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Epitope discovery using bacteriophage display: the minimum epitope of an anti-IRBP antibody.

The purpose of this study was to determine, using random peptide library (RPL) technologies, the minimal epitope requirements of the mouse monoclonal anti-interphotoreceptor-retinoid-binding protein antibody, H3B5. This previously characterized antibody is used as an example to examine whether RPL's offer a relatively easy and rapid route to obtaining detailed epitope mapping data.A pentadecamer random peptide library (RPL) displayed on the major coat protein (gene 8) of filamentous bacteriophage (F88-4-15) was used as a target for selection by the anti-IRBP monoclonal antibody, H3B5. Three rounds of library selection were performed, and 90 of the resultant RPL clones were examined for affinity to H3B5 by enzyme-linked immunosorbent assay (ELISA). DNA sequencing of ELISA positive clones provided sequence of the region encoding the random peptide. After three rounds of selection of the RPL, 76.7% of clones examined interacted with H3B5, 17.7% did not show significant binding and 6.6% bound to control antibody also. The essential elements of the peptide epitope were determined by sequence comparison of 24 clones to be the four amino-acid sequence (Aspartic or glutamic acid)-Proline-Arginine-(Leucine, Isoleucine or Valine). This motif [(D/E) PR (L/I/V)] is in agreement, but at greater resolution, than previous synthetic peptide studies where the motif AASEDPRL was identified. Other motifs were found which bound to H3B5 but did not share primary structure similarities (peptidomimetics). Selection from a RPL has rapidly defined the minimal requirements for the H3B5 epitope in fine detail. Such a process offers great potential for investigating antibody-antigen interactions and core sequences of an epitope, and enables the identification of motifs in other proteins which may be recognized by the antibody, providing information on possible cross-reactivity.

Amino Acid Sequence↗

3D-Epitope-Explorer (3DEX): localization of conformational epitopes within three-dimensional structures of proteins.

Neutralizing antibodies often recognize conformational, discontinuous epitopes. Linear peptides mimicking such conformational epitopes can be selected from phage display peptide libraries by screening with the respective antibodies. However, it is difficult to localize these "mimotopes" within the three-dimensional (3D) structures of the target proteins. Knowledge of conformational epitopes of neutralizing antibodies would help to design antigens able to elicit protective immune responses. Therefore, we provide here a software that allows to localize linear peptide sequences within 3D structures of proteins. The 3D-Epitope-Explorer (3DEX) software allows to map conformational epitopes in 3D protein structures based on an algorithm that takes into account the physicochemical neighborhood of C(alpha)- or C(beta)-atoms of individual amino acids. A given amino acid of a peptide sequence is localized within the protein and the software searches within predefined distances for the amino acids neighboring that amino acid in the peptide. Surface exposure of the amino acids can also be taken into consideration. The procedure is then repeated for the remaining amino acids of the peptide. The introduction of a joker function allows to map peptide mimotopes, which do not necessarily have 100% sequence homology to the protein. Using this software we were able to localize mimotopes selected from phage displayed peptide libraries with polyclonal antibodies from HIV-positive patient plasma within the 3D structure of gp120, the exterior glycoprotein of HIV-1. We also analyzed two recently published peptide sequences corresponding to known conformational epitopes to further confirm the integrity of 3DEX.

Algorithms↗

Bacterial display using circularly permuted outer membrane protein OmpX yields high affinity peptide ligands.

A bacterial display methodology was developed for N- and C-terminal display and demonstrated to enable rapid screening of very large peptide libraries with high precision and efficiency. To overcome limitations of insertional fusion display libraries, a new scaffold was developed through circular permutation of the Escherichia coli outer membrane protein OmpX that presents both N and C termini on the external cell surface. Circularly permuted OmpX (CPX) display was directly compared to insertional fusion display by screening comparable peptide libraries in each format using magnetic and fluorescence activated cell sorting. CPX display enabled in situ measurement of dissociation rate constants with improved accuracy and, consequently, improved affinity discrimination during screening and ranking of isolated clones. Using streptavidin as a model target, bacterial display yielded the well-characterized HP(Q)/(M) motif obtained previously using several alternative peptide display systems, as well as three additional motifs (L(I)/(V) CQNVCY, CGWMY(F)/(Y)xEC, ERCWYVMHWPCNA). Using CPX display, a very high affinity streptavidin-binding peptide was isolated having a dissociation rate constant k(off) = 0.002sec(-1) even after grafting to the C terminus of an unrelated protein. Comparison of individual clones obtained from insertional fusion and terminal fusion libraries suggests that the N-terminal display yields sequences with greater diversity, affinity, and modularity. CPX bacterial display thus provides a highly effective method for screening peptide libraries to rapidly generate ligands with high affinity and specificity.

