Topological change and impedance spectrum of rat olfactory receptor I7: A comparative analysis with bovine rhodopsin and bacterior
arXiv:0801.3940 · doi:10.1063/1.3100210
Abstract
We present a theoretical investigation on possible selection of olfactory receptors (ORs) as sensing components of nanobiosensors. Accordingly, we generate the impedance spectra of the rat OR I7 in the native and activated state and analyze their differences. In this way, we connect the protein morphological transformation, caused by the sensing action, with its change of electrical impedance. The results are compared with those obtained by studying the best known protein of the GPCR family: bovine rhodopsin. Our investigations indicate that a change in morphology goes with a change in impedance spectrum mostly associated with a decrease of the static impedance up to about 60 % of the initial value, in qualitative agreement with existing experiments on rat OR I7. The predictiveness of the model is tested successfully for the case of recent experiments on bacteriorhodopsin. The present results point to a promising development of a new class of nanobiosensors based on the electrical properties of GPCR and other sensing proteins.
6 pages, 8 figures
References in corpus (3)
Cited by in corpus (7)
- Modeling the microscopic electrical properties of thrombin binding aptamer (TBA) for label-free biosensors
- Opsin vs opsin: new materials for biotechnological applications
- Photoreceptors for a light biotransducer: a comparative study of the electrical responses of two (type-1)-opsins
- The role of topology in electrical properties of bacteriorhodopsin and rat olfactory receptor I7
- Current-voltage characteristics of seven-helix proteins from a cubic array of amino acids
- Hierarchy and assortativity as new tools for affinity investigation: the case of the TBA aptamer-ligand complex
- Olfactory receptors for a smell sensor: A comparative study of the electrical responses of rat I7 and human 17-40