Abstract
Sidedness and accessibility of protein epitopes in intact brush border membrane vesicles were analyzed by detecting single molecule interaction forces using molecular recognition force microscopy in aqueous physiological solutions. Frequent antibody-antigen recognition events were observed with a force microscopy tip carrying an antibody directed against the periplasmically located gamma-glutamyltrans- peptidase, suggesting a right side out orientation of the vesicles. Phlorizin attached to the tips bound to NA+/D-glucose cotransporter molecules present in the vesicles. The recognition was sodium dependent and inhibited by free phlorizin and D-glucose, and revealed an apparent K(D) of 0.2 microM. Binding events were also observed with an antibody directed against the epitope aa603-aa630 close to the C terminus of the transporter. In the presence of phlorizin the probability of antibody binding was reduced but the most probable unbinding force f(u) = 100 pN remained unchanged. In the presence of D-glucose and sodium, however, both the binding probability and the most probable binding force (f(u) = 50 pN) were lower than in its absence. These studies demonstrate that molecular recognition force microscopy is a versatile tool to probe orientation and conformational changes of epitopes of membrane components during binding and trans-membrane transport.
| Original language | English |
|---|---|
| Pages (from-to) | 2767-2774 |
| Number of pages | 8 |
| Journal | Biophysical Journal |
| Volume | 82 |
| Issue number | 5 |
| DOIs | |
| Publication status | Published - May 2002 |
Fields of science
- 103 Physics, Astronomy
- 104014 Surface chemistry
- 104015 Organic chemistry
- 106002 Biochemistry
- 106006 Biophysics
- 106013 Genetics
- 106023 Molecular biology
- 206001 Biomedical engineering
- 206002 Electro-medical engineering
- 206003 Medical physics
- 210006 Nanotechnology
- 301902 Immunology
- 304003 Genetic engineering