English

Imaging proteins at the truly single-molecule level

Biological Physics 2017-01-17 v3 Soft Condensed Matter Instrumentation and Detectors Quantitative Methods

Abstract

Imaging single proteins has been a long-standing ambition for advancing various fields in natural science, as for instance structural biology, biophysics and molecular nanotechnology. In particular, revealing the distinct conformations of an individual protein is of utmost importance. Here, we show the imaging of individual proteins and protein complexes by low-energy electron holography. Samples of individual proteins and protein complexes on ultraclean freestanding graphene were prepared by soft-landing electrospray ion beam deposition, which allows chemical- and conformational-specific selection and gentle deposition. Low-energy electrons do not induce radiation damage, which enables acquiring sub-nanometer resolution images of individual proteins (cytochrome C and bovine serum albumin) as well as of protein complexes (hemoglobin), which are not the result of an averaging process.

Keywords

Cite

@article{arxiv.1512.08958,
  title  = {Imaging proteins at the truly single-molecule level},
  author = {Jean-Nicolas Longchamp and Stephan Rauschenbach and Sabine Abb and Conrad Escher and Tatiana Latychevskaia and Klaus Kern and Hans-Werner Fink},
  journal= {arXiv preprint arXiv:1512.08958},
  year   = {2017}
}
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