| Literature DB >> 26300850 |
Kevin A Henry1, Mehdi Arbabi-Ghahroudi2, Jamie K Scott3.
Abstract
For the past 25 years, phage display technology has been an invaluable tool for studies of protein-protein interactions. However, the inherent biological, biochemical, and biophysical properties of filamentous bacteriophage, as well as the ease of its genetic manipulation, also make it an attractive platform outside the traditional phage display canon. This review will focus on the unique properties of the filamentous bacteriophage and highlight its diverse applications in current research. Particular emphases are placed on: (i) the advantages of the phage as a vaccine carrier, including its high immunogenicity, relative antigenic simplicity and ability to activate a range of immune responses, (ii) the phage's potential as a prophylactic and therapeutic agent for infectious and chronic diseases, (iii) the regularity of the virion major coat protein lattice, which enables a variety of bioconjugation and surface chemistry applications, particularly in nanomaterials, and (iv) the phage's large population sizes and fast generation times, which make it an excellent model system for directed protein evolution. Despite their ubiquity in the biosphere, metagenomics work is just beginning to explore the ecology of filamentous and non-filamentous phage, and their role in the evolution of bacterial populations. Thus, the filamentous phage represents a robust, inexpensive, and versatile microorganism whose bioengineering applications continue to expand in new directions, although its limitations in some spheres impose obstacles to its widespread adoption and use.Entities:
Keywords: antimicrobial; bioconjugation; filamentous phage; therapeutic; vaccine
Year: 2015 PMID: 26300850 PMCID: PMC4523942 DOI: 10.3389/fmicb.2015.00755
Source DB: PubMed Journal: Front Microbiol ISSN: 1664-302X Impact factor: 5.640
Filamentous phage display modes and their associated characteristics.
| Phage coat protein | Display mode | Helper phage required? | Polypeptide copy number | Polypeptide size limit | Reference(s) |
|---|---|---|---|---|---|
| pIII | Fully recombinant (type 3 and 3+3∗ systems)1 | Type 3+3∗ system | ~5 | >25 kDa | |
| Hybrid (type 33 and 3+3 systems) | Type 3+3 system | <12 | |||
| pVI | Hybrid (type 6+6 system) | Yes | <12 | >25 kDa | |
| pVII | Fully recombinant (type 7 system) | No | ~5 | >25 kDa | |
| Hybrid (type 7+7 system) | Yes | <12 | |||
| pVIII | Fully recombinant (landscape phage; type 8 system) | No | 27003 | ~5–8 residues | |
| Hybrid (type 88 and 8+8 systems) | Type 8+8 system | ~1–3002 | >50 kDa | ||
| pIX | Fully recombinant (type 9+9∗ system) | Yes | ~5 | >25 kDa | |
| Hybrid (type 9+9 system) | No | <12 |
Studies using filamentous phage as an immunogenic carrier for peptide B-cell epitopes.
