A fluorescence anisotropy assay with guanine nucleotides provides access to functional analysis of Gαi1 proteins


A fluorescence anisotropy assay with guanine nucleotides provides access to functional analysis of Gαi1 proteins

Penanian, A.; Sommerfeld, P.; Kasprzyk, R.; Kühl, T.; Binbay, A.; Hauser, C.; Löser, R.; Wodtke, R.; Bednarczyk, M.; Chrominski, M.; Kowalska, J.; Jemielity, J.; Imhof, D.; Pietsch, M.

Gα proteins as part of heterotrimeric G proteins are molecular switches essential for GPCR mediated intracellular signaling. The role of the Gα subunits has been examined for decades with various guanine nucleotides to elucidate the activation mechanism and Gα protein-dependent signal transduction. Several approaches describe fluorescent ligands mimicking the GTP
function, yet lacking the efficient estimation of the proteins’ GTP binding activity and fraction of active protein. Herein, we report the development of a reliable fluorescence anisotropy-based method to determine the affinity of ligands at the GTP-binding site and to quantify the fraction of active Gαi1 protein. An advanced bacterial expression protocol was applied to produce active human Gαi1 protein, whose GTP binding capability was determined with novel fluorescently labeled guanine nucleotides acting as highaffinity Gαi1 binders compared to the commonly used BODIPY FL GTPγS. This study thus contributes a new method for future investigations of the characterization of Gαi and other Gα protein subunits, exploring their corresponding signal transduction systems and potential for biomedical applications.

Involved research facilities

  • PET-Center

Permalink: https://www.hzdr.de/publications/Publ-35184