Single-molecule tethering methods for membrane proteins

Methods Enzymol. 2024:694:263-284. doi: 10.1016/bs.mie.2023.12.013. Epub 2024 Jan 15.

Abstract

Molecular tethering of a single membrane protein between the glass surface and a magnetic bead is essential for studying the structural dynamics of membrane proteins using magnetic tweezers. However, the force-induced bond breakage of the widely-used digoxigenin-antidigoxigenin tether complex has imposed limitations on its stable observation. In this chapter, we describe the procedures of constructing highly stable single-molecule tethering methods for membrane proteins. These methods are established using dibenzocyclooctyne click chemistry, traptavidin-biotin binding, SpyCatcher-SpyTag conjugation, and SnoopCatcher-SnoopTag conjugation. The molecular tethering approaches allow for more stable observation of structural transitions in membrane proteins under force.

Keywords: DBCO click chemistry; SnoopCatcher; SpyCatcher; magnetic tweezers; membrane protein; molecular tethering; traptavidin.

MeSH terms

  • Membrane Proteins*
  • Nanotechnology*

Substances

  • Membrane Proteins