Related Experiment Video
Updated: May 23, 2026

High-Resolution Quantitative Immunogold Analysis of Membrane Receptors at Retinal Ribbon Synapses
Published on: February 18, 2016
High-resolution subunit detection of glutamate receptor by ultrasmall gold nanoparticles
Alexandre R Loukanov1, Hristo Gagov
1Laboratory of Engineering Nanobiotechnology, Department of Engineering Geoecology, University of Mining and Geology "St. Ivan Rilski," Stoyan Edrev Str., Sofia 1700, Bulgaria. alexandre_loukanov@abv.bg
Abstract:
In this study, we aimed to increase the sensitivity of protein labeling using 1.4 nm gold nanoparticles and glutamate δ2 receptor (GluD2) from the postsynaptic membrane of the Purkinje cells. The very small marker size of the particles reduces the steric hindrance between antibodies leading to a higher labeling efficiency of more than one subunit per single receptor molecule. The nanoparticles are visible in 200 kV dark-field scanning transmission electron microscope on freeze-fractured carbon replica of nervous tissue after plasma cleaning treatment. The different elemental composition of nanoparticles as Au nanogold or CdS quantum dot can be distinguished by energy dispersive X-ray spectroscopy. This method ensures detection of an average of three subunits per GluD2 and often labels all four of them with 1.4 nm Au nanoparticles. It is concluded that this high-resolution microscopic method is useful for exploring the quaternary structure of membrane proteins.