Affinity Labels↗

[In-vivo screening and characterization of peptides specific for vasculature of gastric cancer].

AIM: To screen in vivo from a phage-displayed peptide library polypeptide fragments specific binding to vascular endothelial cells of gastric cancer xenografts, so as to provide for anti-angiogenesis therapy of tumor. METHODS: Immunosupressed mice models for human gastric cancer xeno-grafts were established by subrenal capsular assay (SR-CA). The 12-peptide library was panned through 4 rounds. Phages were recovered and titrated from tumor xenografts and control tissue (brain). The distribution of phage were detected in transplanted tumor tissues by immunohistochemical staining. RESULTS: Phage homing to gastric cancer xenografts were enriched through four rounds of panning,being 3.4-fold of that recovered from brain tissue. Peptide sequences were characterized for randomly picked-upclones and the peptide sequence YESIRIGVAPSQ appeared most frequently. Immunohistochemical staining for the homing phage revealed a specific vascular endothelial cell localization in gastric cancer xenografts 5 min after injection of the enriched phages. When the specific phage individually test-ed, the phage recovered from gastric cancer xenografts were as 4. 2 times as those from control tissue ( brain) , as 4.9 times as those from lung, as 5.4 times as those from heart. CONCLUSION: The tumor-specific homing peptides may provide a effective tool for targeting tumor vasculature in anti-angiogenesis therapy of cancer. The in vivo selection technique in this study was feasible and applicable to screening peptides homing to vascular endothelial cells.

Angiogenesis Inhibitors↗

[An efficient approach to the synthesis of a high-quality random peptide repertoire].

During the construction of a random peptide repertoire using degenerate models, unexpected amino acids or stop codons are almost unavoidable. To conquer this shortcoming, a new split-mix-split method of oligonucleotide synthesis was developed. A 13-amino acids random peptide library had been constructed by using this method. The sequencing results of 16 clones indicated that neither stop codon nor codon for cysteine appeared as designed. The occurrence rations of 19 amino acids were also calculated and no obvious amino acid bias had been observed. By using this method, the type and quantity of amino acid at certain position of a peptide could be controlled well, so this split-mix-split method, combined with degenerate could meet the needs of a high diversity random peptide library.

Amino Acid Sequence↗

[Selection of the peptides specifically binding to hepatoma by using phage display in vivo].

OBJECTIVE: To screen the peptides binding to hepatoma specifically. METHODS: Nude mice were inoculated with human tumor cells BEL-7402, then the Ph.D.-12 Phage Display Peptide Library was injected intravenously (tail vein) into mice. After 20 min the mice were sacrificed and the phage rescued from tumor tissues. All the tissues should be made an appraisal using immunohistochemistry and titering. The phage recovered from the tissues were amplified and purified then re-injected for next round screening. After screening for 3 rounds in vivo, the phage-peptides that homed to the tumor tissues or cells were obtained. Then these phage clones were sequenced to analyze the motif. All the sequenced clones were appraised by using cell ELISA and titering the distribution in vivo. RESULTS: Through the appraisal from vivo and vitro and peptides' sequences, several target motifs were preliminarily determined. CONCLUSIONS: Some phage-peptides which could specifically bind tumor cells or tissues can be selected successfully from the random twelve-peptide library by means of phage display in vivo.

Animals↗

[Studies on the mimic short peptide-based vaccine: immunoprotection in mice against Schistosoma japonicum infection].

OBJECTIVE: To evaluate the immunoprotective effect of the mimic short peptide-based vaccine of Schistosoma japonicum (S.j) in mice. METHODS: Phage random peptide library of 12 amino acids was immunoscreened with purified IgG from sera of rats. Three rounds of biopanning were carried out. The positive clones were randomly selected, detected and sequenced. Kunming mice were immunized with positive clones three times (0, 2, 4 weeks). Each mouse was infected with 40 cercariae after 2 weeks of the 3rd immunization. After 42 days of infection, the mice were killed. Adult worms and the liver eggs were counted. RESULTS: The specific phages binding to IgG were enriched after 3 rounds of biopanning. Two short peptides were obtained. Compared with the control groups, the mixture of two mimic peptides induced 34.9% (P < 0.05) worm reduction and 67.6% (P < 0.001) total liver egg reduction in mice. Two different mimic peptides induced 31.0% (P < 0.05), 14.5% (P > 0.05) worm reduction and 61.2% (P < 0.001), 35.7% (P < 0.05) total liver egg reduction respectively. The specific antibody could be induced by the mimic peptides and detected by ELISA in immunized mice, and the antibody titer reached more than 1:6,400. CONCLUSION: The 2 different mimic peptides obtained by immunoscreening phage random peptide library show partial immunoprotection against S. j infection.