| Antigen | Species | Epitope type(s) | Display format(s) | Ab response against peptide | Ab response against native protein | Reference(s) |
|---|---|---|---|---|---|---|
| Alzheimer’s disease β-amyloid fibrils | Mouse (BALB/c, APP transgenic), Guinea pig | Linear | pVIII hybrid, | + | + | |
| Mouse (BALB/c) | Linear | Chemical conjugate | + | + | ||
| Mouse (BALB/c) | Discontinuous | pVIII hybrid | + | - | ||
| Mouse (C57/BL6, BALB/c) | Linear | pVIII hybrid | + | + | ||
| Mouse (C57/BL6, BALB/c, CBA/j) | Linear | pVIII hybrid | + | + | ||
| Mouse (C57/BL6, BALB/c) | Linear | pVIII hybrid | + | + | ||
| ERBB2/HER2 | Mouse (BALB/c) | Linear | pVIII hybrid, | + | + | |
| Mouse (BALB/c) | Discontinuous | pVIII hybrid | + | + | ||
| Follicle-stimulating hormone | Sheep | Linear | pVIII hybrid | + | + | |
| Foot-and-mouth disease VP1 | Guinea pig | Linear | pVIII hybrid | ND | + | |
| Gonadotropin-releasing hormone | Mouse (CD-1) | Linear | Chemical conjugate | ND | ND | |
| HBV surface antigen | Mouse (C57/BL6, BALB/c, B10.M) | Linear | pVIII hybrid, | + | + | |
| HCV core antigen and NS4B protein | Mouse (C57/BL6, BALB/c, MF1) | Linear | pVIII hybrid | + | ND | |
| HCV E2 protein | Mouse (BALB/c) | Linear | pVIII hybrid | + | ND | |
| Mouse (BALB/c) | Linear | pIII fully recombinant | + | + | ||
| HIV-1 gp120 V3 loop | Mouse (BALB/c) | Linear | pVIII hybrid | + | + | |
| HIV-1 gp120 CD4-binding site | Mouse (BALB/c) | Discontinuous | Chemical conjugate | + | - | |
| HIV-1 gp120 and gp41 | Mouse (C57/BL6, BALB/c), | Linear, | pVIII hybrid, | + | ND | |
| HIV-1 gag p17 | Rabbit | Linear | pVIII fully recombinant | + | + | |
| HIV-1 reverse transcriptase | Mouse (C57BL/6, HLA-A2 transgenic) | Linear | pVIII hybrid | + | ND | |
| HPV E7 protein | Mouse (BALB/c) | Linear | pVIII hybrid | + | + | |
| HSV-2 glycoprotein G | Mouse (BALB/c) | Linear | pVIII hybrid | + | + | |
| Immunoglobulin E | Rabbit | Discontinuous | pVIII hybrid | ND | + | |
| Mouse (BALB/cByJ) | Linear, | pIII fully recombinant | + | + | ||
| Mouse (BALB/c) | Linear | pVIII hybrid | + | + | ||
| Mouse (BALB/c, C57/BL10, Swiss, Str/ort), rabbit | Linear | pVIII hybrid, | + | ND | ||
| Mouse (C57/BL6, BALB/c, Biozzi) | Linear, | pIII hybrid | ND | + | ||
| Rhabdovirus RABVG | Mouse (BALB/c) | Linear | pIII fully recombinant | + | + | |
| RSV glycoprotein G | Mouse (BALB/c) | Linear | pIII fully recombinant | + | - | |
| Mouse (Kunming) | Discontinuous | pIII fully recombinant | + | ND | ||
| Mouse (BALB/c) | Discontinuous | pVIII hybrid, | + | - | ||
| Sperm | Mouse (CD-1), Pig | Discontinuous | pVIII fully recombinant | + | + | |
| Toxic shock syndrome toxin | Mouse (BALB/c) | Linear | pIII fully recombinant | + | ND |
Studies using filamentous phage as an immunogenic carrier for peptide T-cell epitopes.
| Antigen | Species | Epitope type(s) | Display format(s) | T-cell response against peptide | Reference(s) |
|---|---|---|---|---|---|
| Pig | MHC class I | pVIII hybrid, | + | ||
| Ovalbumin | Mouse (C57BL/6) | MHC class I | pVIII hybrid | + | |
| HIV-1 reverse transcriptase | Mouse (C57BL/6, HLA-A2 transgenic) | MHC class I, | pVIII hybrid | + | |
| PIA tumor antigen | Mouse (DBA/2) | MHC class I | pVIII hybrid | + | |
| Ovalbumin (B16.OVA model) | Mouse (C57BL/6, tlr4-/-, OT-I) | MHC class I | pVIII hybrid | + | |
| MAGE-A1, MAGE-A10, MAGE-A3 | Mouse (C57BL/6, HLA-A2 transgenic) | MHC class I | pVIII hybrid | + | |
| Mouse (C57BL6/, BALB/c) | MHC class I, | pVIII hybrid | + | ||
| HBV | Mouse (BALB/c) | MHC class I | pVIII hybrid | + |