Microarrays based on affinity-tagged single-chain Fv antibodies: Sensitive detection of analyte in complex proteomes
- 31 March 2005
- journal article
- research article
- Published by Wiley in Proteomics
- Vol. 5 (5), 1281-1291
- https://doi.org/10.1002/pmic.200401009
Abstract
Protein‐based microarrays are among the novel class of rapidly emerging proteomic technologies that will allow us to efficiently perform global proteome analysis. However, the process of designing adequate protein microarrays is a major inherent problem. In this study, we have evaluated a protein microarray platform based on nonpurified affinity‐tagged single‐chain (sc) Fv antibody fragments to generate proof‐of‐principle and to demonstrate the specificity and sensitivity of the array design. To this end, we used our human recombinant scFv antibody library genetically constructed around one framework, the n‐CoDeR library containing 2 × 1010 clones, as a source for our probes. The probes were immobilized via engineered C‐terminal affinity tags, his‐ or myc‐tags, to either Ni2+‐coated slides or anti‐tag antibody coated substrates. The results showed that highly functional microarrays were generated and that nonpurified scFvs readily could be applied as probes. Specific and sensitive microarrays were obtained, providing a limit of detection in the pM to fM range, using fluorescence as the mode of detection. Further, the results showed that spotting the analyte on top of the arrayed probes, instead of incubating the array with large sample volumes (333 pL vs. 40 μL), could reduce the amount of analyte required 4000 times, from 1200 attomole to 300 zeptomole. Finally, we showed that a highly complex proteome, such as human sera containing several thousand different proteins, could be directly fluorescently labeled and successfully analyzed without compromising the specificity and sensitivity of the antibody microarrays. This is a prerequisite for the design of high‐density antibody arrays applied in high‐throughput proteomics.Keywords
This publication has 36 references indexed in Scilit:
- Macro-/Nanoporous Silicon as a Support for High-Performance Protein MicroarraysAnalytical Chemistry, 2003
- Patterns of DNA‐Labeled and scFv‐Antibody‐Carrying Lipid Vesicles Directed by Material‐Specific Immobilization of DNA and Supported Lipid Bilayer Formation on an Au/SiO2 TemplateChemBioChem, 2003
- Protein chip technologyCurrent Opinion in Chemical Biology, 2002
- Protein microarrays and proteomicsNature Genetics, 2002
- Antibody Evolution from the Centre to the Periphery: Applied to a Human Antibody Fragment Recognising the Tumour-associated Antigen Mucin-1Journal of Molecular Biology, 2002
- A perspective on protein microarraysNature Biotechnology, 2002
- Searching for Recipes for Protein ChipsScience, 2001
- Global Analysis of Protein Activities Using Proteome ChipsScience, 2001
- Protein functions and biological contextsProteomics, 2001
- Antibodies in diagnostics – from immunoassays to protein chipsImmunology Today, 2000