Animals↗

Binding domain for p21(WAF1) on the polypeptide chain of the protein kinase CK2 beta-subunit.

Protein kinase CK2 is a ubiquitous serine/threonine kinase which is involved in many proliferation-related processes in the cell. It is composed of two regulatory beta-subunits and two catalytic alpha-subunits. Its regulation still remains mysterious in spite of many years of intense research. One of its regulators is the cdk inhibitory molecule p21(WAF1)-a protein which is expressed in situations of genotoxic stress. p21(WAF1) binds to the beta-subunit of CK2 and inhibits the activity of CK2. Using deletion mutants of CK2 beta as well as a peptide library consisting of 15-amino-acid-long peptides derived from the polypeptide chain of CK2 beta we mapped the binding region for p21(WAF1) on the polypeptide chain of CK2 beta. We localized an amino-terminal and a carboxy-terminal binding domain. Binding of p21(WAF1) to both regions of the CK2 beta-subunit interferes with the phosphotransferase activity of the CK2 holoenzyme.

Amino Acid Sequence↗

Molecular addresses of tumors: selection by in vivo phage display.

In vivo phage display has been used extensively to screen for novel targets of tumor therapy. Phage display peptide libraries can express random peptides or protein fragments and the aim of phage display is to identify peptide molecules that bind stably to a given target. Angiogenesis is essential to tumor development. Both blood and lymphatic vessels of tumors are different from those of normal tissues. Phage display has been used to analyze the structure and molecular diversity of tumor vasculature and to select tumor-specific antigens which have revealed stage- and type-specific markers of tumor blood vessels. Furthermore, peptides identified by in vivo phage display also work as vehicles to transport cargo therapeutic reagents to tumors. These peptides and their corresponding cellular proteins and ligands may provide molecular tools to selectively target the addresses of tumors and their pathological blood vessels and might increase the efficacy of therapy while decreasing side effects.

Amino Acid Sequence↗

The cytotoxic T cell response to peptide analogs of the HLA-A*0201-restricted MUC1 signal sequence epitope, M1.2.

The mucin MUC1 molecule is overexpressed on a variety of adenocarcinomas and is thus, a potential target for immunotherapy. Of the MUC1 peptides that bind to HLA-A*0201(A2), M1.2 (LLLLTVLTV) from the signal sequence appears to be the most immunogenic in humans. Here we have shown that large numbers (10(9)) of tetramer-binding M1.2-specific cytotoxic T lymphocytes (CTL) can be generated ex vivo from circulating precursors, derived from healthy adults. However, there was significant interpersonal variation in the level of co-stimulatory signal required. Tetramer-binding cells also required maturation in culture to become proficient killers of the HLA-A2(+) MUC1(+) MCF7 cell line, known to express a low number of endogenously processed M1.2. The functional avidity of M1.2-specific CTL, however, was low as compared to CTL specific for an HIV-1 epitope. Despite the low avidity, M1.2-specific CTL were polyfunctional, secreting multiple cytokines upon degranulation with antigen recognition. To identify potential agonist peptides that may be superior immunogens, an M1.2-specific CTL culture was used to scan a large nonameric combinatorial peptide library. Of 54 predicted peptides, 4 were "consensus" agonists because they were recognized by CTL from two other donors. Two agonists, p29 (LLPWTVLTV) and p15 (VLLWTVLTV), were equally stimulatory when loaded onto C1R target cells transfected with wild-type HLA-A2. Both agonists induced IL-2, TNF-alpha, IFN-gamma, and degranulation with M1.2-specific CTL. In contrast, production of these cytokines, which are tightly regulated by specific activation through the T cell receptor, was restricted when the CTL were stimulated with peptides loaded onto C1R cells that were transfected with an HLA-A2 molecule bearing a mutation that abrogates binding to the CD8 co-receptor. Thus, activation by both M1.2 and its agonists was dependent upon CD8, showing that compensation by the co-receptor was necessary for the human T cell response to M1.2.

Adult↗

Phage display selection of peptides that inhibit metastasis ability of gastric cancer cells with high liver-metastatic potential.

