Bioactivated and PEG‐Protected Circa 2 nm Gold Nanoparticles for in Cell Labelling and Cryo‐Electron Microscopy

Author:

Groysbeck Nadja1ORCID,Hanss Victor2ORCID,Donzeau Mariel1ORCID,Strub Jean‐Marc3ORCID,Cianférani Sarah3ORCID,Spehner Danièle2,Bahri Mounib4ORCID,Ersen Ovidiu5ORCID,Eltsov Mikhael2ORCID,Schultz Patrick2ORCID,Zuber Guy1ORCID

Affiliation:

1. Université de Strasbourg – CNRS UMR 7242 Biotechnologie et Signalisation Cellulaire Boulevard Sebastien Brant Illkirch F‐67400 France

2. Centre for Integrative Biology (CBI) Department of Integrated Structural Biology Institut de Génétique et de Biologie Moléculaire et Cellulaire (IGBMC) 1 rue Laurent Fries, BP10142 Illkirch Cedex F‐67404 France

3. Laboratoire de Spectrométrie de Masse BioOrganique Université de Strasbourg, CNRS, IPHC UMR 7178 Strasbourg F‐67000 France

4. Albert Crewe Centre University of Liverpool 4. Waterhouse Building, Block C, 1–3 Brownlow Street London L69 3GL UK

5. Université de Strasbourg – CNRS UMR 7504 Institut de Physique et Chimie des Matériaux de Strasbourg (IPCMS) 23 rue de Loess Strasbourg 67034 France

Abstract

AbstractAdvances in cryo‐electron microscopy (EM) enable imaging of protein assemblies within mammalian cells in a near native state when samples are preserved by cryogenic vitrification. To accompany this progress, specialized EM labelling protocols must be developed. Gold nanoparticles (AuNPs) of 2 nm are synthesized and functionalized to bind selected intracellular targets inside living human cells and to be detected in vitreous sections. As a proof of concept, thioaminobenzoate‐, thionitrobenzoate‐coordinated gold nanoparticles are functionalized on their surface with SV40 Nuclear Localization Signal (NLS)‐containing peptides and 2 kDa polyethyleneglycols (PEG) by thiolate exchange to target the importin‐mediated nuclear machinery and facilitate cytosolic diffusion by shielding the AuNP surface from non‐specific binding to cell components, respectively. After delivery by electroporation into the cytoplasm of living human cells, the PEG‐coated AuNPs diffuse freely in the cytoplasm but do not enter the nucleus. Incorporation of NLS within the PEG coverage promotes a quick nuclear import of the nanoparticles in relation to the density of NLS onto the AuNPs. Cryo‐EM of vitreous cell sections demonstrate the presence of 2 nm AuNPs as single entities in the nucleus. Biofunctionalized AuNPs combined with live‐cell electroporation procedures are thus potent labeling tools for the identification of macromolecules in cellular cryo‐EM.

Funder

French Infrastructure for Integrated Structural Biology

Publisher

Wiley

Subject

General Materials Science,General Chemistry

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