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TitleGraphene sandwich-based biological specimen preparation for cryo-EM analysis.
Journal, issue, pagesProc Natl Acad Sci U S A, Vol. 121, Issue 5, Page e2309384121, Year 2024
Publish dateJan 30, 2024
AuthorsJie Xu / Xiaoyin Gao / Liming Zheng / Xia Jia / Kui Xu / Yuwei Ma / Xiaoding Wei / Nan Liu / Hailin Peng / Hong-Wei Wang /
PubMed AbstractHigh-quality specimen preparation plays a crucial role in cryo-electron microscopy (cryo-EM) structural analysis. In this study, we have developed a reliable and convenient technique called the ...High-quality specimen preparation plays a crucial role in cryo-electron microscopy (cryo-EM) structural analysis. In this study, we have developed a reliable and convenient technique called the graphene sandwich method for preparing cryo-EM specimens. This method involves using two layers of graphene films that enclose macromolecules on both sides, allowing for an appropriate ice thickness for cryo-EM analysis. The graphene sandwich helps to mitigate beam-induced charging effect and reduce particle motion compared to specimens prepared using the traditional method with graphene support on only one side, therefore improving the cryo-EM data quality. These advancements may open new opportunities to expand the use of graphene in the field of biological electron microscopy.
External linksProc Natl Acad Sci U S A / PubMed:38252835 / PubMed Central
MethodsEM (single particle)
Resolution2.5 - 3.1 Å
Structure data

EMDB-37156: Graphene sandwiched equine spleen apoferritin
Method: EM (single particle) / Resolution: 3.1 Å

EMDB-37158: Graphene sandwiched 20S proteasome
Method: EM (single particle) / Resolution: 2.6 Å

EMDB-38213: Graphene sandwiched spike
Method: EM (single particle) / Resolution: 2.5 Å

Source
  • Equus caballus (horse)
  • Thermoplasma acidophilum (acidophilic)
  • Severe acute respiratory syndrome coronavirus 2

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