Organ-specific metastasis is an important character of cancer cells. Cancer cells that can metastasize to a special organ were thought to have different proteins in cell membrane, which might have potential utility as diagnostic markers and therapeutic targets. In the present work, based on high liver-metastatic gastric cancer cells, XGC9811-L, a screening approach with phage displayed peptide library, was successfully used to isolate 8-mer peptide ligands binding to the target cells. The phage20 had the highest binding efficiency to XGC9811-L cells, which also displayed remarkable cell specificity. Peptide20 that was displayed on phage20 could suppress the motility and invasion of XGC9811-L significantly. The adhesive ability of XGC9811-L to collagen IV was also inhibited by peptide20. Furthermore, phage20 could significantly reduce the incidence of liver metastasis of gastric cancer transplanted into nude mice and was also beneficial for the reduction the number of metastatic nodules in the liver. In conclusion, the phage display is an effective method to screen for the new molecules associated with organ-specific metastasis. The selected peptide20 can reverse the liver metastasis behavior of the gastric cancer cells.

Amino Acid Sequence↗

Phage display reveals multiple contact sites between FhuA, an outer membrane receptor of Escherichia coli, and TonB.

The ferric hydroxamate uptake receptor FhuA from Escherichia coli transports siderophores across the outer membrane (OM). TonB-ExbB-ExbD transduces energy from the cytoplasmic membrane to the OM by contacts between TonB and OM receptors that contain the Ton box, a consensus sequence near the N terminus. Although the Ton box is a region of known contact between OM receptors and TonB, our biophysical studies established that TonB binds to FhuA through multiple regions of interaction. Panning of phage-displayed random peptide libraries (Ph.D.-12, Ph.D.-C7C) against TonB identified peptide sequences that specifically interact with TonB. Analyses of these sequences using the Receptor Ligand Contacts (RELIC) suite of programs revealed clusters of multiply aligned peptides that mapped to FhuA. These clusters localized to a continuous periplasm-accessible surface: Ton box/switch helix; cork domain/beta1 strand; and periplasmic turn 8. Guided by such matches, synthetic oligonucleotides corresponding to DNA sequences identical to fhuA were fused to malE; peptides corresponding to the above regions were displayed at the N terminus of E.coli maltose-binding protein (MBP). Purified FhuA peptides fused to MBP bound specifically to TonB by ELISA. Furthermore, they competed with ligand-loaded FhuA for binding to TonB. RELIC also identified clusters of multiply aligned peptides corresponding to the Ton box regions in BtuB, FepA, and FecA; to periplasmic turn 8 in BtuB and FecA; and to periplasmic turns 1 and 2 in FepA. These experimental outcomes identify specific molecular contacts made between TonB and OM receptors that extend beyond the well-characterized Ton box.

Amino Acid Sequence↗

Identification of the amino acid residues in trichosanthin crucial for IgE response.

Trichosanthin (TCS) is the major effective component from Chinese herb Trichosanthes kirilowii. TCS has been approved to be effective in clinical treatment of HIV infection and leukemia, but its allergenicity has limited its clinical usage. To identify amino acid residues in TCS with an important role in IgE induction, TCS-specific IgE mAb (TE1) was used to serve as a probe and TE1 epitope was determined by a random phage-peptide library. Based on phage peptide sequences, TE1 epitope was predicted at amino acid residues 169-174 (QQIGKR) of TCS protein. Based on modeling data, two amino acids (Lys173 and Arg174) on TCS were considered to have a crucial role in binding to TE1. After lysine 173 and arginine 174 were mutated to glycine, the mutant TCS protein specifically lost the binding activity to TE1 mAb and exhibited reduced IgE induction in the immunized mice. The data showed that the IgE epitope of TCS was determined and shown to play a critical role in induction of IgE, and the modification of IgE-epitope may be a useful strategy to reduce the allergenicity of an allergen.

Amino Acid Sequence↗

Inhibition of human spermatozoa-zona pellucida binding by a combinatorially derived peptide from a synthetic target.

