermore, a search of protein databases revealed that two selected sequences corresponded to parts of natural zinc sites of copper/zinc superoxide dismutase and zinc-containing ferredoxin. We demonstrated that Zn(2+)-binding sequences selected from the random combinatorial library would be candidates for artificial structural zinc sites.

Amino Acid Sequence↗

Determination of the binding specificity of the SH2 domains of protein tyrosine phosphatase SHP-1 through the screening of a combinatorial phosphotyrosyl peptide library.

A method for the rapid identification of high-affinity ligands to Src homology-2 (SH2) domains is reported. A phosphotyrosyl (pY) peptide library containing completely randomized residues at positions -2 to +3 relative to the pY was synthesized on TentaGel resin, with a unique peptide sequence on each resin bead (total 2.5 x 10(6) different sequences). The library was screened against the biotinylated N- and C-terminal SH2 domains of protein tyrosine phosphatase SHP-1, and the beads that carry high-affinity ligands of the SH2 domains were identified using an enzyme-linked assay involving a streptavidin-alkaline phosphatase conjugate. Peptide ladder sequencing of the selected beads using matrix-assisted laser desorption ionization mass spectrometry revealed consensus sequences for both SH2 domains. The N-terminal SH2 domain strongly selects for peptides with a leucine at the -2 position; at the C-terminal side of the pY residue, it can recognize two distinct classes of peptides with consensus sequences of LXpY(M/F)X(F/M) and LXpYAXL (X = any amino acid), respectively. The C-terminal SH2 domain exhibits almost exclusive selectivity for peptides of the consensus sequence, (V/I/L)XpYAX(L/V). Several representative sequences selected from the library were individually synthesized and tested for binding to the SH2 domains by surface plasmon resonance and for their ability to stimulate the catalytic activity of SHP-1. Both experiments have demonstrated that the selected peptides are capable of binding to the SH2 domains with dissociation constants (K(D)) in the low micromolar range.

Amino Acid Sequence↗

An immunogenic epitope of Chlamydia pneumoniae from a random phage display peptide library is reactive with both monoclonal antibody and patients sera.

Random 15-mer peptides displayed on filamentous phages were screened in binding studies using a Chlamydia pneumoniae-specific monoclonal antibody (RR-402) and affinity-purified, polyclonal sera from patients seropositive for C. pneumoniae infections by the microimmunofluorescence (MIF) test. One 15-mer epitope, epitope Cpnl5A (LASLCNPKPSDAPVT) was identified in both the monoclonal and polyclonal screenings, and showed higher ELISA reactivity with C. pneumoniae MIF-positive sera compared to patients with other chlamydial infections, non-chlamydial respiratory infections and normal healthy sera (MIF-negative). Interestingly, epitope Cpnl5A also showed significant (52%) amino acid sequence homology to the 56 kDa type-specific antigen of Rickettsia tsutsugamushi, a protein implicated in the virulence of this organism.

Amino Acid Sequence↗

Probing for cerebrospinal fluid antibody specificities by a panel of random peptide libraries.

In a state of health the central nervous system is nearly devoid of macrophages, T and B cells. However, such cells are required to initiate the inflammation associated with multiple sclerosis (MS). An important issue in understanding the pathogenesis of such conditions is to fully define the T and B cell specificities. Using random peptide libraries, we have analysed the cerebrospinal fluid antibody specificities within one oligoclonal "band" from a patient with MS. The selected peptides from a 6-mer library revealed two peptide motifs S (S/T/Q) (R/S) (N/G) FP and PRn (G/P) FF. Interestingly, the first motif was also selected from a 15-mer library, while the second motif was selected from the 9-mer library. In addition, distinct but structurally related peptides to the mentioned motifs were also selected. Surprisingly, a SwissProt search with these motifs revealed a significant linear homology with collagen proteins, the 68 kDa neurofilament protein, versican and other proteins from viruses such as herpes simplex virus, human cytomegalovirus and human papillomavirus. Thus, the observation that antibodies present within one oligoclonal immunoglobulin band would recognize peptides, some that might be related by only the structure, raises the question of the involvement of multiple pathogens in MS.

Adolescent↗

Epitope discovery using peptide libraries displayed on phage.

Peptides displayed on phage, which mimic continuous and discontinuous epitopes, can be selected using purified antibodies or preparations of polyclonal serum. This review describes recent advances in this field, discusses the application of phage-display technology to the diagnosis of human diseases, and presents new ideas for the preparation of vaccines directed against specific epitopes on a pathogen.

Amino Acid Sequence↗

Detection of human antibodies using "convergent" combinatorial peptide libraries or "mixotopes" designed from a nonvariable antigen: application to the EBV viral capsid antigen p18.

We have previously described the use of synthetic combinatorial "convergent" libraries, or "mixotopes" as immunogens or as antigens to represent naturally hypervariable sequences. The success of this approach suggests that such a mixture of closely related peptides could, at least in part, conveniently represent a nonvariable epitope during its multiple interactions with an antibody population. To address this possibility, we have designed from a non-variable immunodominant peptide of the EBV-viral capsid antigen of 18 kD (VCAp18) a series of three mixotopes containing from 65,000 to 16 million combinatorial sequences. The reactivity of VCAp18 and its three derived mixotopes was examined in ELISA towards a collection of 74 human sera from documented EBV-negative or EBV-positive donors, and analyzed in terms of sensitivity and specificity. Following the observation that the two least degenerated mixotopes could improve the sensitivity of detection of some sera of low reactivity for VCAp18, we decided to combine each mixotope with the VCAp18 peptide. In the case of the least degenerated mixotope in combination with VCAp18, sensitivity and specificity for immunoenzymatic EBV-serodiagnosis, were enhanced to 100%. Our results suggest that synthetic "convergent" combinatorial peptide libraries or "mixotopes," designed from nonvariable antigens, could be useful adjuncts to an antigenic single-sequence peptide in immunoenzymatic serodiagnosis.

Amino Acid Sequence↗

[Screening the mimic antigen epitopes of triosephosphate isomerase of Schistosoma japonicum Chinese strain (Sjc-Tpi) with random phage peptide library].

OBJECTIVE: To screen the mimic antigen epitopes of the triose phosphate isomerase of Schistosoma japonicum Chinese strain (SjC-TPI) and investigate their immunogenicity. METHODS: The random phage peptide library (PH.D.-12) was screened with the purified antibody(IgG) against SjC-TPI to get the positive phage which contained the mimic antigen epitopes of SjC-TPI, and the immuno-characterization of the mimic antigen epitopes were investigated. RESULTS: Two mimic antigen epitopes (M1, M2) of SjC-TPI were obtained. The immuno-sera of mice (Kunming strain) against the positive phages could recognize both the SjC-TPI and the protein of the positive phages. The DNA sequencing data showed no homology between the sequences of the deduced amino acid of the two mimic antigen peptides and the amino acid of SjC-TPI. CONCLUSION: The two mimic antigen epitopes of SjC-TPI obtained are imitative epitopes of the configuration antigen of SjC-TPI.

Animals↗