Nanowire biosensors with olfactory proteins: towards a genuine electronic nose with single molecule sensitivity and high selectivity

ORAL

Abstract

We describe the concept and roadmap of an engineered electronic nose with specificity towards analytes that differ by as little as one carbon atom, and sensitivity of being able to electrically register a single molecule of analyte. The analyte could be anything that natural noses can detect, e.g. trinitrotoluene (TNT), cocaine, aromatics, volatile organic compounds etc. The strategy envisioned is to genetically engineer a fused olfactory odorant receptor (odorant receptor (OR), a membrane-bound G-protein coupled receptor (GPCR) with high selectivity) to an ion channel protein, which opens in response to binding of the ligand to the OR. The lipid bilayer supporting the fused sensing protein would be intimately attached to a nanowire or nanotube network (either via a covalent tether or a non-covalent physisorption process), which would electrically detect the opening of the ion channel, and hence the binding of a single ligand to a single OR protein domain. Three man-made technological advances: (1) fused GPCR to ion channel protein, (2) nanowire sensing of single ion channel activity, and (3) lipid bilayer to nanotube/nanowire tethering chemistry and on natural technology (sensitivity and selectivity of OR domains to specific analytes) each have been demonstrated and/or studied independently. The combination of these three technological advances and the result of millions of years of evolution of OR proteins would enable the goal of single molecule sensing with specificity towards analytes that differ by as little as one carbon atom.

*This work was supported in part by the National Science Foundation (NSF Award# 2153425) and the Army Research Office through the ARO- (Contract Nos.: W911NF-18–1–0076 and W911NF2010103). Reprinted figures with permission from authors and publishers, including Wiley, Royal Chemical Society, Elsevier, and the Nobel Prize Society. One of us (PJB) thanks M. Reed for his endless encouragement and mentorship.

Publication: Noh, Sangjun, Francesco Tombola, and Peter Burke. "Nanowire biosensors with olfactory proteins: towards a genuine electronic nose with single molecule sensitivity and high selectivity." Nanotechnology 34.46 (2023): 465502.

Presenters

  • Sangjun Noh

    • University of California, Irvine

Authors

  • Sangjun Noh

    • University of California, Irvine
  • Francesco Tombola

    • University of California, Irvine
  • Peter John Burke

    • University of California, Irvine