Intact zona-free human oocytes were screened using a combinatorial peptide library selection protocol. Pieczenik Peptide Sequence 1 (PPS1) HEHRKRG binds human spermatozoa. A complementary and unique binding sequence HNSSLSPLATPA (PPS2) was developed from the first PPS1 ligand that binds to the human zona pellucida or oolemma. Cytoplasm-free zonae from unfertilized eggs were obtained and used as an assay system to test the effects of exposure to these two ligands. Spermatozoa were inserted into evacuated zonae and their behaviour and binding activity were assessed at regular intervals. The behaviour of spermatozoa exposed to PPS1 and unlabelled spermatozoa injected into unexposed zonae was similar as far as binding was concerned (50 and 54% binding), but PPS1 exposed spermatozoa had higher motility and displacement, marked by their escape from the zona pellucida. Zonae exposed to PPS2 inhibited the interaction between injected spermatozoa and the inside of the zona when compared with controls (8.3 and 53.8% attached respectively, P < 0.001). The sperm-zona pellucida interaction described in this paper is applied as a functional assay for molecular interactions of sperm binding and can be used to assess function for potential surface markers on gametes. It is shown here that a unique binding ligand (PPS2) can be synthesized from another complimentary ligand (PPS1) without the need for a known intermediate substrate. PPS1 and PPS2 may have properties that can be used to target processes involved in conception and assisted reproduction. A movie sequence taken approximately 30 min after injection of spermatozoa into empty human zonae pellucidae shows behaviour of non-manipulated spermatozoa into zonae not exposed or exposed to ligand. This may be purchased for viewing on the Internet at www.rbmonline.com/Article/2159 (free to web subscribers).

Amino Acid Sequence↗

A Lewis(y) epitope mimicking peptide induces anti-Lewis(y) immune responses in rabbits and mice.

Lewis(y) carbohydrate antigens are abundant on the surface of many carcinomas. Mab B3 directed against this carbohydrate antigen has been used to make an immunotoxin that is very cytotoxic to cancer cells expressing the Lewis(y) antigen. Mab B3 was also used to screen a phage-displayed peptide library and identified a peptide mimicking the Lewis(y) epitope. In this report, we demonstrate that the Lewis(y) epitope-mimicking peptide induces anti-Lewis(y)immune responses in both rabbits and mice. In addition, Lewis(y) antigens induce anti-peptide immune responses. These results indicate that carbohydrate-mimicking peptides provide a novel strategy to elicit immune responses for tumor-associated carbohydrates.

Animals↗

The SH3 domains of endophilin and amphiphysin bind to the proline-rich region of synaptojanin 1 at distinct sites that display an unconventional binding specificity.

The proline-rich domain of synaptojanin 1, a synaptic protein with phosphatidylinositol phosphatase activity, binds to amphiphysin and to a family of recently discovered proteins known as the SH3p4/8/13, the SH3-GL, or the endophilin family. These interactions are mediated by SH3 domains and are believed to play a regulatory role in synaptic vesicle recycling. We have precisely mapped the target peptides on human synaptojanin that are recognized by the SH3 domains of endophilins and amphiphysin and proven that they are distinct. By a combination of different approaches, selection of phage displayed peptide libraries, substitution analyses of peptides synthesized on cellulose membranes, and a peptide scan spanning a 252-residue long synaptojanin fragment, we have concluded that amphiphysin binds to two sites, PIRPSR and PTIPPR, whereas endophilin has a distinct preferred binding site, PKRPPPPR. The comparison of the results obtained by phage display and substitution analysis permitted the identification of proline and arginine at positions 4 and 6 in the PIRPSR and PTIPPR target sequence as the major determinants of the recognition specificity mediated by the SH3 domain of amphiphysin 1. More complex is the structural rationalization of the preferred endophilin ligands where SH3 binding cannot be easily interpreted in the framework of the "classical" type I or type II SH3 binding models. Our results suggest that the binding repertoire of SH3 domains may be more complex than originally predicted.

Adaptor Proteins, Signal Transducing↗

Identification by phage display of the linear continuous MRPr1 epitope in the multidrug resistance-associated protein (MRP1).

In order to study the structure of the multidrug resistance-associated protein (MRP1), which is one of the most important members of the ATP-binding cassette (ABC) protein family acting as drug-efflux systems, we have developed an epitope mapping-based strategy. By means of the mAb MRPr1, we have immunoselected clones from two distinct random peptide libraries displayed on phages and have identified several peptide sequences mimicking the internal conformation of this 190 kDa multidrug transporter protein. Phage clones able to block the immunolabeling of the MRPr1 antibody to MRP1-overexpressing multidrug resistance (MDR) H69/AR cells were isolated and, after sequencing the corresponding inserts, their amino acid sequence was compared to that of MRP1. This analysis led to the identification of the consensus sequence L.SLNWED, corresponding to the MRP1 segment LWSLNKED (residues 241-248). This MRP1 sequence is partially overlapping with the MRPr1 epitope GSDLWSLNKE (residues 238-247) previously mapped using peptide scanning techniques. These results demonstrate the high reliability of phage display technology to study not only the topography of complex integral membrane proteins such as MRP1, but also to help identify critical residues participating in the formation of the epitope structure.

Amino Acid Sequence↗