6533b873fe1ef96bd12d4f6c

RESEARCH PRODUCT

Routine preparation of air-dried negatively stained and unstained specimens on holey carbon support films: a review of applications.

J. Robin HarrisDirk Scheffler

subject

Materials sciencePolymersLipoproteinsGeneral Physics and AstronomyPolyethylene glycolPolyethylene Glycolschemistry.chemical_compoundStructural BiologyPEG ratioAnimalsHumansGeneral Materials ScienceAmmoniumAmmonium molybdateOrganellesAqueous solutionStaining and LabelingHistological TechniquesProteinsTrehaloseCell BiologyNegative stainTrehaloseLipidsCarbonCrystallographyMicroscopy ElectronMembranechemistryHemocyaninsVirusesNuclear chemistry

description

Several representative examples are given of the successful application of negative staining across the holes of holey carbon support films using 5% (w/v) ammonium molybdate solution containing trehalose. The inclusion of 0.1% (w/v) trehalose is considered to be most satisfactory, although good data have also been obtained in the presence of 0.01 and 1.0% (w/v) trehalose. The examples given fall into the following groups: protein molecules in the absence of polyethylene glycol (PEG), protein molecules in the presence of PEG (Mr 1000), lipoproteins, lipids and membranes, filaments and tubules, viruses in the absence of PEG, viruses in the presence of PEG, aqueous polymer solutions, and finally for comparison purposes, four unstained samples studied in the presence of trehalose alone. In all these cases, and many others not documented here, successful spreading of the sample across holes has been achieved, with the sample embedded within a thin film of air-dried ammonium molybdate+trehalose. These specimens can be rapidly produced and provide an alternative to negatively stained specimens on carbon support films. Specimen stability in the electron bean is good and such specimens can usually generate superior negatively stained TEM images without flattening and adsorption artefacts. The formation of 2-D arrays/crystals of protein molecules and viruses, suspended across holes in the presence of ammonium molbybdate+trehalose, and trehalose alone, is also demonstrated.

10.1016/s0968-4328(01)00039-7https://pubmed.ncbi.nlm.nih.gov/